JP2011185519A - Hot water storage type water heater - Google Patents

Hot water storage type water heater Download PDF

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JP2011185519A
JP2011185519A JP2010050674A JP2010050674A JP2011185519A JP 2011185519 A JP2011185519 A JP 2011185519A JP 2010050674 A JP2010050674 A JP 2010050674A JP 2010050674 A JP2010050674 A JP 2010050674A JP 2011185519 A JP2011185519 A JP 2011185519A
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hot water
temperature
water storage
storage tank
supply path
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JP5458967B2 (en
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Kentaro Terashi
健太郎 寺師
Takaaki Akaishi
貴昭 赤石
Masayuki Sudo
真行 須藤
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Mitsubishi Electric Corp
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  • Heat-Pump Type And Storage Water Heaters (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a hot water storage type water heater capable of carrying out boiling without problems such as stopping of the apparatus even if tapping is stopped and boiling operation is started when there is no hot water left in a hot water storage tank, and capable of supplying hot water suiting respective applications to a plurality of hot-water supply paths without wastefully leaving hot water in the hot water storage tank. <P>SOLUTION: The hot water storage type water heater includes the hot water storage tank 1, a water supply path 2 supplying water to the hot water storage tank 1, a high temperature hot-water supply path 11 directly tapping the hot water of the hot water storage tank, a high temperature side opening and closing valve 13 provided in the middle of the high temperature hot-water supply path 11, a mixing hot-water supply path 10 mixing and tapping the hot water of the hot water storage tank 1 and water supplied from the outside of the hot water storage tank 1, a mixing side opening and closing valve 12 provided in the middle of the mixing hot-water supply path 10, a tank hot water temperature detecting means 14 for detecting a temperature of the hot water in the hot water storage tank 1, and a control means 15 for respectively controlling the high temperature side opening and closing valve 13 and the mixing side opening and closing valve 12 on the basis of the tank hot water temperature. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、貯湯式給湯機に関する。   The present invention relates to a hot water storage type water heater.

ヒートポンプなどの加熱手段により加熱された高温の湯を貯湯タンクに貯え、この貯湯タンクから取り出した湯を必要に応じ水と混合して風呂、台所などの給湯端末に供給する貯湯式給湯機が広く用いられている。貯湯タンク内は、常に湯と水で満たされ、上層に湯が、下層に水が、それぞれ貯留される。貯湯タンクの下部には、水道等の水源の水を供給する給水経路が接続されている。貯湯タンク内の水を加熱する沸き上げ動作においては、貯湯タンクの下部から取り出した水を加熱手段に送って高温の湯にし、その湯を貯湯タンクの上部に戻す。   Hot water heaters that store hot water heated by heating means such as heat pumps in hot water storage tanks, mix hot water extracted from the hot water storage tanks with water as needed, and supply them to hot water terminals such as baths and kitchens are widely used. It is used. The hot water storage tank is always filled with hot water and water, and hot water is stored in the upper layer and water is stored in the lower layer. A water supply path for supplying water from a water source such as a water supply is connected to the lower part of the hot water storage tank. In the boiling operation for heating the water in the hot water storage tank, the water taken out from the lower part of the hot water storage tank is sent to the heating means to make hot water, and the hot water is returned to the upper part of the hot water storage tank.

従来の貯湯式給湯機では、貯湯タンクへ水を供給する給水経路上に電動膨張弁などの開閉手段を設け、通常はこの開閉手段を開状態に維持し、貯湯タンク内の湯が無くなったことが検出されるとこの開閉手段を閉状態として給水を遮断し、給湯を止めるものが知られている(例えば、特許文献1参照)。   In the conventional hot water storage type hot water supply equipment, an open / close means such as an electric expansion valve is provided on the water supply path for supplying water to the hot water storage tank. Normally, this open / close means is kept open, and the hot water in the hot water storage tank is gone. Is detected to shut off the water supply and stop the hot water supply (see, for example, Patent Document 1).

特開2005−134064号公報JP 2005-134064 A

沸き上げ時には、沸き上げられた水の中の溶存酸素が水の温度上昇による溶解度低下により、気泡となって現れる。上記従来の貯湯式給湯機では、貯湯タンクに接続された給水経路上の開閉手段を閉状態にして給湯を止めた後、沸き上げ動作に入るが、沸き上げ中も常に給水経路が閉状態に維持されるため、タンクに水源水圧がかからなくなる。このため、溶存酸素から発生した気泡が貯湯タンクに設けられた逃し弁などから上手く排出されずにタンク上部に滞留したり、加熱手段内に気泡が介在するといった状態が起こる。その結果、水栓などの給湯端末を開けると同時に空気と水が混ざり合った湯が給湯端末より吹き出してしまったり、加熱手段により加熱された湯が一定量流れなくなり、部分的に湯の温度が上昇しすぎて異常高温となり、保護手段が働き加熱手段が停止してしまうといった問題がある。   At the time of boiling, dissolved oxygen in the boiled water appears as bubbles due to a decrease in solubility due to an increase in water temperature. In the above-described conventional hot water storage type hot water heater, the hot water supply is stopped after closing the opening and closing means on the water supply path connected to the hot water storage tank, and then the boiling operation is started, but the water supply path is always closed during the boiling. Because it is maintained, the water source water pressure is not applied to the tank. For this reason, the state where the bubbles generated from the dissolved oxygen stay in the upper part of the tank without being successfully discharged from a relief valve or the like provided in the hot water storage tank or bubbles exist in the heating means. As a result, when the hot water supply terminal such as a faucet is opened, hot water mixed with air and water blows out from the hot water supply terminal, or a certain amount of hot water heated by the heating means does not flow, and the temperature of the hot water partially There is a problem that the temperature rises excessively and becomes an abnormally high temperature, the protection means works, and the heating means stops.

