JP2019101948A - Conduction heating detection system and detection method - Google Patents

Conduction heating detection system and detection method Download PDF

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JP2019101948A
JP2019101948A JP2017234827A JP2017234827A JP2019101948A JP 2019101948 A JP2019101948 A JP 2019101948A JP 2017234827 A JP2017234827 A JP 2017234827A JP 2017234827 A JP2017234827 A JP 2017234827A JP 2019101948 A JP2019101948 A JP 2019101948A
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temperature
measurement point
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憲市 本田
Kenichi Honda
憲市 本田
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Tateyama Kagaku Kogyo Co Ltd
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Abstract

To provide a detection system and method of conduction heating capable of detecting ignition in a simple and reliable manner due to conduction heating of a wood structure behind a wall of a kitchen and capable of reliably preventing a fire.SOLUTION: A detection system comprises: a reference point 32 relatively far from a heating cooker 12, on a wall near the heating cooker 12; and an infrared radiation temperature sensor 24 that measures a temperature of a measurement point 30 closer to the heating cooker 12 than the reference point 32. A detection system comprises: a control unit 26 that compares temperatures of the reference point 32 and the measurement point 30; and a notification unit 28 operated by an abnormality notification signal output from the control unit 26. When it is determined that a change with a passage of time of a temperature difference between the reference point 32 and the measurement point 30 after cooking is normal according to a predetermined reference, the abnormality notification signal is not output from the control unit 26. When it is determined that a change with a passage of time of a temperature difference between the reference point 32 and the measurement point 30 is abnormal according to the predetermined reference, the abnormality notification signal is output from the control unit 26 and the notification unit 28 operates in response to the abnormality notification signal.SELECTED DRAWING: Figure 1

Description

この発明は、木造家屋の厨房に設けられる伝導加熱の検知システム及び検知方法に関する。   The present invention relates to a system and method for detecting conduction heating provided in a kitchen of a wooden house.

従来、厨房に設けられたレンジフードに、炎感知器や温度センサを設け、レンジフードの下方に位置する加熱調理器が出火したことや、異常に高温になったことを検出し、大きな火災になることを事前に防止するものがある。例えば、特許文献1の防火連動方法は、電磁誘導加熱器上方に位置するレンジフードに、電磁誘導加熱器とその近傍を火災検出範囲とした火災検出ユニットと制御ユニットが取り付けられている。火災検出ユニットは、信号線を介して制御ユニットに火災信号を送信すると、制御ユニットは火災信号を時間で蓄積する蓄積部を作動させ、蓄積時間が一定時間、例えば10秒に達した場合は、制御ユニットが信号線を介して出力信号を送信し、火災報知ユニットの音響装置を鳴動させ、また各安全装置を作動させて作動させて通電を停止する。これにより火災の拡大を防ぐものである。   In the past, a flame hood and a temperature sensor were installed on the range hood provided in the kitchen, and it was detected that the heating cooker located below the range hood had a fire, and that the temperature was abnormally high. There is something to prevent in advance. For example, in the fire interlocking method of Patent Document 1, a fire detection unit and a control unit are attached to a range hood located above the electromagnetic induction heater, the electromagnetic induction heater and the vicinity thereof being a fire detection range. When the fire detection unit transmits a fire signal to the control unit via the signal line, the control unit operates the storage unit that stores the fire signal in time, and when the storage time reaches a predetermined time, for example, 10 seconds, The control unit transmits an output signal through the signal line to sound the sound device of the fire alarm unit, and operates and activates each safety device to stop the energization. This will prevent the spread of fires.

また、特許文献2の加熱調理器は、電磁誘導加熱器の上方に設置した換気扇フードに、この電磁誘導加熱器の温度を検出する温度検出素子を設け、この温度検出素子の検出による異常温度検出に基づき、電磁誘導加熱器の通電を遮断する。これにより火災等の異常事態になることを事前に防止するものである。   Moreover, the heating cooker of patent document 2 provides the temperature detection element which detects the temperature of this electromagnetic induction heater in the ventilation fan hood installed above the electromagnetic induction heater, The abnormal temperature detection by detection of this temperature detection element Shut off the power supply to the electromagnetic induction heater. This prevents the occurrence of an abnormal situation such as a fire in advance.

特開2005−300114号公報JP 2005-300114 A 特開2012−178300号公報JP 2012-178300 A

上記背景技術の場合、いずれも加熱調理器の異常温度や炎を検出するものであり、加熱調理器の周辺の、壁の異常温度を検出するものではない。近年、伝導加熱が原因と思われる火災の発生件数が増加している。これらの火災は、木造家屋で、加熱調理器の近傍の壁の室内側面を防火性の高いステンレス板で覆っている厨房から発生しており、ステンレス板が高温となると、ステンレス板の裏側の木造構造が長期の伝導加熱で炭化し、調理時や調理後の余熱等で自然発火に至るものである。   In the case of the above-mentioned background art, all detect the abnormal temperature and flame of a cooking-by-heating machine, and do not detect the abnormal temperature of the wall around a cooking-by-heating machine. In recent years, the number of fires that may be caused by conduction heating has increased. These fires originate from the kitchen that covers the indoor side of the wall near the heating cooker with a highly fireproof stainless steel plate in a wooden house, and when the stainless steel plate becomes hot, the wooden plate on the back side of the stainless steel plate The structure is carbonized by long-term conductive heating, and leads to spontaneous ignition due to residual heat during cooking or after cooking.

従って、壁の室内側面はステンレス板で覆われていて、火災の初期では燃えないため、炎や煙を感知する通常の火災検出方法では検知が遅れ、大きな火災となる。また、このような伝導加熱による火災は、加熱調理が終わった後で作業者が不在の時間に発生することがあり、例えば作業者が厨房を離れてから50分後に発生した例もあり、この点からも消火が遅れ被害が大きいものとなる。古い木造家屋には、加熱調理器の鍋が壁のステンレス板から数センチしか離れていない厨房も多く、伝導加熱による火災が発生する可能性が高い。そこで、ステンレス板の裏側の木造構造の発火を早く検知する方法が求められている。   Therefore, since the indoor side of the wall is covered with a stainless steel plate and does not burn at the beginning of a fire, detection is delayed in a conventional fire detection method for sensing flames and smoke, resulting in a large fire. In addition, a fire caused by such conductive heating may occur at a time when the worker is absent after cooking is completed, for example, it may occur 50 minutes after the worker leaves the kitchen. From the point of view, the fire extinguishing is delayed and the damage will be large. In old wooden houses, there are many kitchens where the cooker pot is only a few centimeters away from the stainless steel plate of the wall, and there is a high possibility of a fire caused by conduction heating. Therefore, there is a need for a method of quickly detecting the fire of the wooden structure on the back side of the stainless steel plate.

