JP6050629B2 - Heat source equipment - Google Patents

Heat source equipment Download PDF

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JP6050629B2
JP6050629B2 JP2012163831A JP2012163831A JP6050629B2 JP 6050629 B2 JP6050629 B2 JP 6050629B2 JP 2012163831 A JP2012163831 A JP 2012163831A JP 2012163831 A JP2012163831 A JP 2012163831A JP 6050629 B2 JP6050629 B2 JP 6050629B2
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JP2014025594A (en
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磯崎 健
健 磯崎
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株式会社ガスター
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Description

本発明は、暖房装置に熱媒体の液体を供給する機能を備えた暖房液体循環通路を有する熱源装置に関するものである。   The present invention relates to a heat source device having a heating liquid circulation passage having a function of supplying a liquid of a heat medium to a heating device.

図2には、床暖房に用いる温水マット等の暖房装置に温水等の熱媒体の液体を供給する機能を備えた熱源装置の一例が示されている(例えば、特許文献1、参照)。   FIG. 2 shows an example of a heat source device having a function of supplying a liquid of a heat medium such as hot water to a heating device such as a hot water mat used for floor heating (see, for example, Patent Document 1).

同図において、暖房装置10(10a,10b,10c)に熱媒体の液体(例えば温水)を供給する機能を備えた暖房用液体循環通路5が、器具ケース42内に設けられた管路89,90,91,92,93,94,95,96,97,98,99を有して形成されており、器具ケース42の外部に設けられた管路40,41,44,45,59に接続されている。   In the figure, a heating liquid circulation passage 5 having a function of supplying a heating medium liquid (for example, hot water) to the heating device 10 (10a, 10b, 10c) is provided with a pipe line 89 provided in the appliance case 42, 90, 91, 92, 93, 94, 95, 96, 97, 98, 99 are formed and connected to conduits 40, 41, 44, 45, 59 provided outside the instrument case 42. Has been.

管路40は管路97に接続され、管路41,44は液体合流手段115と管路59と介して管路95に接続され、管路45は液体分岐手段37を介して管路90に接続されている。管路40,41には、暖房装置10aの内部通路51が接続され、管路44,45には、暖房装置10b,10cの内部通路52がそれぞれ接続されている。暖房装置10b,10cは、例えば温水マット等の低温暖房装置であり、暖房装置10aは浴室暖房機等の高温暖房装置であり、暖房装置10aには熱動弁12が設けられている。なお、液体分岐手段37と液体合流手段115には、必要に応じ、同図に示している他にも暖房装置を接続することができる。   The conduit 40 is connected to the conduit 97, the conduits 41 and 44 are connected to the conduit 95 via the liquid confluence means 115 and the conduit 59, and the conduit 45 is connected to the conduit 90 via the liquid branching means 37. It is connected. The pipes 40 and 41 are connected to the internal passage 51 of the heating device 10a, and the pipes 44 and 45 are connected to the internal passage 52 of the heating devices 10b and 10c, respectively. The heating devices 10b and 10c are, for example, low-temperature heating devices such as hot water mats, the heating device 10a is a high-temperature heating device such as a bathroom heater, and the heating device 10a is provided with a thermal valve 12. In addition to the one shown in the figure, a heating device can be connected to the liquid branching means 37 and the liquid merging means 115 as needed.

暖房用液体循環通路5には、該暖房用液体循環通路5に液体を循環させる液体循環ポンプ6と、該液体循環ポンプ6の駆動により循環する液体を加熱する暖房用交換器28(28a,28b)が設けられている。暖房用熱交換器28aの液体導入側には管路95が、液体導出側には管路94がそれぞれ接続されており、暖房用熱交換器28bの液体導入側には管路91が、液体導出側には管路92がそれぞれ接続されている。管路92には、暖房高温サーミスタ33が設けられており、暖房高温サーミスタ33は、暖房用熱交換器28bから出る液体の温度を検出する。   The heating liquid circulation passage 5 includes a liquid circulation pump 6 that circulates liquid in the heating liquid circulation passage 5 and a heating exchanger 28 (28a, 28b) that heats the liquid circulated by driving the liquid circulation pump 6. ) Is provided. A pipe 95 is connected to the liquid introduction side of the heating heat exchanger 28a, and a pipe 94 is connected to the liquid outlet side, and a pipe 91 is connected to the liquid introduction side of the heating heat exchanger 28b. Pipe lines 92 are connected to the outlet side. A heating high temperature thermistor 33 is provided in the pipe line 92, and the heating high temperature thermistor 33 detects the temperature of the liquid coming out of the heating heat exchanger 28b.

また、管路91は、前記液体循環ポンプ6の吐出側に、管路90と共に接続されており、管路91には、暖房用熱交換器28bに導入される暖房用液体循環通路5内の液体の温度を検出する暖房低温サーミスタ36が設けられている。また、液体循環ポンプ6の吸入口側には前記管路93が接続されており、管路93と管路94との間にはシスターン装置100が介設されている。シスターン装置100のタンク容量は、例えば約1〜1.8リットルであり、シスターン装置100は、その上部側に大気開放部を有し、また、シスターン装置100にはオーバーフロー通路53が接続されている。   The pipe 91 is connected to the discharge side of the liquid circulation pump 6 together with the pipe 90, and the pipe 91 is connected to the inside of the heating liquid circulation passage 5 introduced into the heating heat exchanger 28b. A heating low temperature thermistor 36 for detecting the temperature of the liquid is provided. Further, the pipe 93 is connected to the suction port side of the liquid circulation pump 6, and a cistern device 100 is interposed between the pipe 93 and the pipe 94. The tank capacity of the cistern apparatus 100 is, for example, about 1 to 1.8 liters. The cistern apparatus 100 has an atmosphere opening portion on the upper side thereof, and an overflow passage 53 is connected to the cistern apparatus 100. .

暖房用熱交換器28(28a,28b)は、それぞれ、燃焼室24内に設けられており、燃焼室24には、暖房用熱交換器28と共に、暖房用熱交換器28を加熱するバーナ16と、バーナ16の燃焼の給排気を行なう燃焼ファン18とが設けられている。また、燃焼室24と連通して燃焼室25が設けられ、燃焼室25内には、バーナ17と、バーナ17により加熱される給湯熱交換器29(29a,29b)と、バーナ17の燃焼の給排気を行なう燃焼ファン19とが設けられている。   Heating heat exchangers 28 (28a, 28b) are respectively provided in the combustion chamber 24. The burner 16 that heats the heating heat exchanger 28 together with the heating heat exchanger 28 is provided in the combustion chamber 24. And a combustion fan 18 for supplying and exhausting combustion of the burner 16 is provided. A combustion chamber 25 is provided in communication with the combustion chamber 24, and the combustion chamber 25 has a burner 17, a hot water heat exchanger 29 (29 a, 29 b) heated by the burner 17, and combustion of the burner 17. A combustion fan 19 for supplying and exhausting air is provided.

バーナ16,17には、それぞれのバーナ16,17に燃料を供給するガス管31,32が接続されている。これらのガス管31,32は、ガス管30から分岐形成されており、ガス管30には、ガス開閉弁80が介設されている。また、ガス管31には、ガス比例弁86とガス開閉弁81,82が、ガス管32には、ガス比例弁87とガス開閉弁83,84,85がそれぞれ介設されている。これらの弁80〜87はいずれも電磁弁により形成されており、ガス開閉弁80〜85は、対応するバーナ16,17への燃料供給・停止を制御し、ガス比例弁86,87は、対応するバーナ16,17への供給燃料量を弁開度でもって制御する。なお、バーナ16,17の燃焼制御は、図示されていない燃焼制御手段によって、適宜の制御方法により制御される。   Gas pipes 31 and 32 for supplying fuel to the burners 16 and 17 are connected to the burners 16 and 17. These gas pipes 31 and 32 are branched from the gas pipe 30, and a gas on / off valve 80 is interposed in the gas pipe 30. The gas pipe 31 is provided with a gas proportional valve 86 and gas on-off valves 81 and 82, and the gas pipe 32 is provided with a gas proportional valve 87 and gas on-off valves 83, 84 and 85, respectively. These valves 80 to 87 are all formed by electromagnetic valves, the gas on / off valves 80 to 85 control the fuel supply / stop to the corresponding burners 16 and 17, and the gas proportional valves 86 and 87 correspond to each other. The amount of fuel supplied to the burners 16 and 17 is controlled by the valve opening. The combustion control of the burners 16 and 17 is controlled by an appropriate control method by a combustion control means (not shown).

前記給湯熱交換器29aの入口側には給水導入通路88が設けられている。この給水導入通路88は、接続通路57と補給水電磁弁46を介して、前記シスターン装置100に接続され、前記暖房用液体循環通路5に接続されている。給水導入通路88の入口側には、給水導入通路88を流れる湯水の量を検出する流量センサ73と入水温度を検出する入水温度センサ74が設けられている。また、熱交換器29bの出口側には給湯通路26が設けられており、給湯通路26の先端側は、適宜の給湯先に導かれている。給湯通路26には、分岐通路70と湯水経路切替弁58を介して前記給水導入通路88が接続されており、給湯通路26には、分岐通路70の分岐部よりも下流側に出湯湯温検出センサ113が設けられ、熱交換器29側に出湯湯温検出センサ114が設けられている。   A water supply introduction passage 88 is provided on the inlet side of the hot water supply heat exchanger 29a. The water supply introduction passage 88 is connected to the cistern apparatus 100 via the connection passage 57 and the makeup water electromagnetic valve 46 and is connected to the heating liquid circulation passage 5. On the inlet side of the water supply introduction passage 88, a flow rate sensor 73 for detecting the amount of hot water flowing through the water supply introduction passage 88 and a water entrance temperature sensor 74 for detecting the water entrance temperature are provided. Further, a hot water supply passage 26 is provided on the outlet side of the heat exchanger 29b, and the front end side of the hot water supply passage 26 is led to an appropriate hot water supply destination. The hot water supply passage 26 is connected to the water supply introduction passage 88 through a branch passage 70 and a hot water passage switching valve 58, and the hot water supply passage 26 detects the hot water temperature downstream of the branch portion of the branch passage 70. A sensor 113 is provided, and a hot water temperature detection sensor 114 is provided on the heat exchanger 29 side.

また、前記暖房用液体循環通路5には、熱交換手段としての液―液熱交換器7を介して、追い焚き循環通路13が熱的に接続されており、この追い焚き循環通路13は、往管14と戻り管15を有して浴槽27に接続されている。なお、暖房用液体循環通路5の液―液熱交換器7を形成する管路89には、液―液熱交換器7の入口に流量制御弁38が設けられている。追い焚き循環通路13には、浴槽湯水を循環させる浴槽湯水循環ポンプ20が設けられ、液−液熱交換器7は、浴槽湯水循環ポンプ20の駆動によって追い焚き循環路13を循環する浴槽湯水を加熱する風呂熱交換器と成している。   Further, a recirculation circulation passage 13 is thermally connected to the heating liquid circulation passage 5 via a liquid-liquid heat exchanger 7 as heat exchange means. It has an outgoing pipe 14 and a return pipe 15 and is connected to a bathtub 27. A flow rate control valve 38 is provided at the inlet of the liquid-liquid heat exchanger 7 in the pipe line 89 forming the liquid-liquid heat exchanger 7 of the heating liquid circulation passage 5. The recirculation circulation passage 13 is provided with a bathtub hot water circulation pump 20 that circulates the bathtub hot water, and the liquid-liquid heat exchanger 7 drives the bathtub hot water circulating in the recirculation circulation path 13 by driving the bathtub hot water circulation pump 20. It consists of a heated bath heat exchanger.