また、貯湯タンクに貯えられた高温の湯と水源からの水とを混合して出湯する混合給湯経路のほかに、貯湯タンクに貯えられた高温の湯を直接出湯する高温給湯経路を備えた貯湯式給湯機の場合、貯湯タンクへ水を供給する給水経路上の開閉手段を閉にすると、混合給湯経路と高温給湯経路との双方からの出湯が同時に停止されてしまう。このため、出湯を止めるタイミングが遅かった場合には高温給湯経路に接続されている給湯端末(例えば食器洗い機)に出湯される湯の温度が低くなりすぎてしまったり、出湯を止めるタイミングが早かった場合には高温給湯経路に接続されている給湯端末には低すぎて使用できない温度だが混合給湯経路に接続されている給湯端末(風呂、台所等)には十分使用できる温度の湯が貯湯タンク内に多量に残ってしまったりするので、どちらの場合でも使い勝手上の問題がある。   In addition to a mixed hot water supply route that mixes hot water stored in the hot water storage tank with water from the water source and discharges the hot water, a hot water storage device that has a high temperature hot water supply route that directly discharges high temperature hot water stored in the hot water storage tank. In the case of the type hot water supply device, when the opening and closing means on the water supply path for supplying water to the hot water storage tank is closed, the hot water from both the mixed hot water supply path and the high temperature hot water supply path is stopped simultaneously. For this reason, when the timing of stopping the hot water was late, the temperature of the hot water discharged to the hot water supply terminal (for example, the dishwasher) connected to the high temperature hot water supply path was too low, or the timing of stopping the hot water was early. In some cases, the temperature of the hot water supply terminal connected to the high temperature hot water supply path is too low to be used, but there is enough hot water in the hot water storage tank (bathroom, kitchen, etc.) connected to the mixed hot water supply path. In either case, there is a usability problem.

本発明は、上述のような課題を解決するためになされたもので、貯湯タンク内の湯が無くなったときに出湯を止めて沸き上げ動作を開始した場合でも、機器が止まるなどの問題もなく沸き上げができ、且つ、貯湯タンク内の湯を無駄に残すことなく、複数の給湯経路に、それぞれの用途に適した温度の湯を供給することのできる貯湯式給湯機を提供することを目的とする。   The present invention has been made in order to solve the above-described problems, and even when the hot water in the hot water storage tank is exhausted and the boiling operation is stopped and the boiling operation is started, there is no problem that the device stops. It is an object of the present invention to provide a hot water storage type water heater that can boil up and supply hot water having a temperature suitable for each application to a plurality of hot water supply paths without wasting hot water in a hot water storage tank. And

本発明に係る貯湯式給湯機は、加熱手段により加熱された湯を貯える貯湯タンクと、貯湯タンクに水を供給する給水経路と、貯湯タンクから取り出された湯を直接出湯する高温給湯経路と、高温給湯経路の途中に設けられた高温側開閉弁と、貯湯タンクから取り出された湯と貯湯タンク外から供給される水とを混合して出湯する混合給湯経路と、混合給湯経路の途中に設けられた混合側開閉弁と、貯湯タンク内の湯の温度を検出するタンク内湯温検出手段と、タンク内湯温検出手段により検出されたタンク内湯温に基づいて、高温側開閉弁と混合側開閉弁とをそれぞれ制御する制御手段と、を備えたものである。   A hot water storage type hot water supply apparatus according to the present invention includes a hot water storage tank for storing hot water heated by a heating means, a water supply path for supplying water to the hot water storage tank, a high temperature hot water supply path for directly discharging hot water taken out of the hot water storage tank, A hot water on-off valve provided in the middle of the hot water supply path, a mixed hot water path for mixing hot water taken out from the hot water storage tank and water supplied from outside the hot water storage tank, and provided in the middle of the mixed hot water supply path A mixing side on-off valve, a tank hot water temperature detecting means for detecting the temperature of the hot water in the hot water storage tank, and a high temperature side opening / closing valve and a mixing side on / off valve based on the hot water in the tank detected by the tank hot water temperature detecting means And control means for controlling each of the above.