この発明は、上記背景技術の問題点に鑑みてなされたものであり、簡単で確実に、厨房の壁の裏側にある木材構造物の伝導加熱による発火を検知することができる伝導加熱の検知システム及び検知方法を提供することを目的とする。   The present invention has been made in view of the above-mentioned problems of the background art, and a detection system for conduction heating capable of detecting ignition due to conduction heating of a wood structure on the back side of a kitchen wall in a simple and reliable manner. And providing a detection method.

本発明は、加熱処理を行う熱源の近傍の室内側面の測定点の温度を測定する温度センサと、前記測定点の温度に基づいて所定の処理を行う制御部と、前記制御部が出力する異常報知信号により作動する報知ユニットが設けられ、前記制御部は、前記熱源による加熱処理作業後の前記測定点の温度の時間経過に伴う変化が、所定の基準により正常であると判断された場合は、前記制御部から異常報知信号を出力せず、前記測定点の温度の時間経過に伴う変化が前記所定の基準より異常である判断された場合は、前記制御部から異常報知信号を出力し、前記異常報知信号により、前記報知ユニットが作動する伝導加熱の検知システムである。   The present invention relates to a temperature sensor that measures the temperature of a measurement point on a side surface of a room near a heat source that performs heat treatment, a control unit that performs a predetermined process based on the temperature of the measurement point, and an abnormality that the control unit outputs. There is provided a notification unit operated by a notification signal, and the control unit determines that the change with the passage of time of the temperature of the measurement point after the heating process by the heat source is normal according to a predetermined standard. And outputting the abnormality notification signal from the control unit when the control unit does not output the abnormality notification signal and it is determined that the change with the passage of time of the temperature of the measurement point is abnormal according to the predetermined reference, It is a detection system of the conduction heating which the above-mentioned notice unit operates by the above-mentioned unusual notice signal.

また本発明は、加熱処理を行う熱源の近傍の室内側面の前記熱源から比較的遠い基準点の温度と、前記基準点より前記熱源に近い測定点の温度とを測定する温度センサと、前記基準点と前記測定点の温度を比較する制御部と、前記制御部が出力する異常報知信号により作動する報知ユニットが設けられ、前記制御部は、前記熱源による加熱処理作業後の前記基準点と前記測定点の温度の差が所定の時間経過により所定値より小さい場合は、前記制御部から異常報知信号を出力せず、前記基準点と前記測定点の温度の差が、所定の時間経過により所定値より小さくならず、同じ又は大きい場合は、前記制御部から異常報知信号を出力し、前記異常報知信号により、前記報知ユニットが作動する伝導加熱の検知システムである。   Further, according to the present invention, there is provided a temperature sensor for measuring the temperature of a reference point relatively distant from the heat source on the side of the room near the heat source to be heat-treated and the temperature of the measurement point closer to the heat source than the reference point A control unit that compares the temperature of the point and the measurement point, and a notification unit that operates according to an abnormality notification signal output by the control unit, the control If the difference in temperature at the measurement point is smaller than the predetermined value after a predetermined time, the controller does not output an abnormality notification signal, and the difference between the temperature of the reference point and the temperature at the measurement point is predetermined after the predetermined time The detection system according to the present invention is a conductive heating detection system in which an abnormality notification signal is output from the control unit and the notification unit is operated based on the abnormality notification signal when the values are not smaller than the same value or larger.

または、前記制御部は、前記熱源による加熱処理作業後の前記基準点と前記測定点の温度の差の時間経過に伴う変化が、所定の基準により正常であると判断された場合は、前記制御部から異常報知信号を出力せず、前記基準点と前記測定点の温度の差の時間経過に伴う変化が、前記所定の基準により異常であると判断された場合は、前記制御部から異常報知信号を出力し、前記異常報知信号により、前記報知ユニットが作動するものでも良い。   Alternatively, when it is determined that the change with the passage of time of the difference between the temperature of the reference point and the measurement point after the heat treatment operation by the heat source is normal according to a predetermined reference, the control unit performs the control When it is determined that the change over time of the difference between the temperature of the reference point and the measurement point is abnormal according to the predetermined reference, the control unit does not output an abnormality notification signal from the control unit. A signal may be output, and the notification unit may be operated by the abnormality notification signal.

また本発明は、加熱処理を行う熱源の近傍の室内側面の測定点あるいは測定エリアの温度を測定する第1の温度センサと、前記測定点あるいは前記測定エリアを含むより広い範囲である基準エリアの平均温度を測定する第2の温度センサと、前記第1の温度センサで得られた前記測定点あるいは測定エリアの温度と前記第2の温度センサで得られた前記平均温度とを比較する制御部と、前記制御部が出力する異常報知信号により作動する報知ユニットが設けられ、前記制御部は、前記熱源による加熱処理作業後の前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準により正常であると判断された場合は、前記制御部から異常報知信号を出力せず、前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準により異常であると判断された場合は、前記制御部から異常報知信号を出力し、前記異常報知信号により、前記報知ユニットが作動する伝導加熱の検知システムである。   Further, according to the present invention, there is provided a first temperature sensor for measuring the temperature of a measurement point or measurement area on a side surface in the vicinity of a heat source to be heat treated, and a reference area of a wider range including the measurement point or measurement area. A control unit that compares a second temperature sensor that measures an average temperature, the temperature of the measurement point or measurement area obtained by the first temperature sensor, and the average temperature obtained by the second temperature sensor And a notification unit operated by an abnormality notification signal output from the control unit, the control unit being configured to calculate an average temperature of the reference area after a heating process by the heat source and a temperature of the measurement point or measurement area. When it is determined that the change with the passage of time of the difference is normal according to a predetermined reference, the control unit does not output an abnormality notification signal, and the average temperature of the reference area and the measurement of the reference area When it is determined that the change with the passage of time of the difference with the temperature of the point or the measurement area is abnormal according to a predetermined reference, an abnormality notification signal is output from the control unit, and the notification is output by the abnormality notification signal. It is a conductive heating detection system in which the unit operates.