また、追い焚き循環通路13には、浴槽湯水の温度を検出する浴槽湯水温検出手段としての風呂温度センサ21と、浴槽湯水の水位を検出する水位センサ22と、追い焚き循環路13の水流を検知する風呂水流スイッチ34とが介設されている。浴槽湯水循環ポンプ20の吸入口側に、戻り管15の一端側が接続され、戻り管15の他端側が循環金具56を介して浴槽27に連通接続されている。浴槽湯水循環ポンプ20の吐出口側には、往管14の一端側が接続され、往管14の他端側は循環金具56を介して浴槽27に連通接続されている。   The recirculation circulation passage 13 is supplied with a bath temperature sensor 21 as a bath water temperature detecting means for detecting the temperature of the bathtub hot water, a water level sensor 22 for detecting the water level of the bath water, and the water flow in the recirculation circuit 13. A bath water flow switch 34 to be detected is interposed. One end side of the return pipe 15 is connected to the suction port side of the bathtub hot water circulation pump 20, and the other end side of the return pipe 15 is connected to the bathtub 27 via the circulation fitting 56. One end side of the outgoing pipe 14 is connected to the discharge port side of the bathtub hot water circulation pump 20, and the other end side of the outgoing pipe 14 is connected to the bathtub 27 via a circulation fitting 56.

前記給湯通路26には、分岐通路70の形成部および出湯湯温検出センサ113の配設部よりも下流側に、管路54を介して注湯水ユニット55が接続されている。注湯水ユニット55には風呂用注湯導入通路23の一端側が接続され、風呂用注湯導入通路23の他端側は、前記浴槽湯水循環ポンプ20に接続されている。注湯水ユニット55には、湯張り電磁弁48、湯張り水量センサ49、逆止弁50a,50bが設けられている。なお、熱交換器29から給湯通路26と管路54、注湯水ユニット55、風呂用注湯導入通路23、浴槽湯水循環ポンプ20、液−液熱交換器7、往管14を順に通って浴槽27に至るまでの通路によって、湯張りや注水を行うための湯張り注水通路が構成されている。また、図2の、図中、符号75、77は、ドレン排出通路を示し、符号76は、ドレンを中和する中和手段を示す。   A pouring water unit 55 is connected to the hot water supply passage 26 via a pipe 54 on the downstream side of the formation portion of the branch passage 70 and the arrangement portion of the hot water temperature detection sensor 113. One end side of the bath pouring introduction passage 23 is connected to the pouring water unit 55, and the other end side of the bath pouring introduction passage 23 is connected to the bathtub hot water circulation pump 20. The hot water unit 55 is provided with a hot water solenoid valve 48, a hot water sensor 49, and check valves 50a and 50b. In addition, the hot water supply passage 26 and the pipe 54, the pouring water unit 55, the bath pouring introduction passage 23, the bath hot water circulation pump 20, the liquid-liquid heat exchanger 7, and the outgoing pipe 14 are sequentially passed from the heat exchanger 29 to the bathtub. The passage up to 27 constitutes a hot water injection passage for hot water filling and water injection. In FIG. 2, reference numerals 75 and 77 denote drain discharge passages, and reference numeral 76 denotes neutralizing means for neutralizing the drain.

この熱源装置において、暖房用液体循環通路5から加熱された液体を暖房装置(高温暖房装置)10aに供給する際には、熱源装置の器具ケース42内に設けられた図示されていない制御装置の暖房加熱制御手段による制御が行われるものであり、暖房加熱制御手段は、暖房装置10aのリモコン装置(図示せず)に設けられている暖房運転スイッチのオン信号を受けて、以下のようにバーナ16の燃焼制御および燃焼ファン18の回転制御を行うと共に、液体循環ポンプ6を駆動させる。   In this heat source device, when the liquid heated from the heating liquid circulation passage 5 is supplied to the heating device (high temperature heating device) 10a, a control device (not shown) provided in the appliance case 42 of the heat source device is used. Control by the heating and heating control means is performed, and the heating and heating control means receives a turn-on signal of a heating operation switch provided in a remote control device (not shown) of the heating device 10a, and burners as described below. The combustion control of 16 and the rotation control of the combustion fan 18 are performed, and the liquid circulation pump 6 is driven.

つまり、暖房加熱制御手段は、暖房装置10aの運転を行うときには、バーナ16の燃焼制御および燃焼ファン18の回転制御等を行って暖房用熱交換器28a,28bを加熱し、暖房高温サーミスタ33の検出温度が80℃となるように、暖房用液体循環通路5を循環する液体を加熱する。加熱された液体は、暖房用熱交換器28bから約80℃で導出され、図2の矢印Aに示すように管路92を通り、流量制御弁38の閉状態においては、図2の矢印Bに示すように、管路97,40を順に通って暖房装置10aに供給されるので、暖房装置10aには80℃程度の液体が供給される。   In other words, the heating and heating control means performs the combustion control of the burner 16 and the rotation control of the combustion fan 18 to heat the heating heat exchangers 28a and 28b when the heating device 10a is operated, and the heating high temperature thermistor 33 is controlled. The liquid circulating in the heating liquid circulation passage 5 is heated so that the detected temperature becomes 80 ° C. The heated liquid is led out from the heating heat exchanger 28b at about 80 ° C., passes through the conduit 92 as shown by the arrow A in FIG. 2, and in the closed state of the flow control valve 38, the arrow B in FIG. As shown in FIG. 4, since the liquid is supplied to the heating device 10a through the pipes 97 and 40 in order, a liquid of about 80 ° C. is supplied to the heating device 10a.

暖房装置10aに供給された液体は、暖房装置10aの管路51を通るときに放熱して、その温度が例えば60℃程度に下がった状態で、図2の矢印Bに示すように、管路41,59を通り、矢印Cに示すように、管路95を順に通って暖房用熱交換器28aに導入され、暖房用熱交換器28aによって加熱される。この加温された液体は、矢印Dに示すように管路94を通ってシスターン装置100に導入され、シスターン装置100を通った後に、矢印Eに示すように、管路93を通り、液体循環ポンプ6に導入される。その後、液体は、矢印Fに示すように、管路91を通って暖房用熱交換器28bに導入され、暖房用熱交換器28bによって加熱されて、前記と同様にして暖房用液体循環通路5を循環する。   The liquid supplied to the heating device 10a dissipates heat when passing through the pipeline 51 of the heating device 10a, and the temperature of the liquid drops to about 60 ° C., for example, as shown by the arrow B in FIG. 41, 59, and as shown by an arrow C, the pipe 95 is sequentially introduced into the heating heat exchanger 28a and heated by the heating heat exchanger 28a. The heated liquid is introduced into the cistern apparatus 100 through the pipe line 94 as shown by an arrow D, and after passing through the cistern apparatus 100, the liquid is circulated through the pipe line 93 as shown by an arrow E. It is introduced into the pump 6. Thereafter, as shown by an arrow F, the liquid is introduced into the heating heat exchanger 28b through the pipe 91, heated by the heating heat exchanger 28b, and heated in the same manner as described above. Circulate.

また、暖房装置(低温暖房装置)10b,10cの運転を行うときにも、前記暖房加熱制御手段によるバーナ16の燃焼制御および燃焼ファン18の回転制御等は、暖房装置10aの運転時と同様に行われて、暖房用熱交換器28bからは適宜の温度(例えば約80℃)の液体が導出されるが、暖房装置10b,10cの運転時には、流量制御弁38を開状態とする。そして、液体を、図2の矢印A、B’、C、D、Eに示す順に通すことにより、管路92、管路89、液―液熱交換器7、管路96、管路95、暖房用熱交換器28a、管路94、シスターン装置100、管路93を順に通して、液体循環ポンプ6に導入する。   Also, when the heating devices (low temperature heating devices) 10b and 10c are operated, the combustion control of the burner 16 and the rotation control of the combustion fan 18 by the heating and heating control means are the same as during the operation of the heating device 10a. The liquid at an appropriate temperature (for example, about 80 ° C.) is led out from the heating heat exchanger 28b, but the flow rate control valve 38 is opened during the operation of the heating devices 10b and 10c. Then, by passing the liquid in the order shown by arrows A, B ′, C, D, E in FIG. 2, the pipe 92, the pipe 89, the liquid-liquid heat exchanger 7, the pipe 96, the pipe 95, The heating heat exchanger 28 a, the pipe 94, the cistern apparatus 100, and the pipe 93 are sequentially passed through and introduced into the liquid circulation pump 6.

そして、液体循環ポンプ6から吐出された液体を、管路90と開状態の熱動弁37を介して、矢印Gに示すように管路45に通し、暖房装置10b,10cに導入されるようにする。このようにすることで、暖房装置10b,10cに導入される液体の温度が、暖房用熱交換器28bから直接的に液体が暖房装置10b,10cに導入されるよりも液体の温度が低くなるようにし、60℃程度の液体が暖房装置10b,10cに供給されるようにする。   Then, the liquid discharged from the liquid circulation pump 6 is introduced into the heating devices 10b and 10c through the pipe line 90 and the open thermal valve 37 through the pipe line 45 as shown by an arrow G. To. By doing in this way, the temperature of the liquid introduce | transduced into heating apparatus 10b, 10c becomes lower than the temperature of the liquid rather than the liquid being directly introduce | transduced into heating apparatus 10b, 10c from the heat exchanger 28b for heating. Thus, a liquid of about 60 ° C. is supplied to the heating devices 10b and 10c.

なお、暖房装置10b,10cに導入される液体の温度調節は、低温能力切替熱動弁47の開弁量を調節することによっても行われるものであり、必要に応じて、管路94からシスターン装置100に導入される液体に、管路92を通る高温の(暖房熱交換器28bによって例えば80℃に高められた)液体を、管路99,98を通して混合することにより、暖房低温サーミスタ36の検出温度が60℃程度になるようにして、暖房装置10b,10cに供給されるようにする。   The temperature of the liquid introduced into the heating devices 10b and 10c is also adjusted by adjusting the valve opening amount of the low-temperature capacity switching thermal valve 47, and a cistern is connected from the line 94 as necessary. By mixing the liquid introduced into the apparatus 100 with hot liquid (e.g., raised to 80 ° C. by the heating heat exchanger 28b) through the line 92 through the lines 99 and 98, the heating low temperature thermistor 36 The detected temperature is set to about 60 ° C. so as to be supplied to the heating devices 10b and 10c.

また、暖房装置10b,10cの運転開始直後には、暖房装置10b,10cの内部通路51,52や管路44,45内の液体が冷えている状態であり、このように液体を冷たい状態から加熱する場合のホットダッシュ運転(コールドスタート)では、例えば15分といった予め定められたホットダッシュ設定時間だけ、暖房低温サーミスタ36の検出温度が例えば70〜80℃のホットダッシュ設定温度になるように、低温能力切替熱動弁47の開弁量の調節が行われ、ホットダッシュ設定温度の液体が暖房装置10b,10cに供給されるようにする。   Further, immediately after the start of the operation of the heating devices 10b and 10c, the liquid in the internal passages 51 and 52 and the pipes 44 and 45 of the heating devices 10b and 10c is in a cold state. In the hot dash operation (cold start) in the case of heating, the detected temperature of the heating low temperature thermistor 36 is, for example, a hot dash setting temperature of 70 to 80 ° C. for a predetermined hot dash setting time such as 15 minutes, The valve opening amount of the low temperature capability switching thermal valve 47 is adjusted so that the liquid having the hot dash set temperature is supplied to the heating devices 10b and 10c.

以上のようにして暖房装置10b,10cに供給された液体は、暖房装置10b,10cを通って放熱し、例えば40℃以下の低温となった後、管路44,59を通り、管路95に導入され、前記と同様に、暖房用液体循環通路5を循環する。   The liquid supplied to the heating devices 10b and 10c as described above dissipates heat through the heating devices 10b and 10c and, for example, reaches a low temperature of 40 ° C. or less, and then passes through the pipelines 44 and 59 to the pipeline 95. And circulates in the heating liquid circulation passage 5 in the same manner as described above.

