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JPS61114047A - Hot-water supply device - Google Patents

Hot-water supply device

Info

Publication number
JPS61114047A
JPS61114047A JP59235768A JP23576884A JPS61114047A JP S61114047 A JPS61114047 A JP S61114047A JP 59235768 A JP59235768 A JP 59235768A JP 23576884 A JP23576884 A JP 23576884A JP S61114047 A JPS61114047 A JP S61114047A
Authority
JP
Japan
Prior art keywords
water
valve
hot
hot water
water supply
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.)
Granted
Application number
JP59235768A
Other languages
Japanese (ja)
Other versions
JPH0328664B2 (en
Inventor
Osamu Tsutsui
修 筒井
Hisashi Nakamura
久志 中村
Atsuo Makita
牧田 厚雄
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.)
Toto Ltd
Original Assignee
Toto Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Toto Ltd filed Critical Toto Ltd
Priority to JP59235768A priority Critical patent/JPS61114047A/en
Publication of JPS61114047A publication Critical patent/JPS61114047A/en
Publication of JPH0328664B2 publication Critical patent/JPH0328664B2/ja
Granted legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D17/00Domestic hot-water supply systems
    • F24D17/0078Recirculation systems
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H15/00Control of fluid heaters
    • F24H15/20Control of fluid heaters characterised by control inputs
    • F24H15/212Temperature of the water
    • F24H15/215Temperature of the water before heating
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H15/00Control of fluid heaters
    • F24H15/20Control of fluid heaters characterised by control inputs
    • F24H15/212Temperature of the water
    • F24H15/219Temperature of the water after heating
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H15/00Control of fluid heaters
    • F24H15/20Control of fluid heaters characterised by control inputs
    • F24H15/238Flow rate
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H15/00Control of fluid heaters
    • F24H15/30Control of fluid heaters characterised by control outputs; characterised by the components to be controlled
    • F24H15/305Control of valves
    • F24H15/31Control of valves of valves having only one inlet port and one outlet port, e.g. flow rate regulating valves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H9/00Details
    • F24H9/20Arrangement or mounting of control or safety devices
    • F24H9/2007Arrangement or mounting of control or safety devices for water heaters
    • F24H9/2035Arrangement or mounting of control or safety devices for water heaters using fluid fuel

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Fluid Mechanics (AREA)
  • Instantaneous Water Boilers, Portable Hot-Water Supply Apparatuses, And Control Of Portable Hot-Water Supply Apparatuses (AREA)

Abstract

PURPOSE:To prevent rapid emission of large amount of hot-water to the tap by a method wherein a water quantity valve is maintained under throttled condition in case that a cock is closed at the throttled condition of the water quantity valve of a tap-controled hot-water heater, and the tap is opened after the designated time. CONSTITUTION:A controller 15 is arranged in the base frame of a hot-water heater A or in a control box 16, the controller 15 controls the intermittent burning of a burner 6. When the calculated and required amount of heat exceeds the capability of the hot-water heater A, a water quantity valve 10 is throttled, the flow rate is decreased within the capability. When a valve B is stopped under the above condition, the water quantity valve 10 is made full opening condition after designated time (3min). Simultaneously, a pump 7 is restarted, the hot-water is maintained at designated temperature with circulating and flowing, prepares the next opening of the valve B. At the opening of the valve B, the water quantity valve 10 is still under throttled condition, accordingly, the large amount of hot-water supplying can be prevented.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明はガス瞬間湯沸器と水栓の組合せからなる給湯装
置に関する。
DETAILED DESCRIPTION OF THE INVENTION (Field of Industrial Application) The present invention relates to a water heating device comprising a combination of a gas instantaneous water heater and a faucet.

本明細書中で水栓とは単水栓に限らずサーモスタット式
、ミキシングバルブ式、2バルブ式等の湯水混合栓も含
む。
In this specification, the faucet is not limited to a single faucet, but also includes a thermostatic type, a mixing valve type, a two-valve type, and other hot and cold water mixing faucets.