前記熱源は加熱調理器であり、前記室内側面は厨房の壁であり、前記温度センサは、加熱調理器の上方に位置するレンジフードに設けられている。また、前記温度センサは、赤外線放射温度センサであり、前記測定点は一個又は複数個設けられているものである。   The heat source is a heating cooker, the indoor side surface is a wall of a kitchen, and the temperature sensor is provided on a range hood located above the heating cooker. The temperature sensor is an infrared radiation temperature sensor, and one or more measurement points are provided.

また本発明は、加熱処理を行う熱源の近傍の室内側面の測定点の温度を測定し、前記熱源による加熱処理作業後の前記測定点の温度の時間経過に伴う変化が、所定の基準により正常である場合は異常なしと判断し、前記測定点の温度の時間経過に伴う変化が、所定の基準から外れる場合は異常ありと判断し、異常温度検知警報を発報する伝導加熱の検知方法である。   The present invention measures the temperature at a measurement point on the side of the room near the heat source to be subjected to the heat treatment, and the change over time of the temperature at the measurement point after the heat treatment by the heat source is normal according to a predetermined standard. If it is, it is judged that there is no abnormality, and if the change with the passage of time of the temperature at the measurement point deviates from a predetermined reference, it is judged that there is an abnormality and a detection method of conduction heating which issues an abnormal temperature detection alarm is there.

また本発明は、加熱処理を行う熱源の近傍の室内側面の、前記熱源から比較的遠い基準点と、前記基準点より前記熱源に近い測定点の温度を測定し、前記熱源による加熱処理作業後の前記基準点と前記測定点の温度差の時間経過に伴う変化が、所定の基準により正常である場合は異常なしと判断し、前記基準点と前記測定点の温度の差の時間経過に伴う変化が、所定の基準から外れる場合は異常ありと判断し、異常温度検知警報を発報する伝導加熱の検知方法である。   Further, according to the present invention, the temperature of a reference point relatively distant from the heat source and a measurement point closer to the heat source than the reference point is measured on the side of the room near the heat source to be heat treated. The change over time of the temperature difference between the reference point and the measurement point is determined to be normal if it is normal according to a predetermined standard, and the change over time of the difference between the temperature of the reference point and the measurement point is When the change deviates from a predetermined reference, it is determined that there is an abnormality, and this is a method of detecting conduction heating which issues an abnormal temperature detection alarm.

また本発明は、加熱処理を行う熱源の近傍の室内側面の測定点あるいは測定エリアの温度を測定するとともに、前記測定点あるいは前記測定エリアを含むより広い範囲である基準エリアの平均温度を測定し、前記熱源による加熱処理作業後の前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準により正常である場合は、異常なしと判断し、前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準から外れる場合は異常ありと判断し、異常温度検知警報を発報する伝導加熱の検知方法である。   Further, the present invention measures the temperature of the measurement point or measurement area on the indoor side near the heat source to be heat-treated, and measures the average temperature of the reference area which is a wider range including the measurement point or measurement area. If the change with the passage of time of the difference between the average temperature of the reference area and the temperature of the measurement point or measurement area after the heat treatment work with the heat source is normal according to a predetermined standard, it is determined that there is no abnormality Conducting heating which issues an abnormal temperature detection alarm by judging that there is an abnormality if the change with the lapse of time of the difference between the average temperature of the reference area and the temperature of the measurement point or measurement area deviates from a predetermined standard. Detection method.

本発明の伝導加熱の検知システム及びその検知方法は、簡単で確実に、厨房の壁の裏側にある木材構造物の伝導加熱による発火を検知することができる。さらに、測定点の経時変化により温度を検知するので、構造物内部の過熱をいち早く検知することができる。また、加熱調理器の近傍の壁の、加熱調理器から遠い基準点と、加熱調理器に近い測定点の、温度差により発火を検知する場合、相対的な値に基づいて判断するものであり、放射率補正等が不要であり、簡単で正確な判断が可能である。   The conductive heating detection system and detection method of the present invention can detect the ignition by conductive heating of the wood structure behind the wall of the kitchen simply and reliably. Furthermore, since the temperature is detected by the change with time of the measurement point, the overheating inside the structure can be detected promptly. In addition, when the ignition is detected by the temperature difference between the reference point far from the heating cooker and the measurement point near the heating cooker on the wall near the heating cooker, the judgment is made based on relative values. , Emissivity correction etc. is unnecessary, and simple and accurate judgment is possible.

この発明の一実施形態の伝導加熱の検知システムの概略図である。FIG. 1 is a schematic view of a conductive heating detection system according to an embodiment of the present invention. この実施形態の伝導加熱の検知システムの加熱調理時を示す概略図である。It is the schematic which shows the time of heat cooking of the detection system of the conduction heating of this embodiment. この実施形態の伝導加熱の検知方法を示すフローチャートである。It is a flowchart which shows the detection method of the conduction heating of this embodiment. この発明の他の実施形態の伝導加熱の検知方法の加熱調理器の近傍の壁の検知範囲を示す概略図である。It is the schematic which shows the detection range of the wall near the heating cooker of the detection method of the conduction heating of other embodiment of this invention.