ところで、温水マット等の暖房装置10b,10cの単位時間当たりの放熱量はそれほど大きくはなく、例えば1時間当たり数百ワットから数キロワット程度であるために、バーナ16の燃焼を連続的に行いながら暖房用液体循環通路5から暖房装置10b,10cに液体(熱媒体)を供給すると、どうしても暖房装置10b,10cに供給される液体の温度が高くなってしまい、60℃程度の液体を安定的に供給することは難しい。そこで、暖房装置10b,10cの運転中に、前記暖房加熱制御手段は、以下のような制御を行うようにしている。   By the way, the amount of heat radiation per unit time of the heating devices 10b, 10c such as hot water mats is not so large, for example, about several hundred watts to several kilowatts per hour, so that the burner 16 is continuously burned. If the liquid (heat medium) is supplied from the heating liquid circulation passage 5 to the heating devices 10b and 10c, the temperature of the liquid supplied to the heating devices 10b and 10c inevitably increases, and the liquid at about 60 ° C. is stably supplied. It is difficult to supply. Therefore, during the operation of the heating devices 10b and 10c, the heating and heating control means performs the following control.

例えば、図5(c)に示す暖房運転期間(運転ONの期間)のうち、運転開始直後のホットダッシュ運転時には、図5(a)に示されるように、液温検出手段としての暖房低温サーミスタ36の検出液体温度が例えば80℃になるように、液体を暖房用熱交換器28により加熱しながら液体循環ポンプ6を駆動させるが、その後、暖房用熱交換器28による液体の加熱と液体循環ポンプ6の駆動を共に停止させる(図5(b)のポンプのON、OFF、参照)。   For example, during the hot dash operation immediately after the start of operation in the heating operation period (operation ON period) shown in FIG. 5 (c), as shown in FIG. 5 (a), a heating low temperature thermistor as a liquid temperature detecting means is used. The liquid circulation pump 6 is driven while the liquid is heated by the heating heat exchanger 28 so that the detected liquid temperature of 36 becomes 80 ° C., for example. Thereafter, the heating and liquid circulation of the liquid by the heating heat exchanger 28 are performed. The driving of the pump 6 is stopped together (see ON / OFF of the pump in FIG. 5B).

そして、通常の暖房運転中(図5(c)の通常運転時)には、暖房低温サーミスタ36の検出液体温度が予め定められる加熱開始基準温度Tl(例えば60℃より3℃低い57℃)以下になったときに、液体を暖房用熱交換器28によって加熱しながら液体循環ポンプ6を駆動させて、前記検出液体温度が加熱開始基準温度Tlよりも高い予め定められる加熱停止基準温度Th(例えば60℃より7℃高い67℃)以上になったときには前記液体の暖房用熱交換器28による加熱と液体循環ポンプ6の駆動を共に停止させるようにしている(図5(a)、(b)、参照)。   During normal heating operation (during normal operation in FIG. 5C), the detected liquid temperature of the heating low temperature thermistor 36 is equal to or lower than a predetermined heating start reference temperature Tl (for example, 57 ° C., 3 ° C. lower than 60 ° C.). The liquid circulation pump 6 is driven while the liquid is heated by the heating heat exchanger 28, and a predetermined heating stop reference temperature Th (for example, the detected liquid temperature is higher than the heating start reference temperature Tl (for example, When the temperature is higher than 60 ° C. (67 ° C., 7 ° C., 67 ° C.), the heating of the liquid heating heat exchanger 28 and the driving of the liquid circulation pump 6 are both stopped (FIGS. 5A and 5B). ,reference).

なお、シスターン100内の液体の温度を検出するセンサを設けて液温検出手段とし、このセンサによって検出されるシスターン100内の温度に基づいて前記のような液体の加熱制御および液体循環ポンプ6の駆動制御を行ってもよい。   It should be noted that a sensor for detecting the temperature of the liquid in the cistern 100 is provided as liquid temperature detecting means, and the liquid heating control and the liquid circulation pump 6 are controlled based on the temperature in the cistern 100 detected by the sensor. Drive control may be performed.

特開平8―35675号公報JP-A-8-35675

ところで、例えば温水マットの使用者は、その日の運転が夜の11時に終了するように運転オフのタイマをセットして用いる等、タイマをセットして用いることが多い。しかしながら、従来の暖房加熱制御手段による制御方法によると、運転終了間近であっても、暖房低温サーミスタ36の検出液体温度が前記加熱開始基準温度以下になれば必ず暖房用熱交換器28による液体の加熱を行うため、場合によっては、もうすぐ運転終了予定時刻となるにもかかわらず、前記加熱停止基準温度Thまで加熱が行われ、その加熱された液体が暖房装置において放熱される前に暖房装置の運転が終了してしまうことになる。そうすると、加熱された液体は暖房用液体循環通路5内に滞留して、その熱が自然放熱されることになり、熱エネルギの無駄が生じていた。   By the way, for example, a user of a hot water mat often sets and uses a timer, such as setting and using an operation-off timer so that the operation of the day ends at 11:00 at night. However, according to the conventional control method using the heating and heating control means, even when the operation is about to end, if the detected liquid temperature of the heating low-temperature thermistor 36 is equal to or lower than the heating start reference temperature, the liquid by the heating heat exchanger 28 is always used. In order to perform heating, in some cases, the heating is performed up to the heating stop reference temperature Th in spite of the scheduled operation end time, and before the heated liquid is radiated in the heating device, the heating device Driving will end. Then, the heated liquid stays in the heating liquid circulation passage 5, and the heat is naturally radiated, resulting in wasted heat energy.

本発明は、上記課題を解決するためになされたものであり、その目的は、熱エネルギを極力無駄にせずに、暖房装置の暖房運転を行えるようにする熱源装置を提供することにある。   The present invention has been made to solve the above-described problems, and an object of the present invention is to provide a heat source device that enables heating operation of the heating device without wasting heat energy as much as possible.

本発明は上記目的を達成するために、次の構成をもって課題を解決する手段としている。すなわち、第1の発明は、暖房装置に熱媒体の液体を供給する機能を備えた暖房用液体循環通路を有し、該暖房用液体循環通路には該暖房用液体循環通路に液体を循環させる液体循環ポンプと、該液体循環ポンプの駆動により循環する液体を加熱する暖房用熱交換器と、前記液体の温度を検出する液温検出手段とが設けられ、前記暖房装置の加熱運転中に、前記液体循環ポンプの駆動中により前記暖房装置に導入される液体の温度を前記液温検出手段により検出される検出液体温度に基づいて調整する暖房加熱制御手段を備えた熱源装置であって、該暖房加熱制御手段は前記暖房装置の運転終了予定時刻の情報を取り込み、該運転終了予定時刻よりも予め定められる時間だけ手前の暖房運転終了準備時刻以降には前記液温検出手段により検出される液体の温度が予め定められる加熱開始基準温度以下になっても前記液体の前記暖房用熱交換器による加熱を行わずに前記液体循環ポンプの駆動による前記液体の前記暖房用液体循環通路内の循環動作を行うようにする暖房加熱制限制御を行う構成をもって課題を解決する手段としている。また、第2の発明は、暖房装置に熱媒体の液体を供給する機能を備えた暖房用液体循環通路を有し、該暖房用液体循環通路には該暖房用液体循環通路に液体を循環させる液体循環ポンプと、該液体循環ポンプの駆動により循環する液体を加熱する暖房用熱交換器と、前記液体の温度を検出する液温検出手段とが設けられ、前記暖房装置の加熱運転中に、前記液温検出手段により検出される検出液体温度が予め定められる加熱開始基準温度以下になったときには前記液体を前記暖房用熱交換器によって加熱しながら前記液体循環ポンプを駆動させ、前記検出液体温度が前記加熱開始基準温度よりも高い予め定められる加熱停止基準温度以上になったときには前記液体の前記暖房用熱交換器による加熱停止させる暖房加熱制御手段を備えた熱源装置であって、該暖房加熱制御手段は前記暖房装置の運転終了予定時刻の情報を取り込み、該運転終了予定時刻よりも予め定められる時間だけ手前の暖房運転終了準備時刻以降には前記液温検出手段により検出される液体の温度が前記加熱開始基準温度以下になっても前記液体の前記暖房用熱交換器による加熱を行わずに前記液体循環ポンプの駆動による前記液体の前記暖房用液体循環通路内の循環動作を行うようにする暖房加熱制限制御を行う構成をもって課題を解決する手段としている。 In order to achieve the above object, the present invention has the following configuration as means for solving the problems. That is, the first invention has a heating liquid circulation passage having a function of supplying a liquid of the heat medium to the heating device, and the liquid is circulated through the heating liquid circulation passage in the heating liquid circulation passage. A liquid circulation pump, a heating heat exchanger for heating the liquid circulating by driving the liquid circulation pump, and a liquid temperature detection means for detecting the temperature of the liquid are provided, and during the heating operation of the heating device, A heat source device comprising heating heating control means for adjusting the temperature of the liquid introduced into the heating device during driving of the liquid circulation pump based on the detected liquid temperature detected by the liquid temperature detection means, The heating and heating control means captures information on the scheduled operation end time of the heating device, and is detected by the liquid temperature detection means after the heating operation completion preparation time that is a predetermined time before the scheduled operation end time. Even if the temperature of the liquid to be heated is equal to or lower than a predetermined heating start reference temperature, the liquid is not heated by the heating heat exchanger, and the liquid circulation pump is driven by driving the liquid circulation pump. The heating and heating restriction control for performing the circulation operation is used as means for solving the problem. Further, the second invention has a heating liquid circulation passage having a function of supplying a liquid of a heat medium to the heating device, and the liquid is circulated through the heating liquid circulation passage in the heating liquid circulation passage. A liquid circulation pump, a heating heat exchanger for heating the liquid circulating by driving the liquid circulation pump, and a liquid temperature detection means for detecting the temperature of the liquid are provided, and during the heating operation of the heating device, When the detected liquid temperature detected by the liquid temperature detecting means falls below a predetermined heating start reference temperature, the liquid circulation pump is driven while the liquid is heated by the heating heat exchanger, and the detected liquid temperature heat source but having a heating heating control means for stopping the heating by the heat exchanger for the heating of the liquid when it is heated stopping criterion temperature or higher which is predetermined higher than the heating start reference temperature The heating and heating control means takes in the information on the scheduled operation end time of the heating device, and detects the liquid temperature after the heating operation completion preparation time that is a predetermined time before the scheduled operation end time. The heating liquid circulation passage of the liquid by driving the liquid circulation pump without heating the liquid by the heating heat exchanger even when the temperature of the liquid detected by the means becomes equal to or lower than the heating start reference temperature It is a means to solve the problem with a configuration that performs heating and heating restriction control to perform the circulation operation.

また、第の発明は、前記第1または第2の発明の構成に加え、前記暖房運転終了準備時刻に液温検出手段により検出される検出液体温度を取り込み、該検出液体温度と、前記暖房運転終了準備時刻から暖房装置の運転終了予定時刻までの時間と、この時間が経過する間に暖房用液体循環通路内の液体から放熱される推定放熱量の情報とに基づき、予め定められる温度推定手法に従って暖房装置の運転終了予定時刻における前記液体の温度を推定する暖房終了時液温推定手段を有し、該暖房終了時液温推定手段により推定される液体の温度が加熱開始基準温度以下の予め定められる暖房終了時許容温度よりも低いときには、暖房加熱制御手段は、暖房運転終了準備時刻以降に暖房加熱制限制御を行う代わりに前記暖房装置の運転終了予定時刻の液体の推定温度が前記暖房終了時許容温度以上となるように予め定められる設定タイミングで暖房用熱交換器による液体の加熱を行うことを特徴とする。 In addition to the configuration of the first or second invention, the third invention takes in the detected liquid temperature detected by the liquid temperature detecting means at the heating operation end preparation time, and detects the detected liquid temperature and the heating Predetermined temperature estimation based on the time from the operation completion preparation time to the scheduled operation end time of the heating device and information on the estimated heat release amount radiated from the liquid in the heating liquid circulation passage while this time elapses A liquid temperature estimation means at the end of heating that estimates the temperature of the liquid at the scheduled operation end time of the heating device according to the method, and the temperature of the liquid estimated by the liquid temperature estimation means at the end of heating is equal to or lower than a heating start reference temperature When the temperature is lower than a predetermined allowable temperature at the end of heating, the heating / heating control means performs the heating / heating limit control after the heating operation end preparation time, instead of performing the heating / heating limit control. Estimated temperature of the liquid and performing the heating of the liquid by the heating heat exchanger at a predetermined is set timing so that the heating end time allowable temperature or higher.