(従来の技術) 従来、給湯装置、特にガス瞬間湯沸器と水栓の組合せか
らなる給II装置として種々の構造があり、−例として
ガス瞬間湯沸器をガス量によりI!温をIII御するよ
うな構造となすと共に給湯管路に演算により要求される
必要熱量が湯沸器の能力を越えるときに自動的に水量を
絞る水量バルブを設けたものがある。
(Prior Art) Conventionally, there have been various structures for hot water supply devices, especially water supply II devices consisting of a combination of a gas instantaneous water heater and a faucet. Some water heaters have a structure that controls the temperature and are equipped with a water flow valve in the hot water supply pipe that automatically reduces the water flow when the required amount of heat calculated by calculation exceeds the capacity of the water heater.

水栓は水量バルブが絞られ湯の供給量が絞られれば、吐
出温度を設定温度に保つために湯側に応じて当然水側も
絞られ、開閉弁の閉止直後にはその状態が補正されない
When the water flow valve of a faucet is throttled and the amount of hot water supplied is throttled, the water side is naturally throttled according to the hot water side in order to maintain the discharge temperature at the set temperature, and this condition is not corrected immediately after the on-off valve is closed. .

従って、水栓の開閉弁閉止後、直ちに水量バルブを開く
ようにした場合、水栓の使用を一旦停止した後、間を置
かずに再び使用すると、水側が絞られた状態で急激に多
量の熱湯が水栓に供給されることになり、水栓からは設
定温度に対して非常に高温の湯が吐出されるので非常に
危険である。
Therefore, if you open the water flow valve immediately after closing the on-off valve of a faucet, if you stop using the faucet and then use it again immediately, the water side will be throttled and the amount of water will suddenly increase. Hot water will be supplied to the faucet, which is very dangerous as the water will be discharged from the faucet at a much higher temperature than the set temperature.

(発明が解決しようとする問題点) 本発明が解決しようとする問題点は、水量バルブが絞ら
れた状態で給湯が停止された場合、停止後所定時間内は
水栓に多山の湯を供給しないようにすることである。
(Problem to be Solved by the Invention) The problem to be solved by the present invention is that when hot water supply is stopped with the water flow valve being throttled, a large amount of hot water is supplied to the faucet within a predetermined period of time after the water supply is stopped. The aim is to avoid supplying such substances.

(問題点を解決するための手段) 上記問題を解決するために本発明が講する技術的手段は
、給湯装置を給水管路に設けた流量センサー、入水温セ
ンサー、及び給湯管路に設けた出湯温センサーの検出信
号に基づき必要熱量を演算してバーナーの燃焼を自助的
に制御すると共に、給湯管路には演算された必要熱】が
給IImの能力を越えるときは流量を絞るバルブを設け
たガス瞬間湯沸器と、該湯沸器から所定温度の湯を供給
して設定吐出温度の温湯を吐出□ する水栓とで構成し、上記水」バルブを絞られた状態で
給湯が停止されたとき、給温停止後所定時間経過すると
自動的に全開の状態に戻るようにするものである。
(Means for Solving the Problems) The technical means taken by the present invention to solve the above-mentioned problems are as follows. The required amount of heat is calculated based on the detection signal of the outlet hot water temperature sensor, and the combustion of the burner is controlled automatically, and a valve is installed in the hot water supply pipe that reduces the flow rate when the calculated required heat exceeds the capacity of the supply IIm. It consists of a gas instantaneous water heater installed and a faucet that supplies hot water at a predetermined temperature from the water heater and discharges hot water at a set discharge temperature. When it is stopped, it automatically returns to the fully open state after a predetermined period of time has elapsed after the heating stop.