以下、この発明の実施形態について図面に基づいて説明する。図1、図2はこの発明の一実施形態を示すもので、この実施形態の伝導加熱の検知システム10は、木造家屋の厨房11に設けられている。ここで、厨房11の構造について説明する。厨房11の壁16は、壁板や柱等の木材構造物18で形成され、室内側の面には、紙や合成樹脂製の壁材で覆われている。加熱加工処理を行う熱源は、電気やガスによる加熱調理器12であり、加熱調理器12は、壁16に接して設けられ、壁16の、加熱調理器12の加熱部分12aの近傍には、防火のためにステンレス板20が貼り付けられている。壁16の、加熱調理器12の上方には、レンジフード22が設けられている。   Hereinafter, embodiments of the present invention will be described based on the drawings. 1 and 2 show an embodiment of the present invention, and the detection system 10 for conduction heating of this embodiment is provided in a kitchen 11 of a wooden house. Here, the structure of the kitchen 11 will be described. The wall 16 of the kitchen 11 is formed of a wood structure 18 such as a wall plate or a column, and the surface on the indoor side is covered with a wall material made of paper or synthetic resin. The heat source for performing the heating process is a heating cooker 12 using electricity or gas, and the cooker 12 is provided in contact with the wall 16 and in the vicinity of the heating portion 12 a of the cooker 12 on the wall 16 A stainless steel plate 20 is attached for fire protection. A range hood 22 is provided on the wall 16 above the heating cooker 12.

伝導加熱の検知システム10は、壁16の室内側面であるステンレス板20の温度を測定する赤外線放射温度センサ24と、赤外線放射温度センサ24に接続された制御部26と、制御部26が出力する異常報知信号により作動する報知ユニット28が設けられている。赤外線放射温度センサ24は、ステンレス板20から放射された赤外線36を利用して温度を測定するものであり、ステンレス板20の室内側面の、加熱部分12aの近傍の、複数の測定点30の温度を測定する。   The detection system 10 of conduction heating outputs an infrared radiation temperature sensor 24 for measuring the temperature of the stainless steel plate 20 which is the indoor side surface of the wall 16, a control unit 26 connected to the infrared radiation temperature sensor 24, and a control unit 26 A notification unit 28 is provided which operates in response to the abnormality notification signal. The infrared radiation temperature sensor 24 measures the temperature using the infrared radiation 36 emitted from the stainless steel plate 20, and the temperatures of the plurality of measurement points 30 in the indoor side surface of the stainless steel plate 20 near the heating portion 12a. Measure

測定点30は、ここでは6箇所が設けられ、垂直方向に3箇所が等間隔に1列に並び、水平方向に2列が平行に離間して位置している。また、測定点30の他に1箇所の基準点32の温度を、測定点30と同じ条件で測定する。基準点32は、測定点30と同じくステンレス板20の室内側面にあり、各測定点30よりも加熱部分12aから遠い位置にある。図1において、測定点30及び基準点32は、丸印を付して表示してあるが、丸印は必要なく、赤外線放射温度センサ24が検知する位置が所定箇所に設定されれば良い。   Here, six measurement points 30 are provided, and the three measurement points 30 are arranged in one line at equal intervals in the vertical direction, and two lines are spaced apart in parallel in the horizontal direction. Further, the temperature of one reference point 32 other than the measurement point 30 is measured under the same conditions as the measurement point 30. The reference point 32 is on the same side as the measurement point 30 on the indoor side of the stainless steel plate 20 and is farther from the heating portion 12 a than each measurement point 30. In FIG. 1, the measurement point 30 and the reference point 32 are displayed with circles, but the circles are not necessary, and the position detected by the infrared radiation temperature sensor 24 may be set to a predetermined location.

複数の測定点30の測定方法は、例えば複数の検知素子を並べ、検知素子毎の検知範囲が互いに異なる測定点30となるように設定し、各測定点30に対応した各検知素子から検知信号をそれぞれ出力するように構成したものや、あるいは、モータ等を用いて検知素子を制御して検知素子による検知範囲を随時変更する等の手段によって、1個の検知素子から検知領域内の複数の測定点30の検知信号を各測定点30毎に出力可能とし、各測定点30毎の検知信号をそれぞれ出力するように構成したものを使用する。   The measurement method of the plurality of measurement points 30 is, for example, arranging a plurality of detection elements, setting the detection ranges for the detection elements to be different measurement points 30, and detecting signals from the respective detection elements corresponding to each measurement point 30 By changing the detection range by the detection element at any time by controlling the detection element using a motor or the like, or by changing the detection range by the detection element as needed. A detection signal of the measurement point 30 can be output for each measurement point 30, and a detection signal for each measurement point 30 is output.

制御部26では、赤外線放射温度センサ24からの出力信号に基づいて、基準点32と各測定点30の温度の差を求める。基準点32と各測定点30の温度の差に異常がある場合は、報知ユニット28に異常報知信号を出力し、作動させる。報知ユニット28は、異常報知信号により、音響装置の鳴動、火災灯の点灯、モバイル端末等外部への通信等を行う。   The control unit 26 obtains the difference between the temperature of the reference point 32 and the temperature of each measurement point 30 based on the output signal from the infrared radiation temperature sensor 24. If the difference between the temperature of the reference point 32 and the temperature of each measurement point 30 is abnormal, an abnormality notification signal is output to the notification unit 28 and activated. The notification unit 28 performs ringing of the sound device, lighting of a fire light, communication to the outside such as a mobile terminal, and the like according to the abnormality notification signal.

伝導加熱の検知システム10の赤外線放射温度センサ24は、レンジフード22の下端面の、調理の作業の邪魔にならず、煙や油はね等の汚れが付かない場所に取り付ける。制御部26と報知ユニット28は、赤外線放射温度センサ24と信号線で接続して任意の場所に取り付ける。   The infrared radiation temperature sensor 24 of the conduction heating detection system 10 is attached to the lower end face of the range hood 22 in a place that does not interfere with the cooking operation and is not contaminated with smoke or oil splash. The control unit 26 and the notification unit 28 are connected to the infrared radiation temperature sensor 24 by a signal line and attached to an arbitrary place.