本発明によれば、貯湯タンク内の湯が無くなったときに出湯を止めて沸き上げ動作を開始した場合でも、機器が止まるなどの問題もなく沸き上げ動作を行うことができる。また、貯湯タンク内の湯を無駄に残すことなく、複数の給湯経路に、それぞれの用途に適した温度の湯を供給することができる。   According to the present invention, even when the hot water is stopped and the boiling operation is started when the hot water in the hot water storage tank is exhausted, the boiling operation can be performed without problems such as the equipment being stopped. Moreover, hot water having a temperature suitable for each application can be supplied to a plurality of hot water supply paths without wasting hot water in the hot water storage tank.

本発明の貯湯式給湯機の実施の形態1を示す構成図である。It is a block diagram which shows Embodiment 1 of the hot water storage type water heater of this invention. 本発明の実施の形態1における制御動作を示すフローチャートである。It is a flowchart which shows the control action in Embodiment 1 of this invention.

実施の形態1.
以下、本発明の実施の形態について、図面に基づき詳細に説明する。図1は、本発明の貯湯式給湯機の実施の形態1を示す構成図である。
Embodiment 1 FIG.
Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. FIG. 1 is a configuration diagram showing Embodiment 1 of a hot water storage type water heater of the present invention.

図1に示すように、貯湯タンクユニット100には、ヒートポンプ等の加熱手段5にて加熱した湯を貯えるための貯湯タンク1が備えられている。貯湯タンク1の下部には、水道等の水源からの水を供給する給水配管2が接続されている。貯湯タンク1内には、この給水配管2を介して水が供給される。貯湯タンク1内は、上層の湯と下層の水とで、常に満水状態に保たれる。   As shown in FIG. 1, the hot water storage tank unit 100 includes a hot water storage tank 1 for storing hot water heated by a heating means 5 such as a heat pump. A water supply pipe 2 for supplying water from a water source such as a water supply is connected to the lower part of the hot water storage tank 1. Water is supplied into the hot water storage tank 1 through the water supply pipe 2. The hot water storage tank 1 is always kept full of upper water and lower water.

沸き上げ動作時には、貯湯タンク1内の水は、貯湯タンク1の下部に接続されている入水配管3を通り、入水配管3上に設置してある循環ポンプ4によって加熱手段5へ搬送される。加熱手段5により加熱された水は、高温の湯となり、加熱手段5から貯湯タンク1上部に接続された出湯配管6を介して、貯湯タンク1内に搬送され、貯えられる。また、貯湯タンク1の上部には、貯湯タンク1内の過大な圧力を逃すための逃し弁7が設置されている。   During the boiling operation, the water in the hot water storage tank 1 passes through the incoming water pipe 3 connected to the lower part of the hot water storage tank 1 and is conveyed to the heating means 5 by the circulation pump 4 installed on the incoming water pipe 3. The water heated by the heating means 5 becomes high-temperature hot water, and is conveyed and stored in the hot water storage tank 1 through the hot water piping 6 connected to the upper part of the hot water storage tank 1 from the heating means 5. In addition, a relief valve 7 for releasing excessive pressure in the hot water storage tank 1 is installed in the upper part of the hot water storage tank 1.

貯湯タンク1の上部に接続された給湯配管8と、給水配管2とは、混合弁9に接続されている。混合弁9の下流側には、混合給湯経路10が接続されている。使用者は、例えば台所や浴室に設置されたリモコンなどで構成される外部指示系統101(設定手段)を操作することにより、所望の出湯温度を設定することができる。混合弁9は、貯湯タンク1から給湯配管8を通って取り出された高温の湯と、給水配管2から供給される水とを混合した混合湯の温度が、使用者により設定された出湯温度になるように両者の混合比を制御する。そのようにして温度が制御された混合湯は、混合給湯経路10を通って、お風呂のシャワー、または台所や洗面所の蛇口などの給湯端末へ供給される。混合給湯経路10の途中には、混合給湯経路10を遮断可能な電磁弁などで構成される混合側開閉弁12が設置されている。   The hot water supply pipe 8 connected to the upper part of the hot water storage tank 1 and the water supply pipe 2 are connected to the mixing valve 9. A mixed hot water supply path 10 is connected to the downstream side of the mixing valve 9. The user can set a desired hot water temperature by operating an external instruction system 101 (setting means) configured by a remote controller or the like installed in a kitchen or bathroom, for example. The mixing valve 9 is configured so that the temperature of the mixed hot water obtained by mixing the hot water taken out from the hot water storage tank 1 through the hot water supply pipe 8 and the water supplied from the water supply pipe 2 becomes the hot water temperature set by the user. The mixing ratio of both is controlled so that The mixed hot water whose temperature is controlled in this way is supplied to a hot water supply terminal such as a shower in a bath or a kitchen or a washroom through a mixed hot water supply path 10. In the middle of the mixed hot water supply path 10, a mixing side open / close valve 12 configured by an electromagnetic valve or the like that can shut off the mixed hot water supply path 10 is installed.