(作用) 而して、水量バルブが絞られた状態で水栓の#4閉弁を
一旦閉止した後、所定時間例えば3分間以内に再び開閉
弁を開けて再使用しても水量バルブは未だ絞られたまま
の状態を保っているので、水栓に急激に多量の熱湯が流
れることがない。
(Function) Therefore, even if you once close the #4 closing valve of the faucet with the water volume valve throttled, and then open the valve again within a predetermined period of time, for example 3 minutes, and use it again, the water volume valve will still be closed. Since it remains closed, a large amount of hot water will not suddenly flow into the faucet.

また上記所定時間の間には水栓から熱交換器に至る給湯
管路の濶温か放熱により冷却し、水量バルブが全開に戻
っても水栓の使用によって熱湯が吐出されず火傷を負う
ことはない。
In addition, during the above-mentioned predetermined time, the water supply pipe from the faucet to the heat exchanger is cooled by heat radiation, and even if the water flow valve returns to full open, hot water will not be discharged when the faucet is used, and you will not get burned. do not have.

(実施例) 以下、本発明の一実施例を第1図に基づいて説明する。(Example) An embodiment of the present invention will be described below with reference to FIG.

給湯装置はガス瞬間湯沸器(A)と、サーモスタットミ
キシングバルブ(B)とで構成され、    、。
The water heating system consists of a gas instantaneous water heater (A) and a thermostatic mixing valve (B).

サーモスタットミキシングバルブ(B)は感温体として
ワックスベレットを用いた従来周知の構造形態を有して
いる。
The thermostatic mixing valve (B) has a conventionally well-known structure using a wax pellet as a temperature sensor.

湯沸器(A)は、ガス配管(11)を介して供給される
ガスがバーナー(6)で燃焼し、給水管路(1)を介し
て供給される水が熱交換器(9)で加熱され、給湯管路
(4)を経てサーモスタットミキシングバルブ(B)へ
流れるようになっている。
In the water heater (A), gas supplied through a gas pipe (11) is burned in a burner (6), and water supplied through a water supply pipe (1) is burned in a heat exchanger (9). The hot water is heated and flows through the hot water supply pipe (4) to the thermostatic mixing valve (B).

また、この湯沸器(A)はサーモスタットミキシングバ
ルブ(B)のできるだけ近くにおいて給湯管路(4)か
ら戻り管路(8)を分岐して該戻り管路(8)を給水管
路(1)中途部に接続すると共に戻り管路(8)には流
量が2J/分程度の小能力のポンプ(7)を設け、サー
モスタットミキシングバルブ(B)から出湯していない
ときに配管内の水を給水管路・(1)、熱交換器(9)
、給湯管路(4)、戻り管路(8)により構成される環
状の管路を介して循環させるようになっている。
In addition, this water heater (A) branches a return pipe (8) from the hot water supply pipe (4) as close as possible to the thermostatic mixing valve (B), and connects the return pipe (8) to the water supply pipe (1). ) A pump (7) with a small capacity with a flow rate of about 2 J/min is installed in the return pipe (8) to drain water in the pipe when hot water is not coming out from the thermostatic mixing valve (B). Water supply pipe (1), heat exchanger (9)
, a hot water supply pipe (4), and a return pipe (8).

そして、上記ガス配管(11)には上流側より順次元電
磁弁(12) 、電磁弁(13) 、ガバナー(14)
が、給水管路(1)には上流側から順次水量センサー(
2)及び入水温センサー(3)が、給湯管路(4)には
出湯温センサー(5)及び水量バルブ(10)が夫々設
けられる。
In the gas pipe (11), from the upstream side, there is a sequential solenoid valve (12), a solenoid valve (13), and a governor (14).
However, in the water supply pipe (1), water flow sensors (
2) and an incoming water temperature sensor (3), and the hot water supply pipe (4) is provided with an outlet hot water temperature sensor (5) and a water flow valve (10), respectively.

上記水量センサー(2)は給水管路(1)の戻り管路(
8)接続部より下流側に配置され、水量バルブ(10)
は出湯温センサー(5)より下流側に配置される。
The water flow sensor (2) is connected to the return pipe (1) of the water supply pipe (1).
8) A water flow valve (10) located downstream from the connection part.
is arranged downstream of the outlet hot water temperature sensor (5).