図2は、厨房11で加熱調理をしている状態を示している。加熱調理器12の加熱部分12aに鍋34を載せ、加熱調理すると、ステンレス板20に熱が伝わり、さらにステンレス板20の裏側の木材構造物18に熱14が伝わる。各測定点30は、加熱調理中に温度が上昇し、基準点32との温度差が大きくなる。なお、調理中は、伝導加熱の検知システム10を作動させず、温度の測定は行わない。加熱調理終了後に鍋34を加熱調理器12から下ろし、火の後始末後から伝導加熱の検知システム10を開始する。作業者が厨房11から離れ、厨房11が無人になっても、壁16の温度を測定し、木材構造物18の発火の有無を検知する。   FIG. 2 shows a state in which cooking is performed in the kitchen 11. When the pan 34 is placed on the heating portion 12 a of the heating cooker 12 and cooking is performed, the heat is transmitted to the stainless steel plate 20 and the heat 14 is further transmitted to the wood structure 18 on the back side of the stainless steel plate 20. At each measurement point 30, the temperature rises during cooking and the temperature difference with the reference point 32 becomes large. In addition, the detection system 10 of conduction heating is not operated during cooking, and measurement of temperature is not performed. After completion of the heating and cooking, the pan 34 is lowered from the heating cooker 12 and the detection system 10 of the conductive heating is started after the end of the fire. Even if the worker leaves the kitchen 11 and the kitchen 11 becomes unmanned, the temperature of the wall 16 is measured to detect the presence or absence of ignition of the wood structure 18.

基準点32は、加熱調理器12から離れているため加熱調理器12の熱14の影響が少なく温度が低く室温に近い。測定点30は、加熱調理器12に近く加熱調理器12により熱14が伝わるため温度が高い。調理直後は基準点32と測定点30の温度差は最大であり、時間の経過とともに測定点30の温度が下がり、温度差が減少し、やがて同じになる。   Since the reference point 32 is apart from the heating cooker 12, the influence of the heat 14 of the heating cooker 12 is small and the temperature is low and close to room temperature. The measurement point 30 has a high temperature because the heat 14 is transmitted by the heating cooker 12 close to the heating cooker 12. Immediately after cooking, the temperature difference between the reference point 32 and the measurement point 30 is maximum, and the temperature of the measurement point 30 decreases with the passage of time, and the temperature difference decreases and eventually becomes the same.

次に、図3に基づいて、この実施形態の伝導加熱の検知方法について説明する。伝導加熱の検知システム10を開始すると、赤外線放射温度センサ24が、基準点32と各測定点30の温度を測定する(s1)。次に、基準点32と各測定点30の温度の差を求める(s2)。所定の時間差で2回測定し、1回目の温度差よりも2回目の温度差が減少している場合は、ステンレス板20の裏側に位置する木材構造物18が順調に冷めていると判定し、火災の発生の可能性が無いと判定し、異常温度検知警報を発令しない。そして、所定時間後に再び基準点32と測定点30の温度を測定し、温度差を求める。前記の2回目の温度差つまり前回の温度差よりも、3回目の温度差つまり今回の温度差が減少している場合は、火災の発生の可能性が無いと判定し、異常温度検知警報を発令しない。これを所定回数、所定時間、または所定温度差に達するまで繰り返す(s3)。   Next, based on FIG. 3, the detection method of the conduction heating of this embodiment is demonstrated. When the conduction heating detection system 10 is started, the infrared radiation temperature sensor 24 measures the temperatures of the reference point 32 and each measurement point 30 (s1). Next, the difference between the temperature of the reference point 32 and the temperature of each measurement point 30 is determined (s2). The measurement is made twice with a predetermined time difference, and if the second temperature difference is smaller than the first temperature difference, it is judged that the wood structure 18 located on the back side of the stainless steel plate 20 is cooling properly. , Do not issue abnormal temperature detection alarm, judging that there is no possibility of fire occurrence. Then, after a predetermined time, the temperatures of the reference point 32 and the measurement point 30 are measured again to obtain a temperature difference. If the third temperature difference, that is, the current temperature difference is smaller than the second temperature difference, that is, the previous temperature difference, it is determined that there is no possibility of a fire, and an abnormal temperature detection alarm is issued. I do not order. This is repeated a predetermined number of times, a predetermined time, or until a predetermined temperature difference is reached (S3).

基準点32と測定点30の、1回目の温度差と2回目の温度差が、同じか増加している場合は、木材構造物18が冷めておらず、木材構造物18内で熱が発生していることを示し、発火する可能性があると判定し、異常温度検知警報を発報し、報知ユニット28を作動させる(s4)。そして、作業者や警備員等による異常温度検知警報の発報確認と、異常温度検知に対する解決処理がなされる。その後、リセット操作によって発報がリセットされ、異常温度検知を終了する。なお、異常温度検知警報を発令する温度差や経過時間等の条件は、適宜自由に設定する。   If the first temperature difference and the second temperature difference between the reference point 32 and the measurement point 30 are the same or increase, the wood structure 18 does not cool and heat is generated in the wood structure 18 Indicating that there is a possibility of ignition, and an abnormal temperature detection alarm is issued to operate the notification unit 28 (s4). Then, a notification confirmation of an abnormal temperature detection alarm by a worker or a guard or the like and a solution process for the abnormal temperature detection are performed. Thereafter, the alarm is reset by the reset operation, and the abnormal temperature detection is ended. In addition, conditions, such as a temperature difference and elapsed time which issue an abnormal temperature detection alarm, are freely set suitably.

この実施形態の伝導加熱の検知システムと検知方法によれば、簡単で確実に、厨房11の壁16の裏側にある木材構造物18の伝導加熱による発火を検知することができる。加熱調理器12の近傍の壁16の、加熱調理器12から遠く加熱調理器12の熱14の影響が少ない基準点32と、加熱調理器12に近く加熱調理器12から熱14が伝わる測定点30の、温度差の経時変化により発火を検知するものであり、相対的な値に基づいており、非接触温度センサや放射温度センサに必要とされる放射率補正は不要であり、簡単で正確である。また、設置制限がない。壁16の裏側の木材構造物18は見ることができず、また壁16の室内側面はステンレス板20で覆われていて火災の初期では燃えないため、木材構造物18の発火を目視によって早期発見することはできないが、伝導加熱の検知システム10により木材構造物18の発火を検知することができる。壁16の室内側面まで燃えて視認されたり、炎や煙が火災報知に感知されたりするような大きな火災になる前に初期の消火作業を開始することができ、早く消火することができる。   According to the conductive heating detection system and detection method of this embodiment, ignition due to conductive heating of the wood structure 18 on the back side of the wall 16 of the kitchen 11 can be detected easily and reliably. A reference point 32 on the wall 16 near the heating cooker 12 which is far from the heating cooker 12 and less affected by the heat 14 of the heating cooker 12 and a measuring point near the heating cooker 12 to which the heat 14 is transmitted from the heating cooker 12 It detects ignition based on changes in temperature with time, is based on relative values, and does not require the emissivity correction required for non-contact temperature sensors and radiation temperature sensors, and is simple and accurate. It is. In addition, there is no installation restriction. Since the wood structure 18 on the back side of the wall 16 can not be seen, and the indoor side of the wall 16 is covered with the stainless steel plate 20 and does not burn in the early stage of the fire, early detection of ignition of the wood structure 18 by visual observation Although not possible, the detection system 10 of conductive heating can detect ignition of the wood structure 18. The initial fire extinguishing operation can be started before a large fire such as the indoor side of the wall 16 is recognized as burning or fire or smoke is detected in the fire notification, and the fire can be extinguished quickly.

