JP2009019802A5 - - Google Patents
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- JP2009019802A5 JP2009019802A5 JP2007182057A JP2007182057A JP2009019802A5 JP 2009019802 A5 JP2009019802 A5 JP 2009019802A5 JP 2007182057 A JP2007182057 A JP 2007182057A JP 2007182057 A JP2007182057 A JP 2007182057A JP 2009019802 A5 JP2009019802 A5 JP 2009019802A5
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 209
- 238000010438 heat treatment Methods 0.000 claims description 9
- 238000003303 reheating Methods 0.000 description 16
- 238000010586 diagram Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 1
- 238000000605 extraction Methods 0.000 description 1
- 239000008236 heating water Substances 0.000 description 1
Description
本発明は、熱交換器に接続される追焚き熱源側循環管路を備えた貯湯式給湯機に関するものである。 The present invention relates to a hot-water storage type water heater having a additionally fired-out heat-source-side circulation path connected to the heat exchanger.
特許文献1に記載の貯湯式給湯機は、貯湯タンクの上部にタンク湯取出口を設けた一次側循環回路に、暖房用熱交換器と、一次側循環ポンプと、一次側循環回路の循環方向に開く逆止弁と、を備えた構成になっている。 The hot water storage type hot water heater described in Patent Document 1 includes a heating circuit, a primary side circulation pump, and a circulation direction of the primary side circulation circuit in a primary side circulation circuit having a tank hot water outlet provided in an upper part of a hot water storage tank. And a check valve that opens at a distance.
しかしながら、上記特許文献1では、一次側循環回路のタンク湯取出口が貯湯タンクの上部に上向きに設けられているため、貯湯タンク内が湯水で満たされたときに一次側循環回路には空気が滞留しやすい。この一次側循環回路に滞留した空気は貯湯タンク内に満たされた湯水によって逃げ場を遮断されるため、一次側循環回路に滞留した空気をタンク湯取出口から吐出させることは困難であった。また、一次側循環ポンプを作動させても、一次側循環回路に滞留した空気および一次側循環回路の配管抵抗によっては、タンク湯取出口から呼び水を導入できず、一次側循環ポンプが空運転してしまうという問題があった。 However, in Patent Document 1, the tank hot water outlet of the primary side circulation circuit is provided upward at the upper portion of the hot water storage tank, so that when the hot water storage tank is filled with hot water, air enters the primary side circulation circuit. Easy to stay. Since the air staying in the primary side circulation circuit is blocked from escape by the hot water filled in the hot water storage tank, it is difficult to discharge the air staying in the primary side circulation circuit from the tank hot water outlet. Even if the primary circulation pump is activated, priming water cannot be introduced from the tank hot water outlet due to the air accumulated in the primary circulation circuit and the piping resistance of the primary circulation circuit. There was a problem that.
本発明は、上記に鑑みてなされたものであって、追焚き循環ポンプが空運転することなく、貯湯タンクの上部から追焚き熱源側循環管路への呼び水を可能とする貯湯式給湯機を得ることを目的とする。 The present invention was made in view of the above, without additionally fired-out circulation pump is dry-running, hot water storage type hot water to allow priming of the upper portion of the hot water storage tank to add fired-out heat-source-side circulation pipe The aim is to get a chance.
