JP5989481B2 - Hot water storage water heater - Google Patents

Hot water storage water heater Download PDF

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JP5989481B2
JP5989481B2 JP2012209307A JP2012209307A JP5989481B2 JP 5989481 B2 JP5989481 B2 JP 5989481B2 JP 2012209307 A JP2012209307 A JP 2012209307A JP 2012209307 A JP2012209307 A JP 2012209307A JP 5989481 B2 JP5989481 B2 JP 5989481B2
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hot water
primary
water supply
heat exchanger
primary side
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JP2014062716A (en
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和也 佐山
和也 佐山
靖 阿久津
靖 阿久津
正敏 米山
正敏 米山
信人 諸橋
信人 諸橋
祥伍 富澤
祥伍 富澤
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Corona Corp
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Description

本発明は、貯湯タンク内の湯を給湯外熱交換器の一次側に循環させて二次側を流れる流水を加熱して給湯する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 hot water heater that circulates hot water in a hot water storage tank to a primary side of a hot water supply external heat exchanger and heats flowing water flowing on a secondary side to supply hot water.

従来よりこの種の給湯外熱交換器を有した貯湯式給湯機においては、特許文献1のように、湯水を貯湯する貯湯タンクと、前記貯湯タンク内の湯水を加熱する加熱手段と、一次側を循環する前記貯湯タンク内の湯水を熱源として二次側の流水を加熱して給湯する給湯外熱交換器と、前記貯湯タンク上部と前記給湯外熱交換器の一次側入口とを接続する一次側往き管と、前記給湯外熱交換器の一次側出口と前記貯湯タンクとを接続する一次側戻り管と、前記一次側戻り管の途中に設けられて前記貯湯タンク内の湯水を前記給湯外熱交換器の一次側に循環させる一次側ポンプと、前記給湯外熱交換器の二次側入口に接続される給水管と、前記給湯外熱交換器の二次側出口に接続される給湯管とを備えたものがあった。   Conventionally, in a hot water storage type water heater having an external heat exchanger of this type, as in Patent Document 1, a hot water storage tank for storing hot water, a heating means for heating the hot water in the hot water storage tank, and a primary side A hot water supply external heat exchanger that heats and supplies hot water flowing from the hot water in the hot water storage tank circulating through the hot water tank, and a primary side connecting the upper part of the hot water storage tank and the primary inlet of the hot water supply external heat exchanger A side return pipe, a primary return pipe connecting the primary outlet of the hot water supply external heat exchanger and the hot water storage tank, and a hot water in the hot water storage tank provided outside the hot water supply provided in the middle of the primary return pipe. A primary side pump that circulates to the primary side of the heat exchanger, a water supply pipe connected to the secondary side inlet of the hot water supply external heat exchanger, and a hot water supply pipe connected to the secondary side outlet of the hot water supply external heat exchanger There was something with.

特開2012−107843号公報JP 2012-107843 A

しかし、このような従来のものでは、給湯要求熱量が小さく、かつ熱源となる貯湯温度が高い場合に、給湯外熱交換器の一次側の流量を少なくする必要があり、一次側ポンプの最低作動流量の制約によって給湯設定温度より高い給湯温度で給湯されてしまう、あるいは給湯温度が不安定となる場合があった。   However, in such a conventional type, when the required amount of hot water supply heat is small and the hot water storage temperature as a heat source is high, it is necessary to reduce the flow rate on the primary side of the hot water external heat exchanger, and the minimum operation of the primary side pump There are cases where hot water is supplied at a hot water supply temperature higher than the hot water supply set temperature due to flow rate restrictions, or the hot water supply temperature becomes unstable.