また、混合弁9より上流側の給湯配管8からは高温給湯経路11が分岐しており、貯湯タンク1から取り出された高温の湯がそのまま直接に高温給湯経路11に流入可能になっている。高温給湯経路11を通る高温湯は、例えば食器洗い機などの、高温湯を必要とする給湯端末に供給される。高温給湯経路11の途中には、高温給湯経路11を遮断可能な電磁弁などで構成される高温側開閉弁13が設置されている。   Further, a high temperature hot water supply path 11 is branched from the hot water supply pipe 8 upstream of the mixing valve 9, and high temperature hot water taken out from the hot water storage tank 1 can directly flow into the high temperature hot water supply path 11 as it is. Hot water passing through the hot water supply path 11 is supplied to a hot water supply terminal that requires high temperature hot water, such as a dishwasher. In the middle of the high temperature hot water supply path 11, a high temperature side opening / closing valve 13 constituted by an electromagnetic valve or the like capable of blocking the high temperature hot water supply path 11 is installed.

貯湯タンク1の表面には、貯湯タンク1内の湯の温度(以下、「タンク内湯温」と称する)を検出するための温度センサ14(タンク内湯温検出手段)が設置されている。図示の構成では、高さの異なる位置に複数の温度センサ14が設置されている。貯湯タンク1内の湯が消費され、湯と水との境界層(混合層)の位置が上昇していくと、下側の温度センサ14から順に、その検出温度が高温(湯の温度)から低温(水の温度)に切り換わっていく。このため、各温度センサ14の検出値によれば、貯湯タンク1内の残湯量を検出することもできる。   On the surface of the hot water storage tank 1, a temperature sensor 14 (tank hot water temperature detecting means) for detecting the temperature of the hot water in the hot water storage tank 1 (hereinafter referred to as “tank hot water temperature”) is installed. In the illustrated configuration, a plurality of temperature sensors 14 are installed at different heights. When the hot water in the hot water storage tank 1 is consumed and the position of the boundary layer (mixed layer) between hot water and water rises, the detected temperature starts from the higher temperature (hot water temperature) in order from the lower temperature sensor 14. It switches to low temperature (water temperature). For this reason, according to the detected value of each temperature sensor 14, the amount of hot water in the hot water storage tank 1 can also be detected.

本実施形態の貯湯式給湯機の動作は、制御部15(制御手段)により制御される。特に、本実施形態において、制御部15は、温度センサ14により検出されるタンク内湯温に基づいて、混合側開閉弁12や高温側開閉弁13の開閉タイミングを制御する。   The operation of the hot water storage type water heater of the present embodiment is controlled by the control unit 15 (control means). In particular, in the present embodiment, the control unit 15 controls the opening / closing timing of the mixing-side opening / closing valve 12 and the high-temperature side opening / closing valve 13 based on the hot water temperature in the tank detected by the temperature sensor 14.

次に、上述のように構成された貯湯式給湯機の動作を図2のフローチャートに基づいて説明する。図2は、本発明の実施の形態1における制御動作を示すフローチャートである。   Next, the operation of the hot water storage type water heater configured as described above will be described based on the flowchart of FIG. FIG. 2 is a flowchart showing the control operation in the first embodiment of the present invention.

使用者は、外部指示系統101を操作することにより、混合給湯経路10から出湯する湯の温度T1(以下、「混合出湯温度」と称する)を所望に設定することができる。混合給湯経路10の給湯端末は、お風呂のシャワー、台所や洗面所の蛇口などである。このため、混合出湯温度T1は、通常、40〜60℃程度に設定される。   The user can set a desired temperature T1 of hot water discharged from the mixed hot water supply path 10 (hereinafter referred to as “mixed hot water temperature”) by operating the external instruction system 101. The hot water supply terminal of the mixed hot water supply path 10 is a shower in a bath, a faucet in a kitchen or a bathroom, and the like. For this reason, the mixed hot water temperature T1 is usually set to about 40 to 60 ° C.

更に、使用者は、外部指示系統101を操作することにより、高温給湯経路11から出湯する湯の最低温度T2(以下、「高温出湯温度」と称する)を設定することができる。高温給湯経路11に接続される給湯端末の一例としての食器洗い機では、所定の洗浄能力を保障するため、約80〜90℃の高温の湯を供給することが要求される場合がある。このため、そのような高温の湯を供給できない場合には、高温給湯経路11への出湯を停止する必要がある。高温出湯温度T2は、タンク内湯温がこの高温出湯温度T2を下回った場合に高温給湯経路11への出湯を停止するために設定される温度である。従って、高温出湯温度T2は、例えば、80℃程度に設定される。   Furthermore, the user can set the minimum temperature T2 of hot water discharged from the high temperature hot water supply path 11 (hereinafter referred to as “high temperature hot water temperature”) by operating the external instruction system 101. In a dishwasher as an example of a hot water supply terminal connected to the high temperature hot water supply path 11, it may be required to supply hot water of about 80 to 90 ° C. in order to ensure a predetermined cleaning ability. For this reason, when such high temperature hot water cannot be supplied, it is necessary to stop the hot water supply to the high temperature hot water supply path 11. The high temperature hot water temperature T2 is a temperature set to stop the hot water supply to the high temperature hot water supply path 11 when the hot water temperature in the tank falls below the high temperature hot water temperature T2. Therefore, the high temperature hot water temperature T2 is set to about 80 ° C., for example.