上述した課題を解決し、目的を達成するために、本発明は、加熱手段によって内部の水を加熱して得た湯水を内部に貯留する貯湯タンクと、前記貯湯タンクに貯留された湯水を前記貯湯タンク筒状部の上部に設けられたタンク湯取出口から取水して前記貯湯タンクの中部から下部の間に戻す追焚き熱源側循環管路と、この追焚き熱源側循環管路に湯水を循環させる追焚き循環ポンプと、前記追焚き熱源側循環管路の湯水循環方向に開く逆止弁と、前記追焚き熱源側循環管路の途中に設けられて前記循環される湯水を熱交換の高温側に用いる熱交換器とを備える貯湯式給湯機において、前記追焚き熱源側循環管路は、前記タンク湯取出口から水平または下側斜めに取り出すことを特徴とする。 In order to solve the above-described problems and achieve the object, the present invention provides a hot water storage tank for storing hot water obtained by heating internal water by a heating means, and hot water stored in the hot water storage tank. a heat source-side circulation line-out add-fired back between the lower the middle of the hot water storage tank and intake from the tank water takeout port provided in the upper portion of the hot water storage tank tubular portion, in the add-fired-out heat-source-side circulation pipe a circulation pump-out add-fired circulating the hot water, the a check valve that opens hot water circulation direction of the add-fired-out heat-source-side circulation line, is the circulation provided in the middle of the add-fired-out heat-source-side circulation pipe in hot-water storage type water heater and a heat exchanger using hot water to the hot side of the heat exchanger, the add-fired-out heat-source-side circulation line is characterized by retrieving from the tank water takeout port in the horizontal or the lower diagonal .
本発明によれば、追焚き熱源側循環管路は、貯湯タンクの筒状部の上部に設けたタンク湯取出口から、水平または下側斜めに取り出しているので、貯湯タンク内の湯水の水位が上昇してタンク湯取出口まで到達した際に、貯湯タンク内の湯水が追焚き熱源側循環管路に流入し、これと同時に追焚き熱源側循環管路内に滞留した空気がタンク湯取出口から貯湯タンク内に吐出されるので、貯湯タンク内の湯水の水位がタンク湯取出口の上方まで上昇したときには、追焚き熱源側循環管路内には滞留空気が存在せず、これにより追焚き循環ポンプが空運転することなく貯湯タンクの上部から追焚き熱源側循環管路への呼び水が可能になるという効果を奏する。 According to the present invention, add-fired-out heat-source-side circulation path, from the tank water takeout port provided in the upper portion of the cylindrical portion of the hot water storage tank, since the extraction horizontally or below the diagonal, the hot water in the hot water storage tank when the water level has reached the tank water takeout port rises, the air hot water in the hot water tank flows into the add-fired-out heat-source-side circulation line, staying at the same time to add fired-out heat-source-side circulation conduit since it discharged from the tank water takeout port in the hot water storage tank, when the hot water of the water level in the hot water storage tank rises to above the tank water takeout port is the add-fired-out heat-source-side circulation conduit there is no residence air an effect that thereby additionally fired-out circulation pump to allow priming of the upper portion of the hot water storage tank without idle operation to add fired-out heat-source-side circulation pipe.
以下に、本発明にかかる貯湯式給湯機の実施の形態を図面にもとづいて詳細に説明する。なお、この実施の形態によりこの発明が限定されるものではない。 DESCRIPTION OF EMBODIMENTS Embodiments of a hot water storage type water heater according to the present invention will be described below in detail with reference to the drawings. Note that the present invention is not limited to the embodiments.
実施の形態.
図1は、本発明にかかる貯湯式給湯機の装置構成を示す図であり、図2は貯湯タンクへの給水時の概略図であり、図3は追焚き熱源側循環管路への呼び水の概略図である。
Embodiment.
FIG. 1 is a diagram showing a device configuration of a hot water storage type hot water supply apparatus according to the present invention, FIG. 2 is a schematic diagram when water is supplied to a hot water storage tank, and FIG. 3 is a priming water to a recirculation heat source side circulation pipeline. FIG.
図1に示すように、貯湯式給湯機100は、湯水を貯留する貯湯タンク1と、貯湯タンク1内の水を加熱するヒートポンプユニット2と、貯湯タンク1の下部の低温水をヒートポンプユニット2に供給するヒートポンプ往き配管3と、ヒートポンプ往き配管3に設けられて貯湯タンク1の下部の低温水をヒートポンプユニット2に循環させる加熱循環ポンプ4と、ヒートポンプユニット2によって加熱された水を貯湯タンク1の上部に供給するヒートポンプ戻り配管5とを備え、ヒートポンプ往き配管3およびヒートポンプ戻り配管5は、湯水を貯湯タンク1とヒートポンプユニット2とに循環させる循環管路となっている。 As shown in FIG. 1, a hot water storage water heater 100 includes a hot water storage tank 1 for storing hot water, a heat pump unit 2 for heating water in the hot water storage tank 1, and low-temperature water at the lower part of the hot water storage tank 1 to the heat pump unit 2. The heat pump delivery pipe 3 to be supplied, the heating circulation pump 4 provided in the heat pump delivery pipe 3 to circulate the low temperature water below the hot water storage tank 1 to the heat pump unit 2, and the water heated by the heat pump unit 2 in the hot water storage tank 1 A heat pump return pipe 5 that is supplied to the upper part is provided, and the heat pump forward pipe 3 and the heat pump return pipe 5 are circulation pipes that circulate hot water into the hot water storage tank 1 and the heat pump unit 2.
