JP2004016034A - Steam heating method - Google Patents

Steam heating method Download PDF

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Publication number
JP2004016034A
JP2004016034A JP2002172416A JP2002172416A JP2004016034A JP 2004016034 A JP2004016034 A JP 2004016034A JP 2002172416 A JP2002172416 A JP 2002172416A JP 2002172416 A JP2002172416 A JP 2002172416A JP 2004016034 A JP2004016034 A JP 2004016034A
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JP
Japan
Prior art keywords
steam
temperature
heating
valve
suction
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2002172416A
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Japanese (ja)
Inventor
Yusuke Shimizu
清水 祐介
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
TLV Co Ltd
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TLV Co Ltd
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Filing date
Publication date
Application filed by TLV Co Ltd filed Critical TLV Co Ltd
Priority to JP2002172416A priority Critical patent/JP2004016034A/en
Publication of JP2004016034A publication Critical patent/JP2004016034A/en
Pending legal-status Critical Current

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  • Food Preservation Except Freezing, Refrigeration, And Drying (AREA)
  • General Preparation And Processing Of Foods (AREA)
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a steam heating method in which steam heating temperature can be lowered in good responsibility. <P>SOLUTION: This steam heating method comprises the following process: joining a steam supply tube 3 to a jacket part 2 of a reactor 1, attaching a steam controlling valve 4 to the steam supply tube 3, joining a suction means 8 to the lower side of the jacket part 2 via a suction tube 5, and attaching a steam trap 7 and an automatic opening/closing valve 6 to the suction tube 5 in parallel. By the steam heating method, the steam heating temperature of the jacket part 2 can be rapidly lowered by reducing the pressure or temperature of the steam supplied to the jacket part 2 from the steam controlling valve 4 and also opening the automatic opening/closing valve 6 for a predetermined period of time. <P>COPYRIGHT: (C)2004,JPO