さらに、第の発明は、前記第1または第2の発明の構成に加え、前記暖房運転終了準備時刻よりもさらに手前の終了準備予備時刻に液温検出手段により検出される検出液体温度を取り込み、該検出液体温度と、前記終了準備予備時刻から暖房装置の運転終了予定時刻までの時間と、この時間が経過する間に暖房用液体循環通路内の液体から放熱される推定放熱量の情報とに基づき、予め定められる温度推定手法に従って暖房装置の運転終了予定時刻における前記液体の温度を推定する暖房終了時液温推定手段を有し、該暖房終了時液温推定手段により推定される液体の推定温度が加熱開始基準温度以下の予め定められる暖房終了時許容温度よりも低いときには前記暖房運転終了準備時刻を前記運転終了予定時刻に近い側の時刻に変え、前記推定温度が前記加熱開始基準温度よりも予め定められる余裕設定温度以上に高いときには前記暖房運転終了準備時刻を前記終了準備予備時刻に近い側の時刻に変える暖房運転終了準備時刻可変設定手段を有することを特徴とする。 Furthermore, the fourth aspect of the invention includes, in addition to the configuration of the first or second aspect of the invention, taking in the detected liquid temperature detected by the liquid temperature detecting means at the end preparation preliminary time further before the heating operation end preparation time. , The detected liquid temperature, the time from the end preparation preliminary time to the scheduled operation end time of the heating device, and information on the estimated heat release amount radiated from the liquid in the heating liquid circulation passage while this time elapses Based on a predetermined temperature estimation method, the heating end liquid temperature estimating means for estimating the temperature of the liquid at the scheduled operation end time of the heating device is provided, and the liquid temperature estimated by the heating end time liquid temperature estimating means is estimated. When the estimated temperature is lower than a predetermined heating end time allowable temperature equal to or lower than the heating start reference temperature, the heating operation end preparation time is changed to a time closer to the operation end scheduled time, A heating operation end preparation time variable setting means for changing the heating operation end preparation time to a time closer to the end preparation preliminary time when the constant temperature is higher than a predetermined margin setting temperature than the heating start reference temperature; It is characterized by.

さらに、第の発明は、前記第または第の発明の構成に加え、前記暖房用液体循環通路内の液体から放熱される推定放熱量の情報は、前回の暖房運転利用時における少なくとも運転終了時近傍の予め定められた設定期間における液温検出手段による検出液体温度の時系列データと、今回の暖房運転利用時における少なくとも暖房終了時液温推定手段による液体温度の推定時近傍でその手前の予め定められた設定期間における液温検出手段による検出液体温度の時系列データの少なくとも一方の時系列データに基づく情報としたことを特徴とする。 Further, in the fifth aspect of the invention, in addition to the configuration of the third or fourth aspect of the invention, information on the estimated heat release amount radiated from the liquid in the heating liquid circulation passage is at least an operation at the time of using the previous heating operation. Time series data of the liquid temperature detected by the liquid temperature detecting means in a predetermined setting period near the end time, and at least near the time when the liquid temperature is estimated by the liquid temperature estimating means at the end of heating when using the current heating operation The information is based on time series data of at least one of the time series data of the liquid temperature detected by the liquid temperature detecting means during the predetermined setting period.

本発明において、第1の発明によれば、暖房加熱制御手段は、暖房装置の加熱運転中に、液体循環ポンプの駆動中により前記暖房装置に導入される液体の温度を、液温検出手段により検出される検出液体温度に基づいて調整する構成を有するものであり、第2の発明によれば、暖房加熱制御手段は、暖房装置の加熱運転中に、液温検出手段によって検出される検出液体温度(暖房用液体循環通路内の液体の温度)に基づいて暖房用熱交換器による液体の加熱の制御と液体循環ポンプの駆動制御とを行う構成を有するものであるが、いずれの発明においても、前記暖房加熱制御手段は、暖房装置の運転終了予定時刻よりも予め定められる時間だけ手前の暖房運転終了準備時刻以降には、前記液温検出手段により検出される液体の温度が予め定められる加熱開始基準温度以下になっても前記液体の前記暖房用熱交換器による加熱を行わずに、前記液体循環ポンプの駆動による前記液体の前記暖房用液体循環通路内の循環動作を行うようにする暖房加熱制限制御を行うことにより、熱エネルギの無駄を抑制できる。 Oite the present invention, according to the first invention, the heating heating control means, during the heating operation of the heating system, the temperature of the liquid introduced into the heating device by being driven liquid circulation pump, the liquid temperature detection According to the second aspect of the invention, the heating / heating control means is detected by the liquid temperature detection means during the heating operation of the heating device. The invention has a configuration in which the heating control of the liquid by the heating heat exchanger and the drive control of the liquid circulation pump are performed based on the detected liquid temperature (the temperature of the liquid in the heating liquid circulation passage). in also the heating heating control means, the end of operation will later before the heating operation end preparation time by a predetermined is longer than the time of the heating system, set the temperature of the liquid detected by the liquid temperature detecting means in advance To be equal to or less than the heating start reference temperature without heating by the heat exchanger for the heating of the liquid, to perform the circulation operation of the heating liquid circulation passage of the liquid by driving the liquid circulation pump By performing the heating / heating restriction control to be performed, waste of heat energy can be suppressed.

つまり、従来のように、運転終了間近になっても、液温検出手段により検出される検出液体温度に基づいて暖房装置に導入される液体の温度を調整するために例えば液体の加熱を行ったり、液体の温度が前記加熱開始基準温度以下になったら必ず液体の加熱を行ったりする構成では、そのタイミングによっては、液体が余分に加熱されて、その熱が暖房装置で放熱されずに暖房用液体循環通路内に滞留し、その後、自然放熱されてしまうことになるため、熱エネルギの無駄が生じることがあるが、暖房運転終了準備時刻以降に前記暖房加熱制限制御を行うことにより、前記のように液体を余分に加熱することを防止し、熱エネルギの無駄を抑制できる。 That is, as in the past, even when the operation is nearing the end of operation , for example, the liquid is heated to adjust the temperature of the liquid introduced into the heating device based on the detected liquid temperature detected by the liquid temperature detecting means. , in the configuration in which the temperature of the liquid or always Tsu line heating of liquid Once falls below the heating start reference temperature, depending on the timing is excessively heated liquid, heating without being radiated by the heat heating Since the heat stays in the liquid circulation passage and then is naturally radiated, heat energy may be wasted, but by performing the heating and heating restriction control after the heating operation end preparation time, As described above, it is possible to prevent the liquid from being heated excessively and to suppress waste of heat energy.

また、第3の発明の如く、暖房装置の運転終了予定時刻における暖房用液体循環通路内の液体の温度を推定し、その推定した液体の温度が、加熱開始基準温度以下の予め定められる暖房終了時許容温度よりも低いときには、暖房運転終了準備時刻以降に暖房加熱制限制御を行う代わりに、暖房装置の運転終了予定時刻の液体の推定温度が前記暖房終了時許容温度以上となるように、例えば前記暖房運転終了準備時刻または該暖房運転終了準備時刻より予め定められた遅延時間だけ遅い時刻といった、予め定められる設定タイミングで暖房用熱交換器による液体の加熱を行うようにすると、以下の効果を奏することができる。 Further, as in the third aspect of the invention, the temperature of the liquid in the heating liquid circulation passage at the scheduled operation end time of the heating device is estimated, and the estimated temperature of the liquid that is estimated is equal to or lower than the heating start reference temperature. When the temperature is lower than the allowable temperature at the time of heating, instead of performing the heating heating limit control after the heating operation end preparation time, the estimated temperature of the liquid at the scheduled operation end time of the heating device is equal to or higher than the allowable temperature at the end of heating, for example When the heating heat exchanger is used to heat the liquid at a preset timing such as the heating operation completion preparation time or a time later than the heating operation completion preparation time by a predetermined delay time, the following effects are obtained. Can play.

つまり、前記のように、暖房運転終了準備時刻以降に、暖房用熱交換器による液体の加熱を行わない暖房加熱制限制御を行うようにすると、例えば暖房運転終了準備時刻以前の暖房用熱交換器による液体の加熱タイミングや暖房装置での液体の放熱状況によっては、運転終了予定時刻よりも早く暖房用液体循環通路内や暖房装置内の液体が暖房に適した温度よりも低くなってしまうことが生じる可能性がある。そうなると、利用者に、暖房装置の運転終了予定時刻よりも前に暖房装置による暖房が終了してしまったような感覚を与えてしまうおそれがあるが、暖房装置の運転終了予定時刻における液体の温度を推定してその推定温度が暖房終了時許容温度よりも低くならないように液体の加熱制御を行えば、このような不具合をなくすことができ、より使い勝手が良好な熱源装置を実現することができる。   In other words, as described above, when the heating heating restriction control that does not heat the liquid by the heating heat exchanger is performed after the heating operation end preparation time, for example, the heating heat exchanger before the heating operation end preparation time is performed. Depending on the heating timing of the liquid and the heat dissipation state of the liquid in the heating device, the liquid in the heating liquid circulation passage or in the heating device may become lower than the temperature suitable for heating earlier than the scheduled operation end time. It can happen. If this happens, the user may feel that heating by the heating device has ended before the scheduled operation end time of the heating device, but the temperature of the liquid at the scheduled operation end time of the heating device If the liquid heating control is performed so that the estimated temperature does not become lower than the allowable temperature at the end of heating, such a problem can be eliminated, and a heat source device with better usability can be realized. .

また、暖房運転終了準備時刻よりもさらに手前の終了準備予備時刻に液温検出手段により検出される検出液体温度を取り込んで、暖房装置の運転終了予定時刻における暖房用液体循環通路内の液体の温度を推定し、その推定温度が加熱開始基準温度以下の予め定められる暖房終了時許容温度よりも低いときには前記暖房運転終了準備時刻を前記運転終了予定時刻に近い側の時刻に変えるようにすれば、暖房加熱制限制御の時間を短くできるので、暖房装置の運転終了予定時刻における液体の温度が暖房終了時許容温度よりも低くならないようにすることができる。また、前記推定温度が前記加熱開始基準温度よりも予め定められる余裕設定温度以上に高いときには前記暖房運転終了準備時刻を前記終了準備予備時刻に近い側の時刻に変えるようにすれば、暖房装置の運転終了予定時刻に達するまでの時間において暖房用液体循環通路内の液体の保有熱量が多めのときには暖房加熱制限制御の時間を長くして、熱エネルギの無駄をより一層抑制できる。   In addition, the temperature of the liquid in the heating liquid circulation passage at the scheduled operation end time of the heating device is acquired by taking in the detected liquid temperature detected by the liquid temperature detection means at the end preparation preliminary time further before the heating operation end preparation time. When the estimated temperature is lower than a predetermined heating end allowable temperature equal to or lower than the heating start reference temperature, the heating operation end preparation time is changed to a time closer to the scheduled operation end time. Since the heating / heating restriction control time can be shortened, the temperature of the liquid at the scheduled operation end time of the heating apparatus can be prevented from becoming lower than the allowable temperature at the end of heating. In addition, when the estimated temperature is higher than the preset heating preset reference temperature, the heating operation end preparation time is changed to a time closer to the end preparation preliminary time. When the amount of heat held by the liquid in the heating liquid circulation passage is large in the time until the scheduled operation end time, the heating and heating restriction control time can be lengthened to further suppress waste of heat energy.