図2のステップS1では、タンク内湯温を温度センサ14により検出する。ステップS2では、使用者が設定した混合出湯温度T1と、ステップS1で検出されたタンク内湯温T0とを比較する。このステップS2で、タンク内湯温T0が混合出湯温度T1を下回っていた場合(T0<T1の場合)には、貯湯タンク1内の湯をそのまま出湯しても混合出湯温度T1に届かない。そこで、この場合には、混合給湯経路10からの出湯を停止するため、ステップS4に進み、混合側開閉弁12を閉じて混合給湯経路10を遮断する。その後、ステップS3へ進む。   In step S <b> 1 of FIG. 2, the temperature sensor 14 detects the hot water temperature in the tank. In step S2, the mixed hot water temperature T1 set by the user is compared with the in-tank hot water temperature T0 detected in step S1. If the hot water temperature T0 in the tank is lower than the mixed hot water temperature T1 in this step S2 (when T0 <T1), the hot water in the hot water storage tank 1 will not reach the mixed hot water temperature T1 even if the hot water is discharged as it is. Therefore, in this case, in order to stop the hot water from the mixed hot water supply path 10, the process proceeds to step S <b> 4, and the mixed side on-off valve 12 is closed to shut off the mixed hot water supply path 10. Then, it progresses to step S3.

一方、ステップS2で、タンク内湯温T0が混合出湯温度T1以上であった場合には、混合出湯温度T1の湯を出湯することは可能であるので、混合給湯経路10からの出湯を停止する必要はない。このため、この場合には、そのままステップS3へ進む。   On the other hand, if the tank hot water temperature T0 is equal to or higher than the mixed hot water temperature T1 in step S2, it is possible to discharge hot water having the mixed hot water temperature T1, so it is necessary to stop the hot water from the mixed hot water supply path 10. There is no. Therefore, in this case, the process proceeds to step S3 as it is.

ステップS3では、高温出湯温度T2と、ステップS1で検出されたタンク内湯温T0とを比較する。上述したように、高温給湯経路11への出湯温度が高温出湯温度T2を下回る場合には、高温給湯経路11への出湯を停止する必要がある。よって、ステップS3で、タンク内湯温T0が高温出湯温度T2を下回っていた場合(T0<T2の場合)には、ステップS5に進み、高温側開閉弁13を閉じて高温給湯経路11を遮断する。その後、ステップS6へ進む。   In step S3, the hot tapping temperature T2 is compared with the tank hot water temperature T0 detected in step S1. As described above, when the temperature of the hot water supply to the high temperature hot water supply path 11 is lower than the high temperature hot water supply temperature T2, the hot water supply to the high temperature hot water supply path 11 needs to be stopped. Therefore, when the tank hot water temperature T0 is lower than the high temperature hot water temperature T2 in step S3 (when T0 <T2), the process proceeds to step S5, where the high temperature side on-off valve 13 is closed and the high temperature hot water supply path 11 is shut off. . Thereafter, the process proceeds to step S6.

一方、ステップS3で、タンク内湯温T0が高温出湯温度T2以上であった場合には、高温出湯温度T2以上の湯を高温給湯経路11へ出湯することは可能であるので、高温給湯経路11からの出湯を停止する必要はない。このため、この場合には、そのままステップS6へ進む。   On the other hand, if the tank hot water temperature T0 is equal to or higher than the high temperature hot water temperature T2 in step S3, hot water having a temperature higher than the high temperature hot water temperature T2 can be discharged to the high temperature hot water supply path 11; There is no need to stop the hot water. Therefore, in this case, the process proceeds to step S6 as it is.

ステップS6では、混合側開閉弁12および高温側開閉弁13の両方が閉じられた状態であるかどうかを判断し、両方とも閉じられているならばステップS7に進み、何れか一方でも閉じられていなければステップS1以下の処理を再度実行する。ステップS7では、貯湯タンク1の沸き上げ動作(加熱動作)を開始する。   In step S6, it is determined whether both the mixing side on-off valve 12 and the high temperature side on-off valve 13 are closed. If both are closed, the process proceeds to step S7, and either of them is closed. If not, the process from step S1 is executed again. In step S7, the boiling operation (heating operation) of the hot water storage tank 1 is started.