また、元電磁弁(12) 、電磁弁(13)、水量セン
サー(2)、入水温センサー(3)、出湯温センサー(
5)、水量バルブ(10)及びポンプ(7)は夫々コン
トローラー(15)に電気的に連絡する。
In addition, the original solenoid valve (12), solenoid valve (13), water flow sensor (2), inlet water temperature sensor (3), outlet water temperature sensor (
5), the water flow valve (10) and the pump (7) are each electrically connected to the controller (15).

コントローラー(15)は湯沸器(A)の機台内又はコ
ントロールボックス(16)内に配備され、コントロー
ルボックス(16)の運転スイッチ(17)のrONJ
作動により、ポンプ(7)の運転を開始し、同時に元電
磁弁(12)を開弁すると共に水屋センサー(2)が検
出した流量、入水温センサー(3)が検出した入水温度
、コントロールボックス(16)の温度設定部(18)
で設定した設定温度、出湯温センサー(5)が検出した
出湯温度、熱交換器(9)の熱効率、比例ゲイン等の所
定の要素に基づいて必要熱量を演算し、この演算された
必要熱量に応じた間隔及び時間で電磁弁(13)を開閉
するように構成する。
The controller (15) is installed inside the water heater (A) or inside the control box (16), and is connected to the rONJ of the operation switch (17) of the control box (16).
Upon activation, the pump (7) starts operating, and at the same time opens the main solenoid valve (12), and also displays the flow rate detected by the water sensor (2), the inlet water temperature detected by the inlet water temperature sensor (3), and the control box. (16) Temperature setting part (18)
The required amount of heat is calculated based on predetermined factors such as the set temperature set in , the hot water temperature detected by the hot water temperature sensor (5), the thermal efficiency of the heat exchanger (9), and the proportional gain. The solenoid valve (13) is configured to open and close at appropriate intervals and times.

またコントローラー(15)はサーモスタットミキシン
グバルブ(B)の使用によりポンプ(7)の運転を停止
すると共にサーモスタットミキシングバルブ(B)の使
用停止により、使用停止から所定時間、例えば3分経過
するとポンプ(7)の運転を再開し、更に上記演算され
た必要熱量が湯沸器(A)の能力を越えるときには水量
バルブ(10)を絞り、この水量パルプ(10)を絞っ
た状態でサーモスタットミキシングバルブ(B)の使用
が停止されたときにはポンプ(7)の再運転同様所定時
間(3分)経過すると水量パルプ(10〉を全開状態に
戻すように構成される。
Further, the controller (15) stops the operation of the pump (7) by using the thermostatic mixing valve (B), and also stops the operation of the pump (7) when a predetermined period of time, for example, 3 minutes has elapsed since the stop of use of the thermostatic mixing valve (B). ), and when the above-calculated required heat amount exceeds the capacity of the water heater (A), the water volume valve (10) is throttled, and with this water volume pulp (10) throttled, the thermostatic mixing valve (B) is restarted. ) is configured to return the water volume pulp (10> to the fully open state after a predetermined period of time (3 minutes) has elapsed, similar to when the pump (7) is restarted).

上記、サーモスタットミキシングバルブ(B)の使用は
、演算された必要熱量が循環流動する’IM(水)を設
定温度に沸し上げ、かつ設定温度に保温維持するために
必要と予想される最大熱量に若干の余裕をもたせた適当
な値、例えば150Kcal/分を越えることにより、
またサーモスタットミキシングバルブ(B)の使用停止
は水量センサー(2)による流量の検出がなくなること
により判断される。
The use of the above thermostatic mixing valve (B) is based on the calculated required amount of heat, which is the maximum amount of heat expected to be required to boil the circulating and flowing 'IM (water) to the set temperature and maintain the temperature at the set temperature. By setting an appropriate value with some margin, for example, exceeding 150Kcal/min,
Further, the suspension of use of the thermostatic mixing valve (B) is determined by the fact that the water flow rate sensor (2) no longer detects the flow rate.