さらに、暖房装置の運転終了予定時刻における暖房用液体循環通路内の液体の温度を推定するための、暖房用液体循環通路内の液体から放熱される推定放熱量の情報を、前回の暖房運転利用時における少なくとも運転終了時近傍の予め定められた設定期間における液温検出手段による検出液体温度の時系列データと、今回の暖房運転利用時における少なくとも暖房終了時液温推定手段による液体温度の推定時近傍でその手前の予め定められた設定期間における液温検出手段による検出液体温度の時系列データの少なくとも一方の時系列データに基づく情報とすることにより、利用者の利用状況に対応するデータを用いて、暖房装置の運転終了予定時刻における前記液体の温度を的確に推定することができる。   Furthermore, information on the estimated amount of heat radiated from the liquid in the heating liquid circulation passage to estimate the temperature of the liquid in the heating liquid circulation passage at the scheduled operation end time of the heating device is used as the previous heating operation. Time series data of the liquid temperature detected by the liquid temperature detecting means in a predetermined setting period at least near the end of the operation at the time of the liquid temperature estimation by the liquid temperature estimating means at least when the heating operation is used By using information corresponding to the usage status of the user by using information based on time series data of at least one of the time series data of the liquid temperature detected by the liquid temperature detecting means in the vicinity in the vicinity of the predetermined setting period in the vicinity Thus, the temperature of the liquid at the scheduled operation end time of the heating device can be accurately estimated.

本発明に係る熱源装置の一実施例の制御構成を示す説明図である。It is explanatory drawing which shows the control structure of one Example of the heat-source apparatus which concerns on this invention. 熱源装置のシステム構成例を模式的に示す説明図である。It is explanatory drawing which shows the system configuration example of a heat source device typically. 実施例の熱源装置における暖房運転時の暖房用液体循環通路内の液体温度の例を説明するためのグラフである。It is a graph for demonstrating the example of the liquid temperature in the liquid circulation channel for heating at the time of the heating operation in the heat source device of an Example. 実施例の熱源装置における一部動作過程を示すフローチャートである。It is a flowchart which shows the one part operation | movement process in the heat-source apparatus of an Example. 従来例の熱源装置における暖房運転時の制御動作例と暖房用液体循環通路内の液体温度の例を時系列状に示すグラフである。It is a graph which shows the example of control operation at the time of heating operation in the heat source device of a prior art example, and the example of the liquid temperature in the liquid circulation channel for heating in time series form.

以下、本発明の実施の形態を図面に基づき説明する。なお、本実施例の説明において、従来例と同一名称部分には同一符号を付し、その重複説明は省略または簡略化する。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. In the description of the present embodiment, the same reference numerals are assigned to the same names as those in the conventional example, and the duplicate description is omitted or simplified.

本実施例の熱源装置のシステム構成は、図2に示した熱源装置と同様であり、本実施例の特徴的なことは、図1に示す特徴的な制御構成を有することである。つまり、本実施例では、熱源装置内の制御装置11内に、暖房終了時液温推定手段1、暖房加熱制御手段2、メモリ部3、時計機構4が設けられており、制御装置11は、暖房装置10b,10cの制御のための暖房リモコン装置8に信号接続されている。   The system configuration of the heat source device of the present embodiment is the same as that of the heat source device shown in FIG. 2, and the characteristic feature of this embodiment is that it has the characteristic control configuration shown in FIG. That is, in this embodiment, the heating end liquid temperature estimation means 1, the heating heating control means 2, the memory unit 3, and the clock mechanism 4 are provided in the control device 11 in the heat source device. It is signal-connected to a heating remote control device 8 for controlling the heating devices 10b and 10c.

暖房加熱制御手段2は、従来例と同様に、暖房用液体循環通路5から、暖房用熱交換器28で加熱された液体を暖房装置10a,10b,10cに適宜供給し、これらの暖房装置10a〜10cを加熱する際に、バーナ16の燃焼制御による暖房用熱交換器28の加熱制御と液体循環ポンプ6の駆動制御を行うものであるが、本実施例では従来例とは異なる以下に述べる特徴的な制御を行う。   As in the conventional example, the heating and heating control means 2 appropriately supplies the liquid heated by the heating heat exchanger 28 from the heating liquid circulation passage 5 to the heating devices 10a, 10b, and 10c, and these heating devices 10a. -10c, the heating control of the heating heat exchanger 28 by the combustion control of the burner 16 and the drive control of the liquid circulation pump 6 are performed. In this embodiment, the following is different from the conventional example. Perform characteristic control.

つまり、暖房加熱制御手段2は、この制御に際し、暖房リモコン装置8から暖房装置10b,10cの運転終了予定時刻teの情報を取り込み、該運転終了予定時刻teよりも予め定められる時間だけ手前の暖房運転終了準備時刻tyを設定する。なお、この予め定められる時間とは、暖房装置10b,10cの通常の運転中(加熱運転中)(図5(c)、参照)における、例えば図3(a)の期間Sに示されるような燃焼停止時刻から燃焼再開時刻までの時間(暖房低温サーミスタ36の温度が加熱停止基準温度Thになってから加熱開始基準温度Tlになるまでの時間)を定めることができ、例えば20分〜30分程度である。そして、この暖房運転終了準備時刻tyの情報を暖房終了時液温推定手段1に加える。   That is, in this control, the heating / heating control means 2 takes in the information on the scheduled operation end time te of the heating devices 10b and 10c from the heating remote control device 8, and the heating before the predetermined time after the scheduled operation end time te is performed. The operation completion preparation time ty is set. The predetermined time is, for example, as shown in a period S of FIG. 3A during normal operation (heating operation) of the heating devices 10b and 10c (see FIG. 5C). The time from the combustion stop time to the combustion restart time (the time from when the temperature of the heating low temperature thermistor 36 becomes the heating stop reference temperature Th to the heating start reference temperature Tl) can be determined, for example, 20 minutes to 30 minutes. Degree. Then, information on the heating operation end preparation time ty is added to the heating end liquid temperature estimating means 1.

暖房終了時液温推定手段1は、暖房加熱制御手段2から加えられる暖房運転終了準備時刻tyの情報に基づき、この暖房装置10b,10cの暖房運転終了準備時刻tyに、暖房低温サーミスタ36により検出される検出液体温度Tyを取り込む。そして、この検出液体温度Tyと、暖房運転終了準備時刻tyから暖房装置10b,10cの運転終了予定時刻teまでの時間(例えば30分)と、この時間が経過する間に、暖房用液体循環通路5内の液体から放熱される推定放熱量の情報とに基づき、予め定められる温度推定手法に従って、暖房装置10b,10cの運転終了予定時刻teにおける暖房用液体循環通路5内の液体の温度を推定する。   The heating end liquid temperature estimation means 1 is detected by the heating low temperature thermistor 36 at the heating operation end preparation time ty of the heating devices 10b and 10c based on the information of the heating operation end preparation time ty added from the heating heating control means 2. The detected liquid temperature Ty is taken in. The detected liquid temperature Ty, the time from the heating operation end preparation time ty to the scheduled operation end time te of the heating devices 10b and 10c (for example, 30 minutes), and the heating liquid circulation passage during this time elapse. The temperature of the liquid in the heating liquid circulation passage 5 at the scheduled operation end time te of the heating devices 10b and 10c is estimated according to a predetermined temperature estimation method based on information on the estimated heat release amount radiated from the liquid in the liquid 5. To do.

なお、暖房用液体循環通路5内の液体から放熱される推定放熱量の情報は、メモリ部3に格納されており、その情報形態等は特に限定されるものではなく適宜設定されるものであるが、例えば図3(a)に示されるような、暖房低温サーミスタ36による検出液体温度の時系列データに基づく情報とすることができる。具体的には、その時系列データとして、例えば今回の暖房運転利用時における少なくとも暖房運転終了準備時刻tyの近傍でその手前の予め定められた設定期間(例えば図3(a)のAに示す期間であり、例えば1時間)における暖房低温サーミスタ36による検出液体温度の時系列データを用いることができる。また、前回の暖房運転利用時における時系列データをメモリ部3に格納しておき、そのデータのうち少なくとも運転終了時近傍の予め定められた設定期間における暖房低温サーミスタ36による検出液体温度の時系列データを用いることもできる。   In addition, the information of the estimated heat radiation amount radiated from the liquid in the heating liquid circulation passage 5 is stored in the memory unit 3, and the information form and the like are not particularly limited and are set as appropriate. However, for example, as shown in FIG. 3A, the information can be information based on time-series data of the liquid temperature detected by the heating low temperature thermistor 36. Specifically, as the time-series data, for example, at the time of the current heating operation use, at least in the vicinity of the heating operation end preparation time ty, a predetermined setting period before that (for example, a period shown in A of FIG. 3A). Yes, for example, time series data of the liquid temperature detected by the heating low temperature thermistor 36 in one hour) can be used. In addition, time series data at the time of the previous heating operation use is stored in the memory unit 3, and at least a time series of the detected liquid temperature by the heating low temperature thermistor 36 in a predetermined setting period near the end of the operation among the data. Data can also be used.

暖房終了時液温推定手段1は、例えば、液温推定に用いられる時系列データを図3(a)の設定期間A内のデータとした場合には、このデータ中において、暖房低温サーミスタ36の温度が加熱停止基準温度Thになって暖房用熱交換器28による液体の加熱が停止してからの(例えば前記期間Sにおける)放熱による単位時間当たりの温度低下量を求める。そして、例えば、前記暖房運転終了備時刻tyにおける暖房低温サーミスタ36の検出液体温度Tyが63℃であり、暖房運転終了準備時刻から暖房装置10b,10cの運転終了予定時刻teまでの時間が30分である場合には、前記単位時間当たりの温度低下量(例えば20℃/時間)から、暖房装置10b,10cの運転終了予定時刻teにおける暖房用液体循環通路5内の液体の温度を53℃であると推定する。 For example, when the time-series data used for liquid temperature estimation is the data within the set period A in FIG. 3A, the heating end liquid temperature estimating means 1 includes the heating low temperature thermistor 36 in this data. The amount of temperature decrease per unit time due to heat dissipation after the temperature reaches the heating stop reference temperature Th and the heating of the liquid by the heating heat exchanger 28 stops (for example, in the period S) is obtained. Then, for example, detecting a liquid temperature Ty heating cold thermistor 36 in the heating operation ends Preparation time ty is the 63 ° C., the heating device 10b from the heating operation end preparation time, the time until the operation end scheduled time te of 10c 30 In the case of minutes, the temperature of the liquid in the heating liquid circulation passage 5 at the scheduled operation end time te of the heating devices 10b and 10c is determined to be 53 ° C. from the temperature decrease amount per unit time (for example, 20 ° C./hour). It is estimated that.

なお、この推定に際し、暖房装置10b,10cが配設されている室内の温度や、熱源装置の器具ケース42が配設されている屋外の温度を取り込んで、これらの温度も考慮して推定を行うようにしてもよいし、さらに、熱源装置の器具ケースを屋外に配置する場合に、その風の強さ等を考慮してもよく、様々な態様をとることができる。   In this estimation, the temperature in the room in which the heating devices 10b and 10c are arranged and the temperature in the outdoors in which the appliance case 42 of the heat source device is arranged are taken into consideration and the estimation is performed in consideration of these temperatures. In addition, when the instrument case of the heat source device is placed outdoors, the strength of the wind may be taken into consideration, and various modes can be taken.

暖房加熱制御手段2は、時計機構4からの時刻情報を取り込み、暖房運転終了準備時刻ty以降に、暖房終了時液温推定手段1により推定した推定温度Te(暖房装置10b,10cの運転終了予定時刻teにおける暖房用液体循環通路5内の液体の推定温度Te)を取り込み、以下の制御を行う。   The heating / heating control means 2 takes in the time information from the timepiece mechanism 4 and estimates the estimated temperature Te estimated by the heating end liquid temperature estimation means 1 after the heating operation completion preparation time ty (the scheduled operation completion of the heating devices 10b and 10c). The estimated temperature Te) of the liquid in the heating liquid circulation passage 5 at time te is taken in, and the following control is performed.