そこで、本発明は上記課題を解決するために、湯水を貯湯する貯湯タンクと、前記貯湯タンク内の湯水を加熱する加熱手段と、一次側を循環する前記貯湯タンク内の湯水を熱源として二次側の流水を加熱して給湯する給湯外熱交換器と、前記貯湯タンク上部と前記給湯外熱交換器の一次側入口とを接続する一次側往き管と、前記給湯外熱交換器の一次側出口と前記貯湯タンクとを接続する一次側戻り管と、前記一次側戻り管の途中に設けられて前記貯湯タンク内の湯水を前記給湯外熱交換器の一次側に循環させる一次側ポンプと、前記給湯外熱交換器の二次側入口に接続される給水管と、前記給湯外熱交換器の二次側出口に接続される給湯管と、前記給湯外熱交換器の二次側出口温度を検出する二次出口温度センサと、前記二次出口温度が目標温度に一致するように前記一次側ポンプの回転数を制御する制御手段と、を備えた貯湯式給湯機において、前記一次側ポンプの下流側の前記一次側戻り管から分岐して前記一次側往き管へ接続されて前記給湯外熱交換器の一次側に前記一次側ポンプの下流からの湯水を合流させる再循環管と、前記給湯外熱交換器の一次側に流入する前記再循環管からの湯水と前記一次側往き管からの湯水との混合比率を調整する混合比調整弁と、を設け、前記制御手段は、前記一次側ポンプの回転数が所定の最小回転数となり、かつ前記二次側出口温度が前記目標温度を上回ったら、前記一次側ポンプの回転数を前記所定の最小回転数に維持すると共に、前記混合比調整弁の混合比を前記二次側出口温度が前記目標温度と一致するように制御し、前記混合比調整弁の混合比が高温側の比率が大きい所定比率となり、かつ前記二次側出口温度が前記目標温度を下回ったら、前記混合比調整弁の混合比を固定すると共に、前記二次出口温度が前記目標温度に一致するように前記一次側ポンプの回転数を制御するようにした。 Therefore, in order to solve the above-described problems, the present invention provides a hot water storage tank for storing hot water, heating means for heating the hot water in the hot water storage tank, and hot water in the hot water storage tank circulating in the primary side as a heat source as a secondary source. A hot water external heat exchanger that heats and supplies hot water to the hot water, a primary forward pipe that connects the upper part of the hot water storage tank and the primary inlet of the hot water external heat exchanger, and a primary side of the hot water external heat exchanger A primary side return pipe connecting an outlet and the hot water storage tank, a primary side pump provided in the middle of the primary side return pipe for circulating hot water in the hot water storage tank to a primary side of the hot water supply external heat exchanger, A hot water supply pipe connected to a secondary side inlet of the hot water supply external heat exchanger, a hot water supply pipe connected to a secondary side outlet of the hot water supply external heat exchanger, and a secondary side outlet temperature of the hot water supply external heat exchanger A secondary outlet temperature sensor for detecting the temperature and the secondary outlet temperature And a control means for controlling the rotational speed of the primary pump so as to coincide with the temperature, in a hot water storage type water heater, branched from the primary return pipe downstream of the primary pump, A recirculation pipe connected to a pipe to join hot water from a downstream side of the primary pump to the primary side of the hot water supply external heat exchanger, and a recirculation pipe flowing into the primary side of the hot water supply heat exchanger A mixing ratio adjustment valve that adjusts a mixing ratio of hot water and hot water from the primary-side forward pipe, and the control means has a rotation speed of the primary-side pump at a predetermined minimum rotation speed, and the secondary When the side outlet temperature exceeds the target temperature, the rotational speed of the primary pump is maintained at the predetermined minimum rotational speed, and the mixing ratio of the mixing ratio adjusting valve is set so that the secondary outlet temperature is equal to the target temperature. Control to match and mix When the mixing ratio of the regulating valve is a predetermined ratio in which the ratio on the high temperature side is large and the secondary side outlet temperature is lower than the target temperature, the mixing ratio of the mixing ratio regulating valve is fixed and the secondary outlet temperature is The rotational speed of the primary pump is controlled so as to match the target temperature .