Description

【0001】
【発明の属する技術分野】
本発明は被加熱物を蒸気で加熱する方法に関し、特にその蒸気温度が100℃前後の比較的低温の場合に適した蒸気加熱方法に関する。具体的には各種の化学反応等に用いられる反応釜や食品の蒸溜装置、濃縮装置、及び、殺菌装置等の加熱方法である。これらの装置の被加熱物は僅かな温度変化によって熱損傷や組成変化を生じてしまう場合が多く、加熱温度を精度良く維持する必要があった。
【0002】
【従来技術】
従来の蒸気加熱方法としては例えば特開平10−2647号公報に示された装置を用いた方法がある。これは、加熱装置へ蒸気を供給する蒸気供給管を接続して、加熱装置内の流体を吸引する組み合わせポンプを接続し、当該組み合わせポンプと加熱装置の間に蒸気トラップと弁手段を並列に取り付けて、加熱温度を変更する場合に、時間遅れを生じることなく、応答性良く加熱することができるものである。
【0003】
【発明が解決しようとする課題】
上記従来の蒸気加熱方法では、加熱温度の変更時に未だ応答性良く変更することができない問題があった。特に、蒸気加熱温度を引き下げる場合に、応答性良く変更することができない問題があった。
【0004】
蒸気加熱温度を引き下げる場合は蒸気供給管から供給する蒸気の温度を低下させるのであるが、引き下げる前に加熱装置へ既に供給された高温蒸気が残っているために、加熱装置内の蒸気温度を時間遅れなく、すなわち、応答性良く引き下げることができないのである。
【0005】
上記従来の加熱装置は組み合わせポンプと接続されて、加熱装置内の流体は組み合わせポンプに吸引されているのであるが、途中に蒸気トラップを介して接続されているために、加熱装置内に残っている高温蒸気を組み合わせポンプが速やかに吸引することができないのである。蒸気トラップの機能は、蒸気を下流側へ通過排出することがなく、蒸気の凝縮した復水だけを通過排出するものであり、蒸気トラップを介して加熱装置内の蒸気を組み合わせポンプで吸引することができないのである。
【0006】
従って本発明の課題は、蒸気加熱温度を引き下げる場合に時間遅れを生じることなく応答性良く引き下げることのできる蒸気加熱方法を得ることである。
【0007】
【課題を解決するための手段】
上記の課題を解決するために講じた手段は、加熱装置へ蒸気を供給する蒸気供給管を接続し、当該蒸気供給管に蒸気制御弁を取り付けて、当該蒸気制御弁の弁開度を制御する制御部を設けると共に、加熱装置と当該装置内の流体を吸引する吸引手段に吸引管を介して接続し、当該吸引管に蒸気トラップと弁手段を並列に取り付けた加熱装置において、蒸気加熱温度を引き下げる場合に、上記弁手段を所定時間開弁するものである。
【0008】
【発明の実施の形態】
蒸気加熱温度を引き下げる場合に弁手段を所定時間開弁することにより、加熱装置と吸引手段が接続されて、加熱装置に残っていた高温蒸気が吸引手段へ速やかに吸引され、蒸気加熱温度を時間遅れなく引き下げることができる。
【0009】
【実施例】
本実施例においては、加熱装置として反応釜1を用いた例を示す。反応釜1の内部に入れた図示しない被加熱物を、ジャケット部2に供給する蒸気によって加熱するものである。
【0010】
反応釜1のほぼ全周にわたりジャケット部2を形成し、     このジャケット部2の上方に蒸気供給管3を、蒸気制御弁4を介して接続する。ジャケット部2の下端部に吸引管5を接続する。吸引管5には、弁手段としての自動開閉弁6と蒸気トラップ7を並列に配置して、吸引手段8の吸引部9と接続する。蒸気トラップ7は、吸引管5を流下してくる復水だけを自動的に下部出口側へ排出し、一方、蒸気は排出することがない自動弁である。
【0011】
吸引手段8は、ノズルを内蔵した吸引部9とディフューザ10から成るエゼクタ11と、タンク12、及び、循環ポンプ13で構成し、循環ポンプ13の駆動によってタンク12内の水などの流体をエゼクタ11へ供給して、吸引部9でジャケット部2内の蒸気の凝縮した復水を吸引するものである。
【0012】
タンク12の上部には循環水補給管14を接続すると共に、吸引手段8の循環路15を分岐して余剰水排出管16を接続する。
【0013】
ジャケット部2に内部の蒸気圧力を検出する圧力センサ17と、温度を検出する温度センサ18を取り付ける。それぞれのセンサ17,18と蒸気制御弁4と自動開閉弁6は、図示しない制御部と電気的に接続する。センサ17,18で検出したジャケット部2内の蒸気圧力値あるいは温度値に基づいて、制御部から蒸気制御弁4と自動開閉弁6へ、開閉制御信号を発信するものである。
【0014】
反応釜1内の図示しない被加熱物を加熱する場合は、蒸気供給管3と蒸気制御弁4から加熱に適した温度あるいは圧力の蒸気をジャケット部2へ供給することによって、蒸気が反応釜1内の被加熱物に熱を与えて加熱する。
【0015】
飽和蒸気の場合、その蒸気圧力と温度は一義的に定まるために、蒸気圧力を制御することによって蒸気温度を間接的に制御することもできる。従って、温度センサ18を使用することなく、圧力センサ17で検出した圧力を基に蒸気加熱温度を制御することもできる。
【0016】
被加熱物を加熱したことにより蒸気が凝縮して発生した復水は、吸引管5から蒸気トラップ7を通って吸引手段8の吸引部9へ吸引されタンク12に至る。
【0017】
加熱する温度は、蒸気制御弁4での弁開度に応じた蒸気圧力すなわち蒸気温度を適宜調節すると共に、吸引手段8の吸引力をエゼクタ11へ流下する流体の温度を適宜調節することによって、例えば20℃程度から100℃を越える温度まで任意に設定することができるものである。
【0018】
ジャケット部2での蒸気加熱温度を引き下げる場合は、図示しない制御部からの信号によって蒸気制御弁4の弁開度を絞ることによって、ジャケット部2へ供給する蒸気温度を低下させると同時に、制御部からの信号によって自動開閉弁6を所定時間だけ開弁することによって、ジャケット部2に残留している高温蒸気は吸引手段8へ速やかに吸引され、時間遅れを生じることなく蒸気加熱温度を引き下げることができる。
【0019】
ジャケット部2内の蒸気圧力又は温度が、制御部からの設定蒸気圧力値又は温度値の基準値を超えた場合にも、同様に制御部からの信号によって自動開閉弁6を所定時間だけ開弁することにより、ジャケット部2内の蒸気の一部が吸引手段8へ吸引されて、蒸気加熱温度を速やかに基準値以下に引き下げることができる。
【0020】
自動開閉弁6を開弁する時間は、ジャケット部2の容積、ジャケット部2内の蒸気圧力又は温度、自動開閉弁6の弁の種類や有効通路断面積、あるいは、吸引手段の吸引力等に基いて適宜設定することができる。
【0021】
【発明の効果】
本発明の蒸気加熱方法では、蒸気加熱温度を引き下げる場合に、加熱装置と吸引手段の間の弁手段を所定時間開弁することによって、加熱装置に残っていた高温蒸気が吸引手段へ速やかに吸引され、蒸気加熱温度を時間遅れなく引き下げることができる。
【図面の簡単な説明】
【図1】本発明の蒸気加熱方法の実施例を示す構成図。
【符号の説明】
1 反応釜
2 ジャケット部
3 蒸気供給管
4 蒸気制御弁
5 吸引管
6 自動開閉弁
7 蒸気トラップ
8 吸引手段
17 圧力センサ
18 温度センサ
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to a method for heating an object to be heated with steam, and more particularly to a steam heating method suitable for a case where the steam temperature is relatively low, around 100 ° C. Specifically, it is a heating method such as a reaction kettle used for various chemical reactions and the like, a food distillation apparatus, a concentration apparatus, and a sterilization apparatus. In many cases, the objects to be heated of these apparatuses cause thermal damage or composition change due to a slight change in temperature, and it is necessary to accurately maintain the heating temperature.
[0002]
[Prior art]
As a conventional steam heating method, for example, there is a method using an apparatus disclosed in JP-A-10-2647. This involves connecting a steam supply pipe that supplies steam to the heating device, connecting a combination pump that sucks fluid in the heating device, and installing a steam trap and valve means in parallel between the combination pump and the heating device. Thus, when the heating temperature is changed, the heating can be performed with good responsiveness without causing a time delay.
[0003]
[Problems to be solved by the invention]
The above-described conventional steam heating method has a problem that it is not possible to change the heating temperature with good responsiveness when the heating temperature is changed. In particular, when the steam heating temperature is lowered, there is a problem that the response cannot be changed with good responsiveness.
[0004]
When lowering the steam heating temperature, the temperature of the steam supplied from the steam supply pipe is reduced.However, since the high-temperature steam already supplied to the heating device remains before the reduction, the steam temperature in the heating device is reduced by a time. It is not possible to reduce it without delay, that is, with good responsiveness.
[0005]
The above-mentioned conventional heating device is connected to the combination pump, and the fluid in the heating device is sucked by the combination pump, but remains in the heating device because it is connected through a steam trap on the way. The high-temperature steam cannot be quickly sucked by the combination pump. The function of the steam trap is to pass and discharge only the condensed steam which is condensed without passing and discharging the steam to the downstream side.The steam in the heating device is sucked by the combined pump through the steam trap. You can't.
[0006]
Therefore, an object of the present invention is to provide a steam heating method capable of reducing the steam heating temperature with good responsiveness without causing a time delay when the steam heating temperature is reduced.
[0007]
[Means for Solving the Problems]