また、貯湯式給湯機100は、貯湯タンク1に水源より水を供給する給水配管10と、給水配管10に設けられて水源からの元供給圧を減圧するための減圧弁11と、貯湯タンク1の上部の高温水を混合弁13に供給する出湯配管12と、給水配管10を経由して供給される水と出湯配管12を経由して供給される高温水を所定の混合比で混合し、所定温度に温度調整する混合弁13と、混合弁13により所定温度に温度調整された湯を供給する給湯配管14と、減圧弁11により減圧された水を貯湯タンク1の下部に導く給水配管20とを備える。 The hot water storage type hot water heater 100 includes a water supply pipe 10 that supplies water to the hot water storage tank 1 from a water source, a pressure reducing valve 11 that is provided in the water supply pipe 10 to reduce the original supply pressure from the water source, and the hot water storage tank 1. The hot water supplied to the mixing valve 13 and the hot water supplied via the hot water piping 12 and the hot water supplied via the hot water piping 12 at a predetermined mixing ratio, A mixing valve 13 that adjusts the temperature to a predetermined temperature, a hot water supply pipe 14 that supplies hot water adjusted to a predetermined temperature by the mixing valve 13, and a water supply pipe 20 that guides the water decompressed by the pressure reducing valve 11 to the lower part of the hot water storage tank 1. With.
さらに、貯湯式給湯機100は、浴槽水追焚きを可能とする追焚き熱源側循環管路6を備えている。追焚き熱源側循環管路6は、貯湯タンク1の筒状部の上部に設けたタンク湯取出口18から水平に取り出している。追焚き熱源側循環管路6には、熱交換器7と、貯湯タンク1の湯水を熱交換器7に循環させる追焚き循環ポンプ8と、追焚き熱源側循環方向に開く逆止弁9とが設けられ、追焚き熱源側循環管路6は、これら熱交換器7、追焚き循環ポンプ8、逆止弁9を経由して、貯湯タンク1の中部から下部の間に設けられたタンク湯戻り口19に接続される。ここで、熱交換器7は浴槽17内の低温水と追焚き熱源側循環管路6内の高温水を熱交換させることにより、浴槽17内の湯水を加温する熱交換器である。熱交換器7には、浴槽水循環管路15が浴槽17から接続されており、浴槽水循環管路15には浴槽17内の湯水を熱交換器7に循環させる浴槽水循環ポンプ16が設けられている。 Furthermore, the hot water storage type water heater 100 includes a reheating heat source side circulation pipe 6 that enables reheating of bathtub water. The reheating heat source side circulation pipeline 6 is taken out horizontally from a tank hot water outlet 18 provided at the upper part of the tubular portion of the hot water storage tank 1. In the additional heat source side circulation line 6, a heat exchanger 7, an additional circulation pump 8 that circulates the hot water in the hot water storage tank 1 to the heat exchanger 7, and a check valve 9 that opens in the additional heat source side circulation direction, The recirculation heat source side circulation line 6 is connected to the tank hot water provided between the middle portion and the lower portion of the hot water storage tank 1 via the heat exchanger 7, recirculation circulation pump 8, and check valve 9. Connected to the return port 19. Here, the heat exchanger 7 is a heat exchanger that heats the hot water in the bathtub 17 by exchanging heat between the low-temperature water in the bathtub 17 and the high-temperature water in the reheating heat source side circulation pipeline 6. A bathtub water circulation pipe 15 is connected to the heat exchanger 7 from a bathtub 17, and the bathtub water circulation pipe 15 is provided with a bathtub water circulation pump 16 that circulates hot water in the bathtub 17 to the heat exchanger 7. .