次に、本実施形態の貯湯式給湯機の沸き上げ動作の概要を説明する。前述したようにして混合側開閉弁12および高温側開閉弁13が閉じられた後、循環ポンプ4を駆動させ、入水配管3を介して、貯湯タンク1の下部より貯湯タンク1内の水を取り出し、加熱手段5へ供給する。加熱手段5にて加熱された高温の湯は出湯配管6を介して、貯湯タンク1の上部に戻され、貯えられる。   Next, an outline of the boiling operation of the hot water storage type water heater of this embodiment will be described. After the mixing side opening / closing valve 12 and the high temperature side opening / closing valve 13 are closed as described above, the circulation pump 4 is driven, and the water in the hot water storage tank 1 is taken out from the lower part of the hot water storage tank 1 through the incoming water pipe 3. To the heating means 5. The hot water heated by the heating means 5 is returned to the upper part of the hot water storage tank 1 through the hot water piping 6 and stored.

加熱手段5にて加熱された水は高温となり、体積膨張するため、貯湯タンク1内の圧力が上昇するが、貯湯タンク1上部に設置した逃し弁7より体積膨張した分の湯が排出される。これにより、圧力上昇が抑制される。また、加熱手段5が水を加熱すると、水中に溶けていた溶存酸素が気泡となって現れ、出湯配管6から貯湯タンク1の上部に、沸き上げられた湯と共に戻される。しかしながら、本実施形態の貯湯式給湯機では、沸き上げ動作時においても、給水配管2からの水圧が貯湯タンク1内に常に作用している。この水圧により、貯湯タンク1の気泡は、逃し弁7の方向へ押し出され、逃し弁7から確実に排出される。   Since the water heated by the heating means 5 becomes high temperature and expands in volume, the pressure in the hot water storage tank 1 rises, but the hot water corresponding to the volume expansion is discharged from the relief valve 7 installed in the upper part of the hot water storage tank 1. . Thereby, a pressure rise is suppressed. Further, when the heating means 5 heats the water, dissolved oxygen dissolved in the water appears as bubbles and is returned from the hot water supply pipe 6 to the upper part of the hot water storage tank 1 together with the heated water. However, in the hot water storage type hot water supply apparatus of the present embodiment, the water pressure from the water supply pipe 2 always acts in the hot water storage tank 1 even during the boiling operation. With this water pressure, the bubbles in the hot water storage tank 1 are pushed out toward the relief valve 7 and are reliably discharged from the relief valve 7.

このように、本実施形態によれば、沸き上げ時に発生した気泡を逃し弁7から確実に排出することができる。このため、蛇口などに給湯したときに、空気と水が混ざり合った湯が吹き出すようなことを確実に防止することができる。また、加熱手段5内や出湯配管6内などに気泡が介在することも防止されるので、加熱手段5に供給された水がスムーズに流れ、部分的に高温となることもなく、沸き上げを支障なく確実に行うことができる。   Thus, according to the present embodiment, bubbles generated during boiling can be reliably discharged from the relief valve 7. For this reason, when hot water is supplied to a faucet or the like, it is possible to reliably prevent the hot water mixed with air and water from being blown out. In addition, since bubbles are prevented from interposing in the heating means 5 and the hot water piping 6, the water supplied to the heating means 5 flows smoothly and does not reach a high temperature. It can be done reliably without hindrance.

また、本実施形態によれば、検出されたタンク内湯温に基づいて、混合側開閉弁12と高温側開閉弁13とをそれぞれ制御することにより、混合給湯経路10と高温給湯経路11とにそれぞれ適した温度で湯を供給することができるとともに、貯湯タンク1内の湯を無駄なく利用することができる。すなわち、本実施形態によれば、タンク内湯温が高温出湯温度T2(例えば80℃)を下回ると、高温給湯経路11が高温側開閉弁13により遮断される。このため、高温給湯経路11の給湯端末(食器洗い機など)に適さない低温の湯が供給されることを防止することができる。一方、タンク内湯温が高温出湯温度T2を下回った場合であっても、タンク内湯温が混合出湯温度T1(例えば40℃)以上であれば、混合給湯経路10は遮断されない。このため、タンク内湯温が高温出湯温度T2を下回った場合であっても、タンク内湯温が混合出湯温度T1を下回るまでの間は、貯湯タンク1内の湯を混合給湯経路10から風呂や台所へ供給することができる。このため、貯湯タンク1内の湯を無駄なく使用することが可能であるので、電力消費量や水資源などを節減することができる。   Further, according to the present embodiment, the mixed-side hot water supply path 10 and the high-temperature hot water supply path 11 are respectively controlled by controlling the mixing-side open / close valve 12 and the high-temperature side open / close valve 13 based on the detected hot water temperature in the tank. Hot water can be supplied at a suitable temperature, and the hot water in the hot water storage tank 1 can be used without waste. That is, according to the present embodiment, when the temperature of the hot water in the tank falls below the high temperature hot water temperature T2 (for example, 80 ° C.), the high temperature hot water supply path 11 is shut off by the high temperature side opening / closing valve 13. For this reason, it can prevent that the low temperature hot water which is not suitable for the hot water supply terminal (such as a dishwasher) of the high temperature hot water supply path 11 is supplied. On the other hand, even if the hot water temperature in the tank falls below the high temperature hot water temperature T2, if the hot water temperature in the tank is equal to or higher than the mixed hot water temperature T1 (for example, 40 ° C.), the mixed hot water supply path 10 is not blocked. For this reason, even if the temperature of the hot water in the tank falls below the high temperature hot water temperature T2, the hot water in the hot water storage tank 1 is taken from the mixed hot water supply path 10 to the bath or kitchen until the hot water temperature in the tank falls below the mixed hot water temperature T1. Can be supplied to. For this reason, since the hot water in the hot water storage tank 1 can be used without waste, power consumption, water resources, and the like can be reduced.