Means taken to solve the above problem is to connect a steam supply pipe for supplying steam to the heating device, attach a steam control valve to the steam supply pipe, and control the valve opening of the steam control valve. A control unit is provided, and the heating device is connected to a suction device for suctioning a fluid in the heating device via a suction pipe, and a steam trap and a valve device are attached to the suction pipe in parallel. In the case of lowering, the valve means is opened for a predetermined time.
[0008]
BEST MODE FOR CARRYING OUT THE INVENTION
By opening the valve means for a predetermined time when the steam heating temperature is lowered, the heating device and the suction device are connected, the high-temperature steam remaining in the heating device is quickly sucked into the suction device, and the steam heating temperature is reduced by the time. Can be reduced without delay.
[0009]
【Example】
In the present embodiment, an example in which the reactor 1 is used as a heating device will be described. The object to be heated (not shown) placed in the reactor 1 is heated by steam supplied to the jacket portion 2.
[0010]
A jacket portion 2 is formed over substantially the entire circumference of the reaction vessel 1, and a steam supply pipe 3 is connected above the jacket portion 2 via a steam control valve 4. The suction pipe 5 is connected to the lower end of the jacket 2. An automatic opening / closing valve 6 as a valve means and a steam trap 7 are arranged in the suction pipe 5 in parallel, and connected to a suction section 9 of a suction means 8. The steam trap 7 is an automatic valve that automatically discharges only the condensed water flowing down the suction pipe 5 to the lower outlet side, but does not discharge steam.
[0011]
The suction means 8 includes an ejector 11 including a suction unit 9 having a built-in nozzle and a diffuser 10, a tank 12, and a circulation pump 13. When the circulation pump 13 is driven, fluid such as water in the tank 12 is ejected by the ejector 11. Then, the condensed condensate of the steam in the jacket portion 2 is suctioned by the suction portion 9.
[0012]
A circulating water supply pipe 14 is connected to the upper part of the tank 12, and a circulation path 15 of the suction means 8 is branched to connect a surplus water discharge pipe 16.
[0013]
A pressure sensor 17 for detecting the internal steam pressure and a temperature sensor 18 for detecting the temperature are attached to the jacket portion 2. Each of the sensors 17, 18, the steam control valve 4, and the automatic on-off valve 6 are electrically connected to a control unit (not shown). The control unit transmits an open / close control signal to the steam control valve 4 and the automatic open / close valve 6 based on the steam pressure value or the temperature value in the jacket portion 2 detected by the sensors 17 and 18.
[0014]
When heating an object to be heated (not shown) in the reaction vessel 1, steam having a temperature or pressure suitable for heating is supplied from the steam supply pipe 3 and the steam control valve 4 to the jacket section 2, so that the steam is supplied to the reaction vessel 1. Heat is given to the object to be heated inside.
[0015]
In the case of saturated steam, since the steam pressure and the temperature are uniquely determined, the steam temperature can be indirectly controlled by controlling the steam pressure. Therefore, the steam heating temperature can be controlled based on the pressure detected by the pressure sensor 17 without using the temperature sensor 18.
[0016]
Condensed water generated by condensing steam by heating the object to be heated is drawn from the suction pipe 5 through the steam trap 7 into the suction section 9 of the suction means 8 and reaches the tank 12.
[0017]
The heating temperature is appropriately adjusted by adjusting the steam pressure, that is, the steam temperature, according to the valve opening degree of the steam control valve 4, and by appropriately adjusting the temperature of the fluid flowing down the suction force of the suction means 8 to the ejector 11. For example, the temperature can be set arbitrarily from about 20 ° C. to over 100 ° C.
[0018]
When the steam heating temperature in the jacket portion 2 is reduced, the temperature of the steam supplied to the jacket portion 2 is reduced by reducing the valve opening of the steam control valve 4 according to a signal from a control portion (not shown). By opening the automatic opening / closing valve 6 for a predetermined time in response to a signal from the controller, the high-temperature steam remaining in the jacket portion 2 is quickly sucked into the suction means 8 and the steam heating temperature can be reduced without time delay. Can be.
[0019]
When the steam pressure or temperature in the jacket portion 2 exceeds the reference value of the set steam pressure value or temperature value from the control portion, the automatic opening / closing valve 6 is similarly opened for a predetermined time by a signal from the control portion. By doing so, a part of the steam in the jacket portion 2 is sucked into the suction means 8, and the steam heating temperature can be promptly reduced to the reference value or less.
[0020]
The time for opening the automatic opening / closing valve 6 depends on the volume of the jacket portion 2, the steam pressure or temperature in the jacket portion 2, the type of the automatic opening / closing valve 6, the effective passage sectional area, or the suction force of the suction means. It can be set as appropriate based on this.
[0021]
【The invention's effect】
In the steam heating method of the present invention, when lowering the steam heating temperature, the valve means between the heating device and the suction means is opened for a predetermined time so that the high-temperature steam remaining in the heating apparatus is quickly sucked into the suction means. Thus, the steam heating temperature can be reduced without time delay.
[Brief description of the drawings]
FIG. 1 is a configuration diagram showing an embodiment of a steam heating method of the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Reactor 2 Jacket part 3 Steam supply pipe 4 Steam control valve 5 Suction pipe 6 Automatic opening / closing valve 7 Steam trap 8 Suction means 17 Pressure sensor 18 Temperature sensor