また、測定点30は6箇所設けられているため、正確に判定することができる。調理が終了し無人となった厨房11を安価なコストで監視することができる。伝導加熱の検知システム10の赤外線放射温度センサ24は、レンジフード22に取り付けられているため、調理の作業の邪魔にならない。伝導加熱の検知システム10は取り付けが簡単で、レンジフード22に後付けで設置することができ、手軽に使用することができる。   Moreover, since six measurement points 30 are provided, it can be determined accurately. It is possible to monitor the kitchen 11 which has finished cooking and has become unmanned at low cost. The infrared radiation temperature sensor 24 of the conduction heating detection system 10 is attached to the range hood 22 and does not interfere with the cooking operation. The conductive heating detection system 10 is easy to install, can be retrofitted to the range hood 22, and can be used easily.

なお、本発明の伝導加熱の検知システム及びその検知方法は上記実施の形態に限定されるものではない。例えば、図4に示すように、加熱処理を行う熱源の近傍の室内側面である壁16の測定点38あるいは測定エリア39の温度を測定する第1の温度センサ42と、測定点38あるいは測定エリア39を含むより広い範囲である基準エリア40の平均温度を測定する第2の温度センサ43とを備えているものでも良い。そして、第1の温度センサで得られた測定点38あるいは測定エリア39の温度と、第2の温度センサで得られた基準エリア40の平均温度とを比較する制御部を備え、制御部が出力する異常報知信号により作動する報知ユニットを設け、熱源による加熱処理作業後の基準エリア40の平均温度と測定点38あるいは測定エリア39の温度との差が時間経過とともに小さくなる場合は、制御部から異常報知信号を出力せず、基準エリアの平均温度と前記測定点あるいは測定エリア38の温度との差が、時間経過とともに予め設定した値より小さくならず、同じ又は大きくなる場合は、制御部から異常報知信号を出力するものでも良い。また、第1の温度センサ42と第2の温度センサ43は、一又は複数の温度センサの検知範囲を切り替えて、交互に測定点38あるいは測定エリア39と、基準エリア40の温度を測定するものでも良い。この検知システム及び検知方法によっても、正確な測定が可能である。   In addition, the detection system of the conduction heating of this invention and its detection method are not limited to the said embodiment. For example, as shown in FIG. 4, a first temperature sensor 42 for measuring the temperature of the measurement point 38 or the measurement area 39 of the wall 16 which is an indoor side surface near the heat source to be heat-treated, and the measurement point 38 or the measurement area A second temperature sensor 43 may be provided to measure the average temperature of the reference area 40 which is a wider range including 39. The control unit is provided with a control unit that compares the temperature of the measurement point 38 or the measurement area 39 obtained by the first temperature sensor with the average temperature of the reference area 40 obtained by the second temperature sensor. If the difference between the average temperature of the reference area 40 and the temperature of the measurement point 38 or the measurement area 39 after heating processing by the heat source decreases with time, a control unit is provided. If the difference between the average temperature of the reference area and the temperature of the measurement point or the measurement area 38 does not become smaller than the preset value as time passes and becomes equal to or larger than the preset value without outputting an abnormality notification signal It may be one that outputs an abnormality notification signal. Also, the first temperature sensor 42 and the second temperature sensor 43 switch the detection range of one or more temperature sensors, and measure the temperatures of the measurement point 38 or the measurement area 39 and the reference area 40 alternately. But it is good. The measurement system and the detection method also allow accurate measurement.

この他、基準点と各測定点の温度のサンプリングの仕方や外来熱ノイズによって、測定点と基準点との温度差が変動する場合がある。そこで、基準点と各測定点のサンプリングの中での平均値、最小値、最大値のいずれかで、温度変化の傾向を判断する方法や、温度変化の傾向を推定する統計的手法を用いても良い。   In addition to this, the temperature difference between the measurement point and the reference point may fluctuate depending on the sampling method of the temperature of the reference point and each measurement point or the external thermal noise. Therefore, using the method of judging the tendency of temperature change by the average value, the minimum value or the maximum value in the sampling of the reference point and each measurement point, or the statistical method of estimating the tendency of temperature change Also good.

また、測定点の温度を温度センサにより測定し、測定点の温度変化を観測して、熱源による加熱処理作業後の測定点の温度が、時間経過とともに小さくなる場合は、制御部から異常報知信号を出力せず、測定点の温度が、時間経過とともに予め設定した値より小さくならず、同じ又は大きくなる場合は、制御部から異常報知信号を出力し報知ユニットを作動させるようにしても良い。これにより、シンプルな検知システムを構成することができる。   In addition, if the temperature of the measurement point is measured by the temperature sensor, the temperature change of the measurement point is observed, and the temperature of the measurement point after the heat treatment by the heat source decreases with time, the anomaly notification signal from the control unit If the temperature of the measurement point does not become smaller than the preset value with the passage of time, and becomes equal or larger, the control unit may output an abnormality notification signal to operate the notification unit. This makes it possible to configure a simple detection system.