実施の形態2.
次に、本発明の実施の形態2について説明するが、上述した実施の形態1との相違点のみを説明する。実施の形態2の貯湯式給湯機の構成は、下記の点以外は実施の形態1と同様であるので、図示は省略する。
Embodiment 2. FIG.
Next, a second embodiment of the present invention will be described, but only differences from the above-described first embodiment will be described. Since the configuration of the hot water storage type hot water heater of the second embodiment is the same as that of the first embodiment except for the following points, the illustration is omitted.

実施の形態1では、貯湯タンク1に設置した温度センサ14によってタンク内湯温を検出しているが、タンク内湯温検出手段は、そのような構成に限定されるものではない。例えば、高温給湯経路11を通る湯の温度を検出する第1の温度検出手段と、混合給湯経路10を通る湯の温度を検出する第2の温度検出手段とを設けることによってタンク内湯温を検出するようにしてもよい。高温給湯経路11を通る湯の温度は、タンク内湯温に等しいとみなせるので、上記第1の温度検出手段によってタンク内湯温を検出することができる。また、制御部15は、上記第2の温度検出手段によって検出される混合湯の温度が混合出湯温度T1に等しくなるように混合弁9の開度を制御する。このため、給湯配管8から供給される湯の温度が混合出湯温度T1以下になると、制御部15は混合弁9の開度を湯側全開に制御するので、貯湯タンク1から取り出された湯がそのまま混合給湯経路10に流れる。従って、タンク内湯温が低下した場合には、上記第2の温度検出手段によって検出された湯温は、タンク内湯温に等しいとみなせるので、上記第2の温度検出手段によってタンク内湯温を検出することができる。   In Embodiment 1, the temperature of the hot water in the tank is detected by the temperature sensor 14 installed in the hot water storage tank 1, but the means for detecting the hot water in the tank is not limited to such a configuration. For example, the temperature of the hot water in the tank is detected by providing first temperature detecting means for detecting the temperature of hot water passing through the high temperature hot water supply path 11 and second temperature detecting means for detecting the temperature of hot water passing through the mixed hot water supply path 10. You may make it do. Since the temperature of the hot water passing through the high temperature hot water supply path 11 can be regarded as being equal to the hot water temperature in the tank, the hot water temperature in the tank can be detected by the first temperature detecting means. Moreover, the control part 15 controls the opening degree of the mixing valve 9 so that the temperature of the mixed hot water detected by the said 2nd temperature detection means may become equal to the mixed hot water temperature T1. For this reason, when the temperature of the hot water supplied from the hot water supply pipe 8 becomes equal to or lower than the mixed hot water temperature T1, the controller 15 controls the opening of the mixing valve 9 to fully open the hot water side. It flows to the mixed hot water supply path 10 as it is. Therefore, when the hot water temperature in the tank is lowered, the hot water temperature detected by the second temperature detecting means can be regarded as being equal to the hot water temperature in the tank, so that the hot water temperature in the tank is detected by the second temperature detecting means. be able to.

なお、本実施の形態2では、混合給湯経路10や高温給湯経路11から出湯していることを検出する流量センサなどの出湯検出手段を設け、その出湯検出手段によって出湯が検出されてから所定時間経過後または所定量出湯後に第1の温度検出手段や第2の温度検出手段で検出された温度をタンク内湯温とみなして、実施の形態1と同様の制御することが望ましい。これは、出湯開始から初期段階では、貯湯タンク1内の湯ではなく、配管内の湯や配管自身の温度の影響を受けてしまうからである。   In the second embodiment, there is provided a hot water detection means such as a flow rate sensor for detecting that the hot water has been discharged from the mixed hot water supply path 10 or the high temperature hot water supply path 11, and a predetermined time has elapsed since the hot water detection was detected by the hot water detection means. It is desirable that the temperature detected by the first temperature detection means or the second temperature detection means after the elapse of time or after a predetermined amount of hot water is regarded as the hot water temperature in the tank and to be controlled in the same manner as in the first embodiment. This is because, in the initial stage from the start of hot water supply, the hot water in the hot water storage tank 1 is not affected by the hot water in the pipe or the temperature of the pipe itself.