つまり、暖房終了時液温推定手段1により推定した推定温度Teが前記加熱開始基準温度Tl(例えば57℃)以下の予め定められる暖房終了時許容温度Tp(例えば55℃)以上だったときには、暖房加熱制御手段2は、暖房運転終了備時刻ty以降は、暖房低温サーミスタ36により検出される液体の温度が前記加熱開始基準温度Tl以下になっても、暖房用液体循環通路5内の液体の暖房用熱交換器28による加熱を行わずに、液体循環ポンプ6の駆動による前記液体の暖房用液体循環通路5内の循環動作を行うようにする暖房加熱制限制御を行う。 That is, when the estimated temperature Te estimated by the liquid temperature estimating means 1 at the end of heating is equal to or higher than a predetermined allowable temperature Tp at the end of heating (eg, 55 ° C.) that is equal to or lower than the heating start reference temperature Tl (eg, 57 ° C.). heating control means 2, the heating operation ends Preparation time ty later, even if the temperature of the liquid to be detected by heating the low-temperature thermistor 36 becomes less than the heating start reference temperature Tl, the liquid in the heating liquid circulation path 5 The heating / heating restriction control is performed so that the liquid circulation pump 5 is circulated in the heating liquid circulation passage 5 by driving the liquid circulation pump 6 without heating by the heating heat exchanger 28.

一方、図3(a)の特性線における鎖線部分に示されるように、暖房終了時液温推定手段1により推定した暖房装置10b,10cの運転終了予定時刻teにおける暖房用液体循環通路5内の液体の推定温度Teが53℃で、前記暖房終了時許容温度Tp(例えば55℃)よりも低いときには、暖房加熱制御手段2は、暖房加熱制限制御を行う代わりに、暖房装置10b,10cの運転終了予定時刻teの液体の推定温度が前記暖房終了時許容温度Tp以上となるように、予め定められる設定タイミングで(例えば前記暖房運転終了準備時刻tyまたは該暖房運転終了準備時刻tyより予め定められた遅延時間だけ遅い時刻に)、暖房用液体循環通路5内の液体の暖房用熱交換器28による加熱と液体循環ポンプ6の駆動を行う。   On the other hand, as shown in the chain line part in the characteristic line of FIG. 3A, the heating liquid circulation passage 5 in the heating end time te estimated by the liquid temperature estimation means 1 at the end of heating is estimated. When the estimated temperature Te of the liquid is 53 ° C. and lower than the allowable heating end temperature Tp (for example, 55 ° C.), the heating / heating control means 2 operates the heating devices 10b and 10c instead of performing the heating / heating restriction control. At a predetermined setting timing (for example, the heating operation end preparation time ty or the heating operation end preparation time ty is determined in advance so that the estimated temperature of the liquid at the scheduled end time te is equal to or higher than the heating end allowable temperature Tp. At a time later by the delay time), the liquid in the heating liquid circulation passage 5 is heated by the heating heat exchanger 28 and the liquid circulation pump 6 is driven.

なお、このときの暖房用熱交換器28による加熱は、例えば図3(a)のグラフに基づいて求められる暖房終了時許容温度Tpと運転終了予定時刻teにおける暖房用液体循環通路5内の液体の推定温度Teとの温度差ΔTあるいは温度差ΔTに近い温度だけ、例えば図3(b)に示すように、暖房運転終了準備時刻tyにおける暖房用液体循環通路5内の液体の温度Ty(暖房低温サーミスタ36の検出温度)よりも暖房用液体循環通路5内の液体の温度が高くなるように行うものである。そして、その後は暖房用熱交換器28による液体の加熱を行わないようにする。このようにすることで、図3(b)に示すように、暖房装置10b,10cの運転終了予定時刻teでの暖房用液体循環通路5内の液体の温度を暖房終了時許容温度Tp以上にすることができる。   In addition, the heating by the heat exchanger 28 for heating at this time is, for example, the liquid in the heating liquid circulation passage 5 at the heating end allowable temperature Tp obtained based on the graph of FIG. For example, as shown in FIG. 3B, the temperature Ty of the liquid in the heating liquid circulation passage 5 at the heating operation end preparation time ty (heating) The temperature of the liquid in the heating liquid circulation passage 5 is higher than the temperature detected by the low temperature thermistor 36. After that, the liquid is not heated by the heating heat exchanger 28. By doing in this way, as shown in FIG.3 (b), the temperature of the liquid in the heating liquid circulation channel | path 5 in the operation end scheduled time te of heating apparatus 10b, 10c is more than the allowable temperature Tp at the time of heating completion. can do.

図4には、本実施例において、暖房装置10b,10cの運転中の制御動作の一例がフローチャートにより示されている。暖房加熱制御手段2は、同図のステップS1に示されるような暖房運転通常制御(前記のような通常の加熱運転制御)を行いながら、随時、ステップS2で、暖房装置10b,10cの終了予定時刻のセットがあるかどうか(リモコン装置8により暖房装置10b,10cの運転オフのタイマ(切タイマ)がセットされているかどうか)を確認する。そして、終了予定時刻のセットがある場合には、ステップS3で、暖房運転終了備時刻tyを設定し、ステップS4で、その暖房運転終了備時刻になったかどうかを確認する。 FIG. 4 is a flowchart showing an example of the control operation during operation of the heating devices 10b and 10c in the present embodiment. The heating / heating control means 2 performs the heating operation normal control (the normal heating operation control as described above) as shown in step S1 in the figure, and at any time in step S2, the heating devices 10b and 10c are scheduled to end. It is confirmed whether or not there is a time setting (whether or not the timer for turning off the heating devices 10b and 10c (off timer) is set by the remote control device 8). And, if you have a set of scheduled end time, in step S3, it sets the heating operation end Preparation time ty, in step S4, to see whether this was in the heating operation end Prepare time.

そして、ステップS4で、暖房運転終了備時刻になったときには、暖房終了時液温推定手段1によって、前記の如く暖房装置10b,10cの運転終了予定時刻における暖房用液体循環通路5内の液体の温度を推定する。そして、この温度を例えばTeとし、暖房加熱制御手段2に加える。暖房加熱制御手段2は、ステップS6で、Teが前記暖房終了時許容温度より小さいかどうかを確認し、Teが暖房終了時許容温度以上であったときには、ステップS7で、ステップS9の暖房運転終了まで前記暖房加熱制限制御を行うようにする。 Then, in step S4, when it is the heating operation ends Preparation time, by heating at the end liquid temperature estimation means 1, wherein the as heating device 10b, 10c liquid in the heating liquid circulation path 5 in the operation end scheduled time Estimate the temperature. Then, this temperature is set to Te, for example, and added to the heating / heating control means 2. In step S6, the heating / heating control means 2 confirms whether Te is smaller than the allowable temperature at the end of heating. If Te is equal to or higher than the allowable temperature at the end of heating, the heating operation ends in step S9 in step S7. Until the heating and heating restriction control is performed.

一方、ステップS6で、Teが前記暖房終了時許容温度より小さいと判断されたときには、ステップS8で、前記設定タイミングで、暖房運転終了時刻teの液体の温度が前記暖房終了時許容温度以上の温度になるように、暖房用熱交換器28による暖房用液体循環通路5内の液体の加熱と液体循環ポンプ6の駆動を行ってから、ステップS9の暖房運転終了となるようにする。   On the other hand, when it is determined in step S6 that Te is smaller than the allowable temperature at the end of heating, the temperature of the liquid at the heating operation end time te is equal to or higher than the allowable temperature at the end of heating at the set timing in step S8. After heating the liquid in the heating liquid circulation passage 5 and driving the liquid circulation pump 6 by the heating heat exchanger 28, the heating operation in step S9 is completed.

また、暖房装置10b,10cについて運転オフのタイマをセットせず、リモコン装置8の手動操作により暖房運転オフの指令が発信されたときに、従来は、液体循環ポンプ6の駆動をオフとしていた(暖房運転オフの指令発信時に駆動していたときには停止し、駆動停止していたときには停止状態のまま継続していた)が、本実施例において、暖房加熱制御手段2は、リモコン装置8の手動操作により暖房運転オフの指令が発信されたときに、予め定められた設定ポンプ駆動時間だけ液体循環ポンプ6を駆動させてから駆動を停止するようにしてもよい。   In addition, when the heating operation off command is transmitted by manual operation of the remote control device 8 without setting the operation off timer for the heating devices 10b and 10c, the driving of the liquid circulation pump 6 is conventionally turned off ( In the present embodiment, the heating / heating control means 2 is operated manually by the remote control device 8. However, in the present embodiment, the heating / heating control means 2 is operated manually. When the heating operation OFF command is transmitted by the above, the liquid circulation pump 6 may be driven for a predetermined set pump driving time and then the driving may be stopped.

なお、本実施例に適用されている熱源装置は、暖房機能に加え、給湯機能を有しており、バーナ17の燃焼によって熱交換器29を通る水を加熱して湯を形成して、適宜の給湯先に給湯することができるし、形成した湯を前記湯張り注水通路を通して湯を浴槽27に注ぐことによって浴槽27への湯張り(自動湯張り動作)を行うこともできる。   The heat source device applied to the present embodiment has a hot water supply function in addition to a heating function, and heats water passing through the heat exchanger 29 by combustion of the burner 17 to form hot water, Hot water filling (automatic hot water filling operation) to the bathtub 27 can be performed by pouring hot water into the bathtub 27 through the hot water filling passage.

また、本実施例において、暖房用液体循環通路5内の液体を、図2の矢印B’に示したように、液−液熱交換器7に通しながら循環させると共に、浴槽湯水循環ポンプ20を駆動させて、図2の矢印Hに示すように、追い焚き循環通路13内に浴槽湯水を循環させ、この浴槽湯水と暖房用液体循環通路5を通る液体とを液―液熱交換器7を介して熱交換することにより、浴槽27内の湯水の追い焚き動作を行うことができるが、これらの機能や動作についての詳細説明は省略する。   In the present embodiment, the liquid in the heating liquid circulation passage 5 is circulated while passing through the liquid-liquid heat exchanger 7 as shown by the arrow B ′ in FIG. As shown by an arrow H in FIG. 2, the bath hot water is circulated in the recirculation circulation passage 13 and the liquid hot water and the liquid passing through the heating liquid circulation passage 5 are connected to the liquid-liquid heat exchanger 7. The hot water in the bathtub 27 can be reheated by exchanging heat via the heat exchanger, but detailed description of these functions and operations will be omitted.

なお、本発明は、前記実施例に限定されるものでなく、適宜設定されるものである。例えば、前記実施例では、暖房機能に加え、給湯機能、自動湯張り機能、風呂の追い焚き機能を備えた複合装置としたが、暖房機能以外の機能は設けてもよいし設けなくてもよい。   In addition, this invention is not limited to the said Example, It sets suitably. For example, in the above embodiment, in addition to the heating function, a combined device having a hot water supply function, an automatic hot water filling function, and a bath replenishment function is provided, but functions other than the heating function may or may not be provided. .