尚、図示してはいないがバーナー(6,)の近傍には上
記電磁弁(13)の開弁に同期して放電するイグナイタ
ー、または、運転スイッチ(17)の「ON」作動によ
り着火し、rOFFJ作動により消火する種火用のパイ
ロットバーナーが設けられるのは勿論である。
Although not shown, there is an igniter near the burner (6) that discharges electricity in synchronization with the opening of the electromagnetic valve (13), or ignites when the operation switch (17) is turned ON. Of course, a pilot burner is provided for a pilot flame that is extinguished by rOFFJ operation.

而して、サーモスタットミキシングバルブ(B)の開閉
弁が閉止されている状態で、コントロールボックス(1
6)の運転スイッチ(17)       t。
Therefore, with the on-off valve of the thermostatic mixing valve (B) closed, the control box (1
6) Operation switch (17) t.

を「ON」にすると、元電磁弁(12)が開くと共にポ
ンプ(7)が回転を開始して配管中の水を給水管路(1
)から熱交換器(9)、給湯管路(4)、戻り管路(8
)を経て水量センサー(2)の手前で給水管路(1)に
戻るように循環流動させ、同時にコントローラー(15
)がこの循環水を設定温度に沸かし上げるのに必要な熱
量を演算して、演算された必要熱量に応じた間隔、時間
で電磁弁(13)を開閉させる。
When turned ON, the main solenoid valve (12) opens and the pump (7) starts rotating to pump water into the water supply pipe (1).
) to the heat exchanger (9), the hot water supply pipe (4), and the return pipe (8
) to return to the water supply pipe (1) before the water flow sensor (2), and at the same time the controller (15
) calculates the amount of heat required to boil this circulating water to a set temperature, and opens and closes the solenoid valve (13) at intervals and times according to the calculated required amount of heat.

従ってバーナー(6)は演算された必要熱量に応じた間
隔、時間で間歇的に燃焼して、上記循環している水を加
熱する。
Therefore, the burner (6) burns intermittently at intervals and times according to the calculated required amount of heat to heat the circulating water.

こめ際、バーナー(6)の間歇燃焼がコントローラー(
15)により火の看いている時間と火の消えている時間
の比を上記演算に基づいて制御されるので、循環流動す
る水は設定温度まで沸き上げられ、かつ設定温度に保温
維持される。
At the time of cooking, the intermittent combustion of the burner (6) is controlled by the controller (
15), the ratio of the time the fire is on and the time the fire is extinguished is controlled based on the above calculation, so the circulating water is boiled up to the set temperature and maintained at the set temperature.

次に、サーモスタットミキシングバルブ(B)を開けば
、先ず配管中の既に設定温度まで沸き上げられている湯
がサーモスタットミキシングバルブ(B)に供給され、
続いて給水管路(1)から新たに供給された水が設定温
度に加熱されて供給される。
Next, when the thermostatic mixing valve (B) is opened, the hot water in the piping that has already been boiled to the set temperature is supplied to the thermostatic mixing valve (B).
Subsequently, water newly supplied from the water supply pipe (1) is heated to the set temperature and then supplied.

この際、ポンプ(7)は運転を停止し、また万一演算さ
れた必要熱量が湯沸器(A>の能力を越えると水量パル
プ(10)が絞られ、流量を落として能力範囲内に収め
る。
At this time, the pump (7) stops operating, and if the calculated required heat exceeds the capacity of the water heater (A>), the water pulp (10) is throttled to reduce the flow rate and bring it within the capacity range. Contain.

そして、この水量パルプ(10)が絞られた状態でサー
モスタットミキシングバルブ(B)の使用が停止される
と、停止から所定時間(3分)経過後水量バルブ(10
)は全開状態に戻り、同時にポンプ(7)は運転を再開
する。
When the use of the thermostatic mixing valve (B) is stopped with the water volume pulp (10) being squeezed, the water volume valve (10) is stopped after a predetermined time (3 minutes) has passed since the stop.
) returns to the fully open state, and at the same time the pump (7) resumes operation.