1 貯湯タンク
2 給水配管
5 加熱手段
7 逃し弁
8 給湯配管
9 混合弁
10 混合給湯経路
11 高温給湯経路
12 混合側開閉弁
13 高温側開閉弁
14 温度センサ
15 制御部
101 外部指示系統
DESCRIPTION OF SYMBOLS 1 Hot water storage tank 2 Water supply piping 5 Heating means 7 Relief valve 8 Hot water supply piping 9 Mixing valve 10 Mixed hot water supply path 11 High temperature hot water supply path 12 Mixing side on-off valve 13 High temperature side on / off valve 14 Temperature sensor 15 Control part 101 External indication system

Claims (5)

加熱手段により加熱された湯を貯える貯湯タンクと、
前記貯湯タンクに水を供給する給水経路と、
前記貯湯タンクから取り出された湯を直接出湯する高温給湯経路と、
前記高温給湯経路の途中に設けられた高温側開閉弁と、
前記貯湯タンクから取り出された湯と、前記貯湯タンク外から供給される水とを混合して出湯する混合給湯経路と、
前記混合給湯経路の途中に設けられた混合側開閉弁と、
前記貯湯タンク内の湯の温度を検出するタンク内湯温検出手段と、
前記タンク内湯温検出手段により検出されたタンク内湯温に基づいて、前記高温側開閉弁と前記混合側開閉弁とをそれぞれ制御する制御手段と、
を備えることを特徴とする貯湯式給湯機。
A hot water storage tank for storing hot water heated by the heating means;
A water supply path for supplying water to the hot water storage tank;
A high temperature hot water supply path for directly discharging hot water taken out from the hot water storage tank;
A high temperature side opening / closing valve provided in the middle of the high temperature hot water supply path;
A mixed hot water supply path for mixing hot water taken out from the hot water storage tank and water supplied from outside the hot water storage tank,
A mixing-side on-off valve provided in the middle of the mixed hot water supply path;
Tank hot water temperature detecting means for detecting the temperature of hot water in the hot water storage tank;
Control means for controlling the high temperature side on-off valve and the mixing side on-off valve based on the tank hot water temperature detected by the tank hot water temperature detecting means,
A hot water storage type water heater characterized by comprising:
前記制御手段は、前記検出されたタンク内湯温が第1の所定値を下回った場合には前記高温側開閉弁を閉じることによって前記高温給湯経路を遮断し、前記検出されたタンク内湯温が第1の所定値より低い第2の所定値を下回った場合には前記混合側開閉弁を閉じることによって前記混合給湯経路を遮断することを特徴とする請求項1記載の貯湯式給湯機。   The control means shuts off the high temperature hot water supply path by closing the high temperature side on-off valve when the detected hot water temperature in the tank falls below a first predetermined value, and the detected hot water temperature in the tank 2. The hot water storage type hot water heater according to claim 1, wherein when the value falls below a second predetermined value lower than a predetermined value of 1, the mixed hot water supply path is shut off by closing the mixing-side on-off valve. 前記制御手段は、前記高温側開閉弁および前記混合側開閉弁の双方を閉じた場合に、前記給水経路からの水圧が前記貯湯タンク内に作用した状態で前記貯湯タンク内の水を前記加熱手段により加熱する加熱動作を開始することを特徴とする請求項2記載の貯湯式給湯機。   The control means, when both the high temperature side on-off valve and the mixing side on-off valve are closed, heats the water in the hot water storage tank while the water pressure from the water supply path is applied to the hot water storage tank. The hot water storage type water heater according to claim 2, wherein a heating operation for heating is started. 使用者が前記第1の所定値および前記第2の所定値をそれぞれ設定可能とする設定手段を備えることを特徴とする請求項2または3に記載の貯湯式給湯機。   The hot water storage type hot water supply apparatus according to claim 2 or 3, further comprising setting means that allows a user to set the first predetermined value and the second predetermined value, respectively. 前記タンク内湯温検出手段は、前記高温給湯経路を通る湯の温度を検出する第1の温度検出手段と、前記混合給湯経路を通る湯の温度を検出する第2の温度検出手段とを含んで構成されることを特徴とする請求項1乃至4の何れか1項記載の貯湯式給湯機。   The tank hot water temperature detecting means includes first temperature detecting means for detecting the temperature of hot water passing through the high temperature hot water supply path, and second temperature detecting means for detecting the temperature of hot water passing through the mixed hot water supply path. The hot water storage type water heater according to any one of claims 1 to 4, wherein the hot water storage type water heater is configured.
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Cited By (3)

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JP2014020666A (en) * 2012-07-18 2014-02-03 Daikin Ind Ltd Hot water supply device, and hot water supply system
JP2014020662A (en) * 2012-07-18 2014-02-03 Daikin Ind Ltd Hot water supply device
CN107401770A (en) * 2017-08-14 2017-11-28 河北建筑工程学院 Paddy electricity accumulation of heat amount control method, device and heating system

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JP2014020666A (en) * 2012-07-18 2014-02-03 Daikin Ind Ltd Hot water supply device, and hot water supply system
JP2014020662A (en) * 2012-07-18 2014-02-03 Daikin Ind Ltd Hot water supply device
CN107401770A (en) * 2017-08-14 2017-11-28 河北建筑工程学院 Paddy electricity accumulation of heat amount control method, device and heating system

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