次に、実施の形態の貯湯式給湯機100の動作について説明する。まず、給水配管10から給水された水は減圧弁11により一定の圧力に減圧されて給水配管20を介して貯湯タンク1に給水される。貯湯タンク1内に給水された水は、加熱循環ポンプ4の動作により、貯湯タンク1の下部からヒートポンプ往き配管3を経由してヒートポンプユニット2に供給され、加熱される。加熱されて高温となった湯水はヒートポンプユニット2からヒートポンプ戻り配管5を経由して貯湯タンク1の上部に戻され、貯湯タンク1に貯留される。 Next, the operation of the hot water storage type water heater 100 of the embodiment will be described. First, water supplied from the water supply pipe 10 is reduced to a constant pressure by the pressure reducing valve 11 and supplied to the hot water storage tank 1 through the water supply pipe 20. The water supplied into the hot water storage tank 1 is supplied to the heat pump unit 2 from the lower part of the hot water storage tank 1 via the heat pump outgoing pipe 3 and heated by the operation of the heating circulation pump 4. Hot water heated to a high temperature is returned from the heat pump unit 2 to the upper portion of the hot water storage tank 1 via the heat pump return pipe 5 and stored in the hot water storage tank 1.
また、給湯栓(図示せず)を開くことによって、給水配管10を経由して供給される水と出湯配管12を経由して供給される高温水が混合弁13により所定の混合比で混合され、所定温度に調整された湯水が給湯配管14から給湯される。 Further, by opening a hot-water tap (not shown), water supplied via the water supply pipe 10 and high-temperature water supplied via the hot water supply pipe 12 are mixed at a predetermined mixing ratio by the mixing valve 13. The hot water adjusted to a predetermined temperature is supplied from the hot water supply pipe 14.
次に、浴槽水の追焚き動作について説明する。浴槽水を加温するには、浴槽水循環ポンプ16を動作させ、浴槽17内の低温水を、浴槽水循環管路15に導き、熱交換器7を経由させて浴槽17内に戻す。それと同時に追焚き循環ポンプ8を動作させ、貯湯タンク1内の高温水を、貯湯タンク1の筒状部の上部の追焚き熱源側循環管路6のタンク湯取出口18から取り出し、熱交換器7を経由させて貯湯タンク1の中部から下部の間の追焚き熱源側循環管路6のタンク湯戻り口19から貯湯タンク1内に戻す。この時、熱交換器7では貯湯タンク1からの高温水と浴槽17からの低温水との温度差によって熱交換が行われ、浴槽17からの低温水は熱を受熱して昇温した状態で浴槽17に戻され、貯湯タンク1の上部からの高温水は熱を奪われ温度が低下した状態で貯湯タンク1の中部から下部の間に戻される。 Next, the bath water pursuit operation will be described. In order to heat the bathtub water, the bathtub water circulation pump 16 is operated, the low-temperature water in the bathtub 17 is guided to the bathtub water circulation pipe 15, and returned to the bathtub 17 through the heat exchanger 7. At the same time, the recirculation circulation pump 8 is operated, and the high-temperature water in the hot water storage tank 1 is taken out from the tank hot water outlet 18 of the recirculation heat source side circulation pipe 6 at the upper part of the tubular portion of the hot water storage tank 1, and heat exchanger 7 is returned to the hot water storage tank 1 through the tank hot water return port 19 of the recirculation heat source side circulation pipe 6 between the middle part and the lower part of the hot water storage tank 1. At this time, in the heat exchanger 7, heat exchange is performed by the temperature difference between the hot water from the hot water storage tank 1 and the low-temperature water from the bathtub 17, and the low-temperature water from the bathtub 17 receives heat and rises in temperature. The hot water from the upper part of the hot water storage tank 1 is returned to the bathtub 17 and returned between the middle part and the lower part of the hot water storage tank 1 in a state where the heat is removed and the temperature is lowered.