従って、配管中の湯は再び循環流動しつつ設定温度に維
持され、サーモスタットミキシングバルブ(B)の次の
使用を持つ。
Therefore, the hot water in the pipe is again circulated and maintained at the set temperature, with the next use of the thermostatic mixing valve (B).

尚、上記説明においで湯沸器は、バーナーを間歇燃焼さ
せ、その燃焼時間と消火時間の比によって11を制御す
る方式のものについて述べたが、本発明は湯沸器をガス
量により湯温を制御する方式のもの、あるいは上記両方
式を組合せたものとすることも可能である。
In the above description, the water heater was described as one in which the burner is fired intermittently and the temperature is controlled by the ratio of the combustion time to the extinguishing time. It is also possible to use a system that controls the above, or a combination of both of the above methods.

次に他の実施例を第2図及び第3図に示す。Next, other embodiments are shown in FIGS. 2 and 3.

第2図は、ガス瞬間湯沸器として、第1図のガス瞬ll
1m沸器の戻り管路とポンプをなくしたもので、湯を循
環させない点を除いて同じであり、水栓としては2バル
ブ式の混合栓を用いている。
Figure 2 shows the gas instant water heater shown in Figure 1.
It is the same as the 1m boiler without the return pipe and pump, except that hot water is not circulated, and a two-valve mixer faucet is used as the faucet.

第3図は、水栓として単水栓を用いたもので他の点は第
2図のものと同じである。
In FIG. 3, a single faucet is used as the faucet, and other points are the same as those in FIG. 2.

(効果) 本発明は上記の構成であるから以下の利点を有する。(effect) Since the present invention has the above configuration, it has the following advantages.

(1) 水層バルブが絞られた状態で水栓の使用を停止
した場合、上記水量パルプは 所定時間の間は絞られた状態に保たれ ているので、その間に水栓が再使用さ れても急激に長歯の熱湯が流れること はなく、水栓から熱い濃が吐出して火 傷を負う等の危険がない。
(1) If you stop using the faucet while the water layer valve is constricted, the water pulp will remain constricted for a predetermined period of time, so the faucet will not be reused during that time. However, there is no sudden flow of boiling water, and there is no danger of getting burnt from hot water spewing out from the faucet.

1           また所定時間経過後−は水量
パルプは全開の状態に戻るが、その間に各種水 栓から熱交換器に至る給湯管路の湯温 が放熱により冷却し、水栓が再使用さ れても熱い湯が出るようなことはなく、設定された所定
のS温が吐出される。
1 After a predetermined period of time has passed, the water flow pulp returns to its fully open state, but during that time the water temperature in the hot water supply pipes from the various faucets to the heat exchanger cools down due to heat radiation, and even if the faucet is reused, it will remain hot. Hot water does not come out, and the predetermined S temperature is discharged.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図はサーモスタットミキシングパルプを使用した給
温装置の模式図である。第2図は2パルプミキシング式
給湯装置の模式図である。 第3図は単水栓(湯のみ)を使用した給Il装置の模式
図である。 A・・・ガス瞬間湯沸器 8・・・水栓 1・・・給水管路 2・・・流量センサー 3・・・入水温センサー 4・・・給湯管路 5・・・出湯温センサー 6・・・バーナー 9°°°WA“1,1 10・・・水量バルブ
FIG. 1 is a schematic diagram of a heating device using thermostatic mixing pulp. FIG. 2 is a schematic diagram of a two-pulp mixing water heater. FIG. 3 is a schematic diagram of a water supply device using a single faucet (hot water cup). A... Gas instantaneous water heater 8... Faucet 1... Water supply pipe 2... Flow rate sensor 3... Incoming water temperature sensor 4... Hot water supply pipe 5... Outgoing water temperature sensor 6 ...Burner 9°°°WA"1,1 10...Water flow valve