また、前記実施例では、暖房終了時液温推定手段1を設けて暖房装置10b,10cの運転終了予定時刻teにおける暖房用液体循環通路5内の液体の温度を推定し、この推定温度が暖房終了時許容温度以上か否かによって、暖房加熱制御手段2による暖房運転終了備時刻以降の制御を可変したが、暖房終了時液温推定手段1を省略し、暖房加熱制御手段2は、暖房運転終了備時刻ty以降は、暖房低温サーミスタ36により検出される液体の温度が前記加熱開始基準温度以下になっても暖房用液体循環通路5内の液体の暖房用熱交換器28による加熱を行わずに液体循環ポンプ6を駆動させる暖房加熱制限制御を行うようにしてもよい。 Moreover, in the said Example, the liquid temperature estimation means 1 at the time of completion | finish of heating is provided, the temperature of the liquid in the heating liquid circulation channel | path 5 in the operation completion scheduled time te of heating apparatus 10b, 10c is estimated, and this estimated temperature is heating. depending on whether the end allowable temperature or higher, the control of the heating operation ends Preparation time later by heating the heating control unit 2 has been variable, omitting the heating end liquid temperature estimation means 1, heating the heating control unit 2, heating the operation end Preparation time ty later, the heating temperature of the liquid to be detected by the liquid of the heating heat exchanger 28 of the heating start reference temperature equal to or lower than the heating liquid circulation path 5 by heating the low-temperature thermistor 36 You may make it perform the heating heating limitation control which drives the liquid circulation pump 6 without performing.

さらに、図1の破線に示されるように、制御装置11内に暖房運転終了準備時刻可変設定手段9を設け、以下のような制御を行うようにしてもよい。つまり、暖房終了時液温推定手段1が、暖房運転終了準備時刻tyよりもさらに手前の終了準備予備時刻tbに暖房低温サーミスタ36により検出される検出液体温度を取り込み、該検出液体温度と、前記終了準備予備時刻tbから暖房装置の運転終了予定時刻teまでの時間と、この時間が経過する間に液体から放熱される推定放熱量の情報とに基づき、予め定められる温度推定手法に従って暖房装置10b,10cの運転終了予定時刻teにおける前記液体の温度を推定する。   Furthermore, as shown by the broken line in FIG. 1, the heating operation end preparation time variable setting means 9 may be provided in the control device 11 to perform the following control. That is, the heating end liquid temperature estimating means 1 takes in the detected liquid temperature detected by the heating low temperature thermistor 36 at the end preparation preliminary time tb before the heating operation end preparation time ty, and the detected liquid temperature, Based on the time from the preliminary preparation preliminary time tb to the scheduled operation end time te of the heating device and information on the estimated heat release amount radiated from the liquid while this time elapses, the heating device 10b according to a predetermined temperature estimation method. , 10c, the temperature of the liquid at the scheduled operation end time te is estimated.

そして、暖房運転終了準備時刻可変設定手段9が、暖房終了時液温推定手段1による推定温度に基づき、この推定温度が加熱開始基準温度以下の予め定められる暖房終了時許容温度よりも低いときには、前記暖房運転終了準備時刻tyを運転終了予定時刻teに近い側の時刻に変え、前記推定温度が前記加熱開始基準温度よりも予め定められる余裕設定温度以上に高いときには暖房運転終了準備時刻tyを終了準備予備時刻tbに近い側の時刻に変えるようにし、このようにして可変設定される暖房運転終了備時刻ty以降に、暖房加熱制御手段2が暖房加熱制限制御を行うようにしてもよい。 When the heating operation end preparation time variable setting means 9 is based on the estimated temperature by the heating end liquid temperature estimating means 1 and this estimated temperature is lower than a predetermined heating end time allowable temperature equal to or lower than the heating start reference temperature, The heating operation end preparation time ty is changed to a time closer to the scheduled operation end time te, and the heating operation end preparation time ty is ended when the estimated temperature is higher than a preset margin temperature than the heating start reference temperature. prepared to alter the side of the time close to the spare time tb, thus to variably set the heating operation ends preparation time ty after being in, heating the heating control unit 2 may perform the heating heating limit control.

さらに、暖房加熱制御手段2は、暖房運転終了備時刻tyから暖房装置10の運転終了予定時刻teまでの期間における暖房用液体循環通路5内の液体の温度変化の推定データから以下のような制御を行うようにしてもよい。つまり、まず、暖房運転終了備時刻tyから暖房装置10の運転終了予定時刻teまでの期間に暖房用液体循環通路5内の液体の温度が加熱開始基準温度以下に下がるかどうかを推定し、下がると推定される場合には、暖房装置10の運転終了予定時刻teに暖房用液体循環通路5内の液体の温度が加熱開始基準温度より高くなるようにするために暖房用熱交換器28による液体の加熱を行うための最小加熱時間を推定する。 Furthermore, heating the heating control unit 2, as follows from the estimated data of the temperature change of the liquid in the heating liquid circulation path 5 in the period from the heating operation ends Preparation time ty until the operation end scheduled time te heating device 10 Control may be performed. That is, firstly, to estimate whether the temperature of the liquid in the operation end scheduled time period in the heating liquid circulation path 5 to te heating apparatus 10 from the heating operation ends Preparation time ty falls below the heating start reference temperature, In the case where it is estimated that the temperature is lowered, the heating heat exchanger 28 uses the heating heat exchanger 28 to make the temperature of the liquid in the heating liquid circulation passage 5 higher than the heating start reference temperature at the scheduled operation end time te of the heating apparatus 10. Estimate the minimum heating time for heating the liquid.

そして、この推定最小加熱時間が予め定められた判断基準時間(例えば20秒)以下の場合には、前記暖房運転終了備時刻ty以降には、暖房用液体循環通路5内の液体の温度が加熱開始基準温度以下に下がっても暖房用熱交換器28による加熱を行わない前記暖房加熱制限制御を行うようにし、前記推定最小加熱時間が前記判断基準時間より大きい場合には、暖房運転終了備時刻ty以降に暖房用液体循環通路5内の液体の温度が加熱開始基準温度以下に下がったときに、前記最小加熱時間だけ液体の加熱を行うようにしてもよい。 When the estimated minimum heating criterion time period is predetermined (e.g., 20 seconds) or less, the the heating operation ends Preparation time ty later, the temperature of the liquid in the heating liquid circulation path 5 even it drops below the heating start reference temperature so as to perform the heating heating limit control is not performed heating by the heating heat exchanger 28, wherein when the estimated minimum heating time is greater than the criterion time, the heating operation ends quasi When the temperature of the liquid in the heating liquid circulation passage 5 falls below the heating start reference temperature after the preparation time ty, the liquid may be heated for the minimum heating time.

さらに、本発明の熱源装置に接続される暖房装置は適宜設定されるものであり、また、本発明の熱源装置は、温水マット以外の暖房装置10であっても、その通常の加熱運転中に、暖房用液体循環通路5内の温度(その液温を検出する液温検出手段により検出される検出液体温度)が前記加熱開始基準温度Tl以下になったときには液体を暖房用熱交換器28によって加熱しながら液体循環ポンプ6を駆動させ、前記検出液体温度が前記加熱停止基準温度Th以上になったときには液体の暖房用熱交換器28による加熱と液体循環ポンプ6の駆動を共に停止させる制御を行うことにより安定して加熱運転を行える暖房装置であれば、前記実施例のような加熱制御を行ってもよい。   Furthermore, the heating device connected to the heat source device of the present invention is set as appropriate, and the heat source device of the present invention can be used during the normal heating operation even in the heating device 10 other than the hot water mat. When the temperature in the heating liquid circulation passage 5 (detected liquid temperature detected by the liquid temperature detecting means for detecting the liquid temperature) becomes equal to or lower than the heating start reference temperature Tl, the liquid is heated by the heating heat exchanger 28. The liquid circulation pump 6 is driven while heating, and when the detected liquid temperature becomes equal to or higher than the heating stop reference temperature Th, the heating of the liquid heating heat exchanger 28 and the driving of the liquid circulation pump 6 are both stopped. If it is a heating apparatus which can perform a heating operation stably by performing, you may perform heating control like the said Example.

例えば、図2に示したようなシステム構成の熱源装置において、前記実施例における暖房装置10b,10cの制御と同様の制御を高温の暖房装置10aについて行ってもよく、その場合、例えば、加熱開始基準温度Tl=77℃、加熱停止基準温度Th=87℃、暖房終了時許容温度Tp=75℃と設定することができる。そして、液体循環通路5内の液体を検出する液温検出手段として暖房高温サーミスタ33を用い、暖房高温サーミスタ33で検出される検出温度(通常の加熱運転中の検出温度や高温の暖房装置10aの暖房運転終了備時刻tyにおける暖房低温サーミスタ36の検出液体温度Ty等)、暖房装置10aの運転終了予定時刻teにおける暖房用液体循環通路5内の液体の推定温度Te等と、前記各温度Tl、Th、Tpとに基づいて、暖房用液体循環通路5内の液体の加熱制御を行ってもよい。 For example, in the heat source device having the system configuration as shown in FIG. 2, the same control as that of the heating devices 10 b and 10 c in the above embodiment may be performed on the high-temperature heating device 10 a. The reference temperature Tl = 77 ° C., the heating stop reference temperature Th = 87 ° C., and the heating allowable temperature Tp = 75 ° C. can be set. And the heating high temperature thermistor 33 is used as a liquid temperature detection means for detecting the liquid in the liquid circulation passage 5, and the detected temperature detected by the heating high temperature thermistor 33 (the detected temperature during the normal heating operation or the high temperature heating device 10a). detection liquid temperature Ty like heating cold thermistor 36 in the heating operation end Preparation time ty), and the estimated temperature Te and the like of the liquid of the heating liquid circulation passage 5 at the operating scheduled end time te heating device 10a, the respective temperature Tl , Th, Tp may be used to control heating of the liquid in the heating liquid circulation passage 5.

一例を挙げると、高温の暖房装置10aの暖房運転終了備時刻tyにおける暖房低温サーミスタ36の検出液体温度Tyが83℃であり、暖房運転終了準備時刻から暖房装置10aの運転終了予定時刻teまでの時間が30分であり、液体の加熱を停止した場合の単位時間当たりの温度低下量が例えば20℃/時間であったとすると、暖房装置10aの運転終了予定時刻teにおける暖房用液体循環通路5内の液体の温度Teは73℃であると推定され、暖房終了時許容温度Tp(75℃)より低くなると推定される。 As an example, the detection fluid temperature Ty heating cold thermistor 36 in the heating operation end Preparation time ty of the hot heating apparatus 10a is the 83 ° C., until the operation scheduled end time te heating device 10a from the heating operation end preparation time If the heating time of the liquid is stopped and the temperature decrease amount per unit time is 20 ° C./hour, for example, the heating liquid circulation passage 5 at the scheduled operation end time te of the heating device 10a is assumed. The temperature Te of the liquid is estimated to be 73 ° C., and is estimated to be lower than the allowable temperature Tp (75 ° C.) at the end of heating.

そこで、この場合は、暖房装置10aの運転終了予定時刻teの液体の推定温度Teが前記暖房終了時許容温度Tp(85℃)以上となるように、予め定められる設定タイミングで(例えば前記暖房運転終了準備時刻または該暖房運転終了準備時刻tyより予め定められた遅延時間だけ遅い時刻に)、暖房用液体循環通路5内の液体の暖房用熱交換器28による加熱と液体循環ポンプ6の駆動を行うことになる。   Therefore, in this case, the estimated temperature Te of the liquid at the scheduled operation end time te of the heating apparatus 10a is equal to or higher than the allowable temperature Tp (85 ° C.) at the end of heating (for example, the heating operation). At the end preparation time or a time later than the heating operation end preparation time ty by a predetermined delay time), the heating of the liquid in the heating liquid circulation passage 5 by the heating heat exchanger 28 and the driving of the liquid circulation pump 6 are performed. Will do.

また、このような高温の暖房装置10aの加熱制御に関し、前記のように、液体循環通路5内の液体を検出する液温検出手段として暖房高温サーミスタ33を用いてもよいが、暖房低温サーミスタ36の検出温度と暖房用熱交換器28の加熱量と液体循環ポンプ6の循環量(消費電力等)から、前記温度Ty、Teを始めとする暖房高温サーミスタ33の温度(暖房装置10aに供給される液体の温度)を推定してもよく、この推定温度と制御の基準となる前記各温度Tl、Th、Tpとに基づいて暖房用液体循環通路5内の液体の加熱制御を行ってもよい。   Further, regarding the heating control of such a high temperature heating device 10a, as described above, the heating high temperature thermistor 33 may be used as the liquid temperature detecting means for detecting the liquid in the liquid circulation passage 5, but the heating low temperature thermistor 36 may be used. Temperature of the heating high temperature thermistor 33 including the temperatures Ty and Te (supplied to the heating device 10a) from the detected temperature, the heating amount of the heating heat exchanger 28 and the circulation amount (power consumption, etc.) of the liquid circulation pump 6. The temperature of the liquid in the heating liquid circulation passage 5 may be controlled based on the estimated temperature and the temperatures Tl, Th, and Tp that serve as control standards. .