つづいて、追焚き熱源側循環管路6への呼び水について説明する。まず、図2に示すように、給水配管10から貯湯タンク1内への給水で、水位が追焚き熱源側循環管路6のタンク湯戻り口19まで到達した場合は、逆止弁9により貯湯タンク1の下部から追焚き熱源側循環管路6への水の流入を防止する。その後、図3に示すように貯湯タンク1内の水位がタンク湯取出口18まで到達した場合は、タンク湯取出口18から追焚き熱源側循環管路6に貯湯タンク1内の水が流入を開始する。ここで、追焚き熱源側循環管路6は、タンク湯取出口18から水平に取り出しているので、追焚き熱源側循環管路6内の空気は、タンク湯取出口18から流入してくる貯湯タンク1内の水と入れ替わるように、タンク湯取出口18から貯湯タンク内に吐出される。したがって、貯湯タンク1内の湯水の水位がタンク湯取出口18の上方まで上昇したときには、追焚き熱源側循環管路6内には滞留空気が存在せず、これにより追焚き循環ポンプ8が空運転することなく貯湯タンク1の上部から追焚き熱源側循環管路6への呼び水が可能となる。 Subsequently, priming water to the reheating heat source side circulation pipe 6 will be described. First, as shown in FIG. 2, when the water level reaches the tank hot water return port 19 of the heat source side circulation pipe 6 by water supply from the water supply pipe 10 into the hot water storage tank 1, The inflow of water from the lower part of the tank 1 to the additional heat source side circulation pipe 6 is prevented. After that, as shown in FIG. 3, when the water level in the hot water storage tank 1 reaches the tank hot water outlet 18, the water in the hot water tank 1 flows from the tank hot water outlet 18 into the additional heat source side circulation pipe 6. Start. Here, since the reheating heat source side circulation pipe 6 is taken out horizontally from the tank hot water outlet 18, the air in the reheating heat source side circulation pipe 6 is stored in hot water flowing in from the tank hot water outlet 18. The water is discharged from the tank hot water outlet 18 into the hot water storage tank so that the water in the tank 1 is replaced. Therefore, when the hot water of the water level in the hot water tank 1 is increased to above the tank water takeout port 18, the reheating heat-source-side circulation pipe 6 there is no residence air, thereby-out add-fired circulating pump 8 The priming water from the upper part of the hot water storage tank 1 to the reheating heat source side circulation pipeline 6 can be performed without idling.
このように本実施の形態においては、追焚き熱源側循環管路6は、タンク湯取出口18から水平に取り出しているので、追焚き循環ポンプ8が空運転することなく追焚き熱源側循環管路6への呼び水が可能な貯湯式給湯機を提供できる。 In this way, in the present embodiment, the reheating heat source side circulation pipe 6 is taken out horizontally from the tank hot water outlet 18, so that the reheating heat pump side circulation pipe 8 does not run idle. A hot water storage type water heater capable of priming water to the road 6 can be provided.
なお、本実施の形態では、追焚き熱源側循環管路6をタンク湯取出口18から水平に取り付けているが、タンク湯取出口18から所望の角度で下側斜めに取り付けてもよい。または、タンク湯取出口18から下向きの曲線を描くように取り付けてもよい。さらに、熱交換器7を追焚き以外の室内暖房などの他のシステムの熱交換に用いてもよい。 In this embodiment, the reheating heat source side circulation conduit 6 is attached horizontally from the tank hot water outlet 18 but may be attached obliquely downward from the tank hot water outlet 18 at a desired angle. Alternatively, it may be attached so as to draw a downward curve from the tank hot water outlet 18. Further, the heat exchanger 7 may be used for heat exchange in other systems such as indoor heating other than reheating.
本発明にかかる貯湯式給湯機は、熱交換器を備えた貯湯式給湯機に有用である。 The hot water storage type water heater according to the present invention is useful for a hot water storage type water heater provided with a heat exchanger.