この発明の所定の基準による判断方法としては、今回の加熱作業の前である前回までの加熱処理作業後の時間経過に伴う温度変化と、今回の加熱作業後の温度変化の傾向を比較して、その温度変化が所定の範囲内であるか否かを判断するものでも良い。例えば、一定時間経過でも、測定点の温度がある温度以下にならない、或いは基準点との温度差が縮まらない場合は、異常と判断するものである。その他、時間経過に伴い変化する測定点の温度が、予め設定した値(閾値)以下にならない、或いは温度差が縮まらないと判断した場合は異常としても良い。あるいは、時間経過とともに変化すべき温度が、同じ状態で一定期間続く場合や、温度の値が大きくなっていると判断した場合に異常とするものでも良い。   As a determination method according to the predetermined criteria of the present invention, the tendency of the temperature change after the current heating operation and the temperature change after the current heating operation are compared with the time change after the previous heating operation before the current heating operation. It may be determined whether the temperature change is within a predetermined range. For example, if the temperature of the measurement point does not fall below a certain temperature or the temperature difference with the reference point does not decrease even after a certain time has elapsed, it is determined that the abnormality is present. In addition, if it is determined that the temperature of the measurement point, which changes with the passage of time, does not fall below a preset value (threshold) or the temperature difference does not shrink, it may be considered as abnormal. Alternatively, it may be abnormal if the temperature to be changed with the passage of time continues for a fixed period in the same state or if it is determined that the value of the temperature is large.

その他、温度センサは、赤外線放射温度センサ以外でも良い。温度センサを取り付ける位置は、レンジフード以外でも良く、天井や棚等、ステンレス板の温度を正確に測定することが可能であればどこに取り付けてもよい。伝導加熱の検知システムを取り付ける部屋は、厨房以外でも良く、また加熱調理器の近傍の壁以外の場所に測定点と基準点を設け壁以外の発火を検知するものでもよい。報知ユニットの機能は、音響装置の鳴動、火災灯の点灯、外部への通信等以外でも良い。   Besides, the temperature sensor may be other than the infrared radiation temperature sensor. The position where the temperature sensor is attached may be other than the range hood, and may be attached anywhere as long as it is possible to accurately measure the temperature of the stainless steel plate, such as a ceiling or a shelf. The room to which the detection system for conduction heating is attached may be other than the kitchen, or a measurement point and a reference point may be provided at a place other than the wall near the heating cooker to detect an ignition other than the wall. The function of the notification unit may be other than ringing of a sound device, lighting of a fire light, communication to the outside, and the like.

10 伝導加熱の検知システム
11 厨房
12 加熱調理器
16 壁
18 木材構造物
20 ステンレス板
22 レンジフード
24 赤外線放射温度センサ
26 制御部
28 報知ユニット
30 測定点
32 基準点
10 Conduction heating detection system 11 kitchen 12 heating cooker 16 wall 18 wood structure 20 stainless steel plate 22 range hood 24 infrared radiation temperature sensor 26 control unit 28 notification unit 30 measurement point 32 reference point

Claims (9)