さらに、本発明の熱源装置は、例えば前記実施例で設けたガス燃焼を行うバーナの代わりに、石油燃焼用のバーナを設けてもよいし、電熱ヒータを設けてもよい。また、暖房用液体循環通路5内に循環させる液体は、水とは限らず、例えば不凍液等の他の液体としてもよい。   Furthermore, in the heat source device of the present invention, for example, a burner for oil combustion may be provided instead of the burner for performing gas combustion provided in the above embodiment, or an electric heater may be provided. Further, the liquid circulated in the heating liquid circulation passage 5 is not limited to water, and may be another liquid such as an antifreeze liquid.

本発明の熱源装置は、暖房運転における熱エネルギの無駄を少なくできるので、省エネ化が可能となり、例えば家庭用の熱源装置として利用できる。   Since the heat source device of the present invention can reduce waste of heat energy in the heating operation, energy saving can be achieved, and for example, it can be used as a heat source device for home use.

1 暖房終了時液温推定手段
2 暖房加熱制御手段
3 メモリ部
5 暖房用液体循環通路
6 液体循環ポンプ
9 暖房運転終了準備時刻可変設定手段
10 暖房装置
11 制御装置
16,17 バーナ
28 暖房用熱交換器
33 暖房高温サーミスタ
36 暖房低温サーミスタ
DESCRIPTION OF SYMBOLS 1 Liquid temperature estimation means at the time of heating end 2 Heating heating control means 3 Memory part 5 Heating liquid circulation passage 6 Liquid circulation pump 9 Heating operation end preparation time variable setting means 10 Heating apparatus 11 Control apparatus 16, 17 Burner 28 Heating exchange for heating 33 Heating high temperature thermistor 36 Heating low temperature thermistor

Claims (5)

暖房装置に熱媒体の液体を供給する機能を備えた暖房用液体循環通路を有し、該暖房用液体循環通路には該暖房用液体循環通路に液体を循環させる液体循環ポンプと、該液体循環ポンプの駆動により循環する液体を加熱する暖房用熱交換器と、前記液体の温度を検出する液温検出手段とが設けられ、前記暖房装置の加熱運転中に、前記液体循環ポンプの駆動中により前記暖房装置に導入される液体の温度を前記液温検出手段により検出される検出液体温度に基づいて調整する暖房加熱制御手段を備えた熱源装置であって、該暖房加熱制御手段は前記暖房装置の運転終了予定時刻の情報を取り込み、該運転終了予定時刻よりも予め定められる時間だけ手前の暖房運転終了準備時刻以降には前記液温検出手段により検出される液体の温度が予め定められる加熱開始基準温度以下になっても前記液体の前記暖房用熱交換器による加熱を行わずに前記液体循環ポンプの駆動による前記液体の前記暖房用液体循環通路内の循環動作を行うようにする暖房加熱制限制御を行うことを特徴とする熱源装置 A heating liquid circulation passage having a function of supplying a heating medium liquid to the heating device, the heating liquid circulation passage having a liquid circulation pump for circulating the liquid in the heating liquid circulation passage, and the liquid circulation A heating heat exchanger for heating the circulating liquid by driving the pump and a liquid temperature detecting means for detecting the temperature of the liquid are provided, and during the heating operation of the heating device, the liquid circulating pump is driven A heat source device comprising heating heating control means for adjusting a temperature of a liquid introduced into the heating device based on a detected liquid temperature detected by the liquid temperature detection means, wherein the heating heating control means is the heating device. The information on the scheduled operation end time is taken in, and the temperature of the liquid detected by the liquid temperature detecting means is determined in advance after the heating operation completion preparation time before the scheduled operation end time. The liquid is circulated in the heating liquid circulation passage by driving the liquid circulation pump without heating the liquid by the heating heat exchanger even when the temperature is lower than the heating start reference temperature. A heat source device that performs heating / heating restriction control . 暖房装置に熱媒体の液体を供給する機能を備えた暖房用液体循環通路を有し、該暖房用液体循環通路には該暖房用液体循環通路に液体を循環させる液体循環ポンプと、該液体循環ポンプの駆動により循環する液体を加熱する暖房用熱交換器と、前記液体の温度を検出する液温検出手段とが設けられ、前記暖房装置の加熱運転中に、前記液温検出手段により検出される検出液体温度が予め定められる加熱開始基準温度以下になったときには前記液体を前記暖房用熱交換器によって加熱しながら前記液体循環ポンプを駆動させ、前記検出液体温度が前記加熱開始基準温度よりも高い予め定められる加熱停止基準温度以上になったときには前記液体の前記暖房用熱交換器による加熱と前記液体循環ポンプの駆動を共に停止させる暖房加熱制御手段を備えた熱源装置であって、該暖房加熱制御手段は前記暖房装置の運転終了予定時刻の情報を取り込み、該運転終了予定時刻よりも予め定められる時間だけ手前の暖房運転終了準備時刻以降には前記液温検出手段により検出される液体の温度が前記加熱開始基準温度以下になっても前記液体の前記暖房用熱交換器による加熱を行わずに前記液体循環ポンプの駆動による前記液体の前記暖房用液体循環通路内の循環動作を行うようにする暖房加熱制限制御を行うことを特徴とする熱源装置。   A heating liquid circulation passage having a function of supplying a heating medium liquid to the heating device, the heating liquid circulation passage having a liquid circulation pump for circulating the liquid in the heating liquid circulation passage, and the liquid circulation A heating heat exchanger for heating the circulating liquid by driving the pump and a liquid temperature detecting means for detecting the temperature of the liquid are provided, and detected by the liquid temperature detecting means during the heating operation of the heating device. When the detected liquid temperature is equal to or lower than a predetermined heating start reference temperature, the liquid circulation pump is driven while the liquid is heated by the heating heat exchanger, and the detected liquid temperature is lower than the heating start reference temperature. Heating heating control means for stopping both heating of the liquid by the heating heat exchanger and driving of the liquid circulation pump when the temperature becomes higher than a predetermined heating stop reference temperature; The heating and heating control means takes in the information of the scheduled operation end time of the heating device, and after the heating operation completion preparation time before the scheduled operation end time, the liquid heating control means Even if the temperature of the liquid detected by the temperature detecting means is equal to or lower than the heating start reference temperature, the liquid for heating the liquid by driving the liquid circulation pump without heating the liquid by the heating heat exchanger. A heat source apparatus that performs heating and heating restriction control for performing a circulation operation in a circulation passage. 暖房運転終了準備時刻に液温検出手段により検出される検出液体温度を取り込み、該検出液体温度と、前記暖房運転終了準備時刻から暖房装置の運転終了予定時刻までの時間と、この時間が経過する間に暖房用液体循環通路内の液体から放熱される推定放熱量の情報とに基づき、予め定められる温度推定手法に従って暖房装置の運転終了予定時刻における前記液体の温度を推定する暖房終了時液温推定手段を有し、該暖房終了時液温推定手段により推定される液体の温度が加熱開始基準温度以下の予め定められる暖房終了時許容温度よりも低いときには、暖房加熱制御手段は、暖房運転終了準備時刻以降に暖房加熱制限制御を行う代わりに前記暖房装置の運転終了予定時刻の液体の推定温度が前記暖房終了時許容温度以上となるように予め定められる設定タイミングで暖房用熱交換器による液体の加熱を行うことを特徴とする請求項1または請求項2記載の熱源装置。 The detected liquid temperature detected by the liquid temperature detecting means is captured at the heating operation end preparation time, and the detected liquid temperature, the time from the heating operation end preparation time to the scheduled operation end time of the heating device, and this time elapses. A liquid temperature at the end of heating that estimates the temperature of the liquid at a scheduled operation end time of the heating device according to a predetermined temperature estimation method based on information on an estimated heat release amount radiated from the liquid in the heating liquid circulation passage The heating and heating control means has an end of the heating operation when the temperature of the liquid estimated by the liquid temperature estimating means at the end of heating is lower than a predetermined allowable temperature at the end of heating that is equal to or lower than the heating start reference temperature. Instead of performing the heating / heating restriction control after the preparation time, the estimated temperature of the liquid at the scheduled operation end time of the heating device is determined in advance so as to be equal to or higher than the allowable temperature at the end of heating. Heat source apparatus according to claim 1 or claim 2, wherein the performing heating of the liquid by the heating heat exchanger in setting the timing to be. 暖房運転終了準備時刻よりもさらに手前の終了準備予備時刻に液温検出手段により検出される検出液体温度を取り込み、該検出液体温度と、前記終了準備予備時刻から暖房装置の運転終了予定時刻までの時間と、この時間が経過する間に暖房用液体循環通路内の液体から放熱される推定放熱量の情報とに基づき、予め定められる温度推定手法に従って暖房装置の運転終了予定時刻における前記液体の温度を推定する暖房終了時液温推定手段を有し、該暖房終了時液温推定手段により推定される液体の推定温度が加熱開始基準温度以下の予め定められる暖房終了時許容温度よりも低いときには前記暖房運転終了準備時刻を前記運転終了予定時刻に近い側の時刻に変え、前記推定温度が前記加熱開始基準温度よりも予め定められる余裕設定温度以上に高いときには前記暖房運転終了準備時刻を前記終了準備予備時刻に近い側の時刻に変える暖房運転終了準備時刻可変設定手段を有することを特徴とする請求項1または請求項2記載の熱源装置。 The detected liquid temperature detected by the liquid temperature detection means is captured at a preliminary preparation time before the heating operation completion preparation time, and the detected liquid temperature and from the preliminary preparation time to the scheduled operation completion time of the heating device The temperature of the liquid at the scheduled operation end time of the heating device according to a predetermined temperature estimation method based on the time and information on the estimated amount of heat radiated from the liquid in the heating liquid circulation passage during this time The liquid temperature estimating means at the end of heating is estimated, and when the estimated temperature of the liquid estimated by the liquid temperature estimating means at the time of heating end is lower than a predetermined allowable temperature at the end of heating equal to or lower than the heating start reference temperature The heating operation end preparation time is changed to a time closer to the scheduled operation end time, and the estimated temperature is equal to or higher than a margin set temperature that is determined in advance from the heating start reference temperature. Heat source apparatus according to claim 1 or claim 2, wherein it has a heating operation end preparation time variable setting means for changing the heating operation end preparation time on the side of the time close to the end preparation preliminary time when high. 暖房用液体循環通路内の液体から放熱される推定放熱量の情報は、前回の暖房運転利用時における少なくとも運転終了時近傍の予め定められた設定期間における液温検出手段による検出液体温度の時系列データと、今回の暖房運転利用時における少なくとも暖房終了時液温推定手段による液体温度の推定時近傍でその手前の予め定められた設定期間における液温検出手段による検出液体温度の時系列データの少なくとも一方の時系列データに基づく情報としたことを特徴とする請求項または請求項記載の熱源装置。 The information of the estimated heat release amount radiated from the liquid in the heating liquid circulation passage is the time series of the liquid temperature detected by the liquid temperature detection means at least in the vicinity of the end of the operation when using the previous heating operation. At least the time series data of the liquid temperature detected by the liquid temperature detecting means in the predetermined setting period in the vicinity of the liquid temperature estimating means by the liquid temperature estimating means at the end of heating at least when the heating operation is used this time it was one of the time information based on the sequence data heat source apparatus according to claim 3 or claim 4 wherein.
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