Claims (2)

加熱装置へ蒸気を供給する蒸気供給管を接続し、当該蒸気供給管に蒸気制御弁を取り付けて、当該蒸気制御弁の弁開度を制御する制御部を設けると共に、加熱装置と当該装置内の流体を吸引する吸引手段に吸引管を介して接続し、当該吸引管に蒸気トラップと弁手段を並列に取り付けた加熱装置において、蒸気加熱温度を引き下げる場合に、上記弁手段を所定時間開弁することを特徴とする蒸気加熱方法。A steam supply pipe for supplying steam to the heating device is connected, a steam control valve is attached to the steam supply pipe, and a control unit for controlling the valve opening of the steam control valve is provided, and the heating device and the inside of the device are provided. In a heating device connected to a suction means for sucking a fluid through a suction pipe, and a steam trap and a valve means attached to the suction pipe in parallel, when the steam heating temperature is lowered, the valve means is opened for a predetermined time. A steam heating method, characterized in that: 請求項1において、加熱装置内の蒸気圧力又は蒸気温度が基準値を超えた場合に弁手段を所定時間開弁することを特徴とする蒸気加熱方法。2. The steam heating method according to claim 1, wherein the valve is opened for a predetermined time when the steam pressure or the steam temperature in the heating device exceeds a reference value.
JP2002172416A 2002-06-13 2002-06-13 Steam heating method Pending JP2004016034A (en)

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Application Number Priority Date Filing Date Title
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Publications (1)

Publication Number Publication Date
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Country Link
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011191007A (en) * 2010-03-15 2011-09-29 Tlv Co Ltd Heat exchanger
JP2019095134A (en) * 2017-11-24 2019-06-20 株式会社テイエルブイ Heat exchange system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011191007A (en) * 2010-03-15 2011-09-29 Tlv Co Ltd Heat exchanger
JP2019095134A (en) * 2017-11-24 2019-06-20 株式会社テイエルブイ Heat exchange system

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