加熱処理を行う熱源の近傍の室内側面の測定点の温度を測定する温度センサと、前記測定点の温度に基づいて所定の処理を行う制御部と、前記制御部が出力する異常報知信号により作動する報知ユニットが設けられ、
前記制御部は、前記熱源による加熱処理作業後の前記測定点の温度の時間経過に伴う変化が、所定の基準により正常であると判断された場合は、前記制御部から異常報知信号を出力せず、前記測定点の温度の時間経過に伴う変化が前記所定の基準より異常である判断された場合は、前記制御部から異常報知信号を出力し、
前記異常報知信号により、前記報知ユニットが作動することを特徴とする伝導加熱の検知システム。
Operated by a temperature sensor that measures the temperature at a measurement point on the side of the room near the heat source that performs heat treatment, a control unit that performs a predetermined process based on the temperature at the measurement point, and an abnormality notification signal output by the control unit A notification unit is provided.
The control unit is configured to output an abnormality notification signal from the control unit when it is determined that the change with the passage of time of the temperature of the measurement point after the heat treatment work by the heat source is normal according to a predetermined standard. No, when it is determined that the change with the passage of time of the temperature of the measurement point is abnormal than the predetermined reference, an abnormality notification signal is output from the control unit,
The detection system for conduction heating, wherein the notification unit is operated by the abnormality notification signal.
加熱処理を行う熱源の近傍の室内側面の前記熱源から比較的遠い基準点の温度と、前記基準点より前記熱源に近い測定点の温度とを測定する温度センサと、前記基準点と前記測定点の温度を比較する制御部と、前記制御部が出力する異常報知信号により作動する報知ユニットが設けられ、
前記制御部は、前記熱源による加熱処理作業後の前記基準点と前記測定点の温度の差が所定の時間経過により所定値より小さい場合は、前記制御部から異常報知信号を出力せず、前記基準点と前記測定点の温度の差が、所定の時間経過により所定値より小さくならず、同じ又は大きい場合は、前記制御部から異常報知信号を出力し、
前記異常報知信号により、前記報知ユニットが作動することを特徴とする伝導加熱の検知システム。
A temperature sensor for measuring the temperature of a reference point relatively far from the heat source on the side surface in the room near the heat source to be heat-treated and the temperature of the measurement point closer to the heat source than the reference point A control unit that compares the temperatures of the control unit and a notification unit that is operated by an abnormality notification signal output from the control unit,
The control unit does not output an abnormality notification signal from the control unit when the difference between the temperature of the reference point and the measurement point after the heating process by the heat source is smaller than a predetermined value after a predetermined time has elapsed. When the difference between the temperature of the reference point and the temperature of the measurement point does not become smaller than a predetermined value after a predetermined time elapses, and outputs the abnormality notification signal from the control unit,
The detection system for conduction heating, wherein the notification unit is operated by the abnormality notification signal.
加熱処理を行う熱源の近傍の室内側面の前記熱源から比較的遠い基準点の温度と、前記基準点より前記熱源に近い測定点の温度とを測定する温度センサと、前記基準点と前記測定点の温度を比較する制御部と、前記制御部が出力する異常報知信号により作動する報知ユニットが設けられ、
前記制御部は、前記熱源による加熱処理作業後の前記基準点と前記測定点の温度の差の時間経過に伴う変化が、所定の基準により正常であると判断された場合は、前記制御部から異常報知信号を出力せず、前記基準点と前記測定点の温度の差の時間経過に伴う変化が、前記所定の基準により異常であると判断された場合は、前記制御部から異常報知信号を出力し、
前記異常報知信号により、前記報知ユニットが作動することを特徴とする伝導加熱の検知システム。
A temperature sensor for measuring the temperature of a reference point relatively far from the heat source on the side surface in the room near the heat source to be heat-treated and the temperature of the measurement point closer to the heat source than the reference point A control unit that compares the temperatures of the control unit and a notification unit that is operated by an abnormality notification signal output from the control unit,
When it is determined that the change with the passage of time of the difference between the temperature of the reference point and the measurement point after the heat treatment work by the heat source is normal according to a predetermined reference, the control unit is When it is determined that the change over time of the difference between the temperature of the reference point and the measurement point does not output an abnormality notification signal, the control unit determines the abnormality notification signal. Output
The detection system for conduction heating, wherein the notification unit is operated by the abnormality notification signal.
加熱処理を行う熱源の近傍の室内側面の測定点あるいは測定エリアの温度を測定する第1の温度センサと、前記測定点あるいは前記測定エリアを含むより広い範囲である基準エリアの平均温度を測定する第2の温度センサと、前記第1の温度センサで得られた前記測定点あるいは測定エリアの温度と前記第2の温度センサで得られた前記平均温度とを比較する制御部と、前記制御部が出力する異常報知信号により作動する報知ユニットが設けられ、
前記制御部は、前記熱源による加熱処理作業後の前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準により正常であると判断された場合は、前記制御部から異常報知信号を出力せず、前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準により異常であると判断された場合は、前記制御部から異常報知信号を出力し、
前記異常報知信号により、前記報知ユニットが作動することを特徴とする伝導加熱の検知システム。
A first temperature sensor for measuring the temperature of a measurement point or measurement area on the side of the room near the heat source to be heat-treated, and the average temperature of the reference area which is a wider range including the measurement point or the measurement area A control unit that compares a second temperature sensor, the temperature of the measurement point or measurement area obtained by the first temperature sensor, and the average temperature obtained by the second temperature sensor; A notification unit operated by the abnormality notification signal output by the
The control unit is determined that the change with the passage of time of the difference between the average temperature of the reference area and the temperature of the measurement point or the measurement area after the heat treatment work by the heat source is normal according to a predetermined standard In this case, it is determined that the change over time of the difference between the average temperature of the reference area and the temperature of the measurement point or the measurement area is abnormal according to a predetermined standard without outputting an abnormality notification signal from the control unit. When it is turned on, the control unit outputs an abnormality notification signal,
The detection system for conduction heating, wherein the notification unit is operated by the abnormality notification signal.
前記熱源は加熱調理器であり、前記室内側面は厨房の壁であり、前記温度センサは、加熱調理器の上方に位置するレンジフードに設けられている請求項1乃至4のいずれか記載の伝導加熱の検知システム。   The conduction according to any one of claims 1 to 4, wherein the heat source is a heating cooker, the indoor side surface is a wall of a kitchen, and the temperature sensor is provided on a range hood located above the heating cooker. Heating detection system. 前記温度センサは、赤外線放射温度センサであり、前記測定点は一個又は複数個設けられている請求項1乃至5のいずれか記載の伝導加熱の検知システム。   The conductive heating detection system according to any one of claims 1 to 5, wherein the temperature sensor is an infrared radiation temperature sensor, and one or more measurement points are provided. 加熱処理を行う熱源の近傍の室内側面の測定点の温度を測定し、前記熱源による加熱処理作業後の前記測定点の温度の時間経過に伴う変化が、所定の基準により正常である場合は異常なしと判断し、前記測定点の温度の時間経過に伴う変化が、所定の基準から外れる場合は異常ありと判断し、異常温度検知警報を発報することを特徴とする伝導加熱の検知方法。   The temperature of the measurement point of the indoor side near the heat source to be heat-treated is measured, and the change over time of the temperature of the measurement point after the heat treatment operation by the heat source is abnormal if it is normal according to a predetermined standard A method for detecting conduction heating, characterized by determining that there is no, and when a change with the passage of time of the temperature of the measurement point deviates from a predetermined reference, determines that there is an abnormality and issues an abnormal temperature detection alarm. 加熱処理を行う熱源の近傍の室内側面の、前記熱源から比較的遠い基準点と、前記基準点より前記熱源に近い測定点の温度を測定し、前記熱源による加熱処理作業後の前記基準点と前記測定点の温度差の時間経過に伴う変化が、所定の基準により正常である場合は異常なしと判断し、前記基準点と前記測定点の温度の差の時間経過に伴う変化が、所定の基準から外れる場合は異常ありと判断し、異常温度検知警報を発報することを特徴とする伝導加熱の検知方法。   The temperature of the reference point relatively distant from the heat source and the measurement point closer to the heat source than the reference point is measured on the side surface of the room near the heat source to be heat-treated, and the reference point after the heat treatment operation by the heat source If the change over time of the temperature difference at the measurement point is normal according to a predetermined criterion, it is judged that there is no abnormality, and the change over time of the difference between the temperature of the reference point and the measurement point is a predetermined When it deviates from a reference | standard, it judges that it is abnormal and issues an abnormal temperature detection alarm, The detection method of the conduction heating characterized by the above-mentioned. 加熱処理を行う熱源の近傍の室内側面の測定点あるいは測定エリアの温度を測定するとともに、前記測定点あるいは前記測定エリアを含むより広い範囲である基準エリアの平均温度を測定し、前記熱源による加熱処理作業後の前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準により正常である場合は、異常なしと判断し、前記基準エリアの平均温度と前記測定点あるいは測定エリアの温度との差の時間経過に伴う変化が、所定の基準から外れる場合は異常ありと判断し、異常温度検知警報を発報することを特徴とする伝導加熱の検知方法。   While measuring the temperature of the measurement point or measurement area of the indoor side near the heat source to be heat-treated, the average temperature of the reference area which is a wider range including the measurement point or the measurement area is measured, and heating by the heat source If the change with the passage of time of the difference between the average temperature of the reference area after the processing operation and the temperature of the measurement point or measurement area is normal according to a predetermined standard, it is determined that there is no abnormality; Conduction heating characterized in that if the change with the passage of time of the difference between the average temperature and the temperature of the measurement point or measurement area deviates from a predetermined reference, it is judged as abnormal and an abnormal temperature detection alarm is issued. Detection method.
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