1 貯湯タンク
2 ヒートポンプユニット
3 ヒートポンプ往き配管
4 加熱循環ポンプ
5 ヒートポンプ戻り配管
6 追焚き熱源側循環管路
7 熱交換器
8 追焚き循環ポンプ
9 逆止弁
10 給水配管
11 減圧弁
12 出湯配管
13 混合弁
14 給湯配管
15 浴槽水循環管路
16 浴槽水循環ポンプ
17 浴槽
18 タンク湯取出口
19 タンク湯戻り口
20 給水配管
100 貯湯式給湯機
DESCRIPTION OF SYMBOLS 1 Hot water storage tank 2 Heat pump unit 3 Heat pump outgoing piping 4 Heating circulation pump 5 Heat pump return piping 6 Reheating heat source side circulation piping 7 Heat exchanger 8 Reheating circulation pump 9 Check valve 10 Water supply piping 11 Pressure reducing valve 12 Hot water piping 13 Mixing Valve 14 Hot water supply pipe 15 Bathtub water circulation line 16 Bathtub water circulation pump 17 Bathtub 18 Tank hot water outlet 19 Tank hot water return port 20 Water supply pipe 100 Hot water storage type water heater
Claims (1)
前記貯湯タンクに貯留された湯水を前記貯湯タンク筒状部の上部に設けられたタンク湯取出口から取水して前記貯湯タンクの中部から下部の間に戻す追焚き熱源側循環管路と、
この追焚き熱源側循環管路に湯水を循環させる追焚き循環ポンプと、
前記追焚き熱源側循環管路の湯水循環方向に開く逆止弁と、
前記追焚き熱源側循環管路の途中に設けられて前記循環される湯水を熱交換の高温側に用いる熱交換器と、
を備える貯湯式給湯機において、
前記追焚き熱源側循環管路は、前記タンク湯取出口から水平または下側斜めに取り出すことを特徴とする貯湯式給湯機。 A hot water storage tank for storing hot water obtained by heating the internal water by heating means,
A heat source-side circulation line-out add-fired back between the lower the middle of said hot water reserved in the hot water storage tank and intake from the tank water takeout port provided in an upper portion of the hot water storage tank cylindrical portion hot water storage tank,
A circulation pump-out add-fired circulating the hot water in the add-fired-out heat-source-side circulation path,
A check valve that opens hot water circulation direction of the add-fired-out heat-source-side circulation path,
A heat exchanger using hot water to the be the circulating provided in the middle of the add-fired-out heat-source-side circulation pipe to the hot side of the heat exchanger,
In a hot water storage water heater equipped with
The add-fired-out heat-source-side circulation path, hot-water storage type water heater, characterized in that removal from the tank water takeout port in the horizontal or the lower diagonal.
Priority Applications (1)
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JP2007182057A JP2009019802A (en) | 2007-07-11 | 2007-07-11 | Storage type water heater |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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JP2007182057A JP2009019802A (en) | 2007-07-11 | 2007-07-11 | Storage type water heater |
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JP2009019802A JP2009019802A (en) | 2009-01-29 |
JP2009019802A5 true JP2009019802A5 (en) | 2009-12-10 |
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JP2007182057A Pending JP2009019802A (en) | 2007-07-11 | 2007-07-11 | Storage type water heater |
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EP2749859B1 (en) | 2008-09-30 | 2018-04-18 | NGK Spark Plug Co., Ltd. | Pressure sensor |
JP5982636B2 (en) * | 2012-04-02 | 2016-08-31 | パナソニックIpマネジメント株式会社 | Heat pump water heater |
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JP2005345041A (en) * | 2004-06-04 | 2005-12-15 | Corona Corp | Hot water storage type hot water supply and heating apparatus |
JP4205113B2 (en) * | 2005-03-31 | 2009-01-07 | 株式会社西原衛生工業所 | Circulating hot water supply system |
JP4720399B2 (en) * | 2005-09-22 | 2011-07-13 | パナソニック株式会社 | Heat pump water heater |
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2007
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