Claims (1)

【特許請求の範囲】[Claims] 給水管路に設けた流量センサー、入水温センサー、及び
給湯管路に設けた出湯温センサーの検出信号に基づき必
要熱量を演算してバーナーの燃焼を自動的に制御すると
共に、給湯管路には演算された必要熱量が給湯機の能力
を越えるときは流量を絞る水量パルプを設けたガス瞬間
湯沸器と、該湯沸器から所定温度の湯を供給して設定吐
出温度の温湯を吐出する水栓とで構成し、上記水量バル
ブは絞られた状態で給湯が停止されたとき、給湯停止後
所定時間経過すると自動的に全開の状態に戻るようにし
たことを特徴とする給湯装置。
The required amount of heat is calculated based on the detection signals of the flow rate sensor installed in the water supply pipe, the incoming water temperature sensor, and the hot water temperature sensor installed in the hot water supply pipe, and the combustion of the burner is automatically controlled. When the calculated required amount of heat exceeds the capacity of the water heater, a gas instantaneous water heater is equipped with a water flow pulp that reduces the flow rate, and hot water at a predetermined temperature is supplied from the water heater to discharge hot water at a set discharge temperature. A water supply device comprising a faucet, wherein when hot water supply is stopped in a throttled state, the water flow valve automatically returns to a fully open state after a predetermined period of time has elapsed after the water supply was stopped.
JP59235768A 1984-11-07 1984-11-07 Hot-water supply device Granted JPS61114047A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP59235768A JPS61114047A (en) 1984-11-07 1984-11-07 Hot-water supply device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP59235768A JPS61114047A (en) 1984-11-07 1984-11-07 Hot-water supply device

Publications (2)

Publication Number Publication Date
JPS61114047A true JPS61114047A (en) 1986-05-31
JPH0328664B2 JPH0328664B2 (en) 1991-04-19

Family

ID=16990947

Family Applications (1)

Application Number Title Priority Date Filing Date
JP59235768A Granted JPS61114047A (en) 1984-11-07 1984-11-07 Hot-water supply device

Country Status (1)

Country Link
JP (1) JPS61114047A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01150745A (en) * 1987-12-09 1989-06-13 Matsushita Electric Ind Co Ltd Water amount control device for hot water feeder
JPH01150746A (en) * 1987-12-09 1989-06-13 Matsushita Electric Ind Co Ltd Water amount control device for hot water feeder
JPH02549U (en) * 1988-06-13 1990-01-05
WO2024025919A1 (en) * 2022-07-28 2024-02-01 Bradford White Corporation Internal recirculation with low pulse fire control

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5749655U (en) * 1980-09-05 1982-03-20
JPS5828950A (en) * 1981-08-17 1983-02-21 Matsushita Electric Ind Co Ltd Controlling device of hot water supplier
JPS5860136A (en) * 1981-10-01 1983-04-09 Sanyo Electric Co Ltd Constant-temperature tapping device

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS51133515A (en) * 1975-05-14 1976-11-19 Teijin Ltd Winding apparatus for use in spinning

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5749655U (en) * 1980-09-05 1982-03-20
JPS5828950A (en) * 1981-08-17 1983-02-21 Matsushita Electric Ind Co Ltd Controlling device of hot water supplier
JPS5860136A (en) * 1981-10-01 1983-04-09 Sanyo Electric Co Ltd Constant-temperature tapping device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01150745A (en) * 1987-12-09 1989-06-13 Matsushita Electric Ind Co Ltd Water amount control device for hot water feeder
JPH01150746A (en) * 1987-12-09 1989-06-13 Matsushita Electric Ind Co Ltd Water amount control device for hot water feeder
JPH02549U (en) * 1988-06-13 1990-01-05
WO2024025919A1 (en) * 2022-07-28 2024-02-01 Bradford White Corporation Internal recirculation with low pulse fire control

Also Published As

Publication number Publication date
JPH0328664B2 (en) 1991-04-19

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