また、湯水を貯湯する貯湯タンクと、前記貯湯タンク内の湯水を加熱する加熱手段と、一次側を循環する前記貯湯タンク内の湯水を熱源として二次側の流水を加熱して給湯する給湯外熱交換器と、前記貯湯タンク上部と前記給湯外熱交換器の一次側入口とを接続する一次側往き管と、前記給湯外熱交換器の一次側出口と前記貯湯タンクとを接続する一次側戻り管と、前記一次側戻り管の途中に設けられて前記貯湯タンク内の湯水を前記給湯外熱交換器の一次側に循環させる一次側ポンプと、前記給湯外熱交換器の二次側入口に接続される給水管と、前記給湯外熱交換器の二次側出口に接続される給湯管とを備えた貯湯式給湯機において、一次側ポンプの下流側の一次側戻り管から分岐して一次側往き管へ接続されて給湯外熱交換器の一次側に一次側ポンプの下流からの湯水を合流させる再循環管と、給湯外熱交換器の一次側に流入する湯水に再循環管からの湯水を合流させるための開閉弁と、を設け、前記一次側ポンプの回転数が第1所定回転数以下となったら、前記再循環管からの湯水を前記給湯外熱交換器の一次側に流入するように前記開閉弁を開くようにした。 Also, a hot water storage tank for storing hot water, heating means for heating the hot water in the hot water storage tank, and hot water outside the hot water supply for supplying hot water by heating the secondary water using the hot water in the hot water tank circulating in the primary side as a heat source A primary side connecting the primary side outlet pipe connecting the heat exchanger, the hot water storage tank upper part and the primary inlet of the hot water external heat exchanger, and the primary outlet of the hot water external heat exchanger and the hot water storage tank A return pipe, a primary pump provided in the middle of the primary return pipe to circulate hot water in the hot water storage tank to a primary side of the hot water supply external heat exchanger, and a secondary inlet of the hot water supply external heat exchanger In the hot water storage type hot water heater having a hot water supply pipe connected to the secondary side outlet of the hot water supply external heat exchanger, a branch from a primary return pipe downstream of the primary pump Connected to the primary side forward pipe to the primary side of the hot water supply external heat exchanger A recirculation pipe for combining the hot water from the downstream following side pump, opening and closing valve for merging the hot water from the recirculation tube to the hot water flowing into the primary side of the hot water out of the heat exchanger, the provided, the primary side When the number of rotations of the pump is equal to or less than the first predetermined number of rotations, the on-off valve is opened so that hot water from the recirculation pipe flows into the primary side of the hot water supply external heat exchanger .

また、前記一次側ポンプの回転数が第1所定回転数より高い第2所定回転数以上となったら、前記再循環管からの湯水を前記給湯外熱交換器の一次側に流入させないよう前記開閉弁を閉じるようにした。   In addition, when the rotational speed of the primary side pump becomes equal to or higher than a second predetermined rotational speed that is higher than the first predetermined rotational speed, the opening / closing is prevented so that hot water from the recirculation pipe does not flow into the primary side of the hot water supply external heat exchanger. The valve was closed.

本発明によれば、給湯外熱交換器の一次側から流出した放熱後の湯水を給湯外熱交換器の一次側に再循環させるので、給湯外熱交換器の一次側に供給する湯水の温度を貯湯温度が高くとも給湯水の加熱に必要な温度まで低下させることができ、給湯要求熱量が小さい時でも、所望の給湯設定温度の湯水を安定して給湯することができる。   According to the present invention, since the hot water after heat dissipation flowing out from the primary side of the hot water supply heat exchanger is recirculated to the primary side of the hot water supply heat exchanger, the temperature of the hot water supplied to the primary side of the hot water supply heat exchanger Even when the hot water storage temperature is high, the hot water can be lowered to a temperature required for heating the hot water, and hot water at a desired hot water supply set temperature can be stably supplied even when the required amount of hot water supply is small.

第1の実施形態の概略構成図Schematic configuration diagram of the first embodiment 第1の実施形態の制御ブロック図Control block diagram of the first embodiment 第2の実施形態の概略構成図Schematic configuration diagram of the second embodiment 第2の実施形態の制御ブロック図Control block diagram of the second embodiment

<第1の実施形態>
次に、本発明の第1の実施形態の貯湯式給湯機を図面に基づいて説明する。
1は湯水を貯湯する貯湯タンク2を備えたタンクユニット、3は貯湯タンク2内の湯水を熱源として給水を加熱するためのプレート式熱交換器よりなる給湯外熱交換器、4は貯湯タンク2内の湯水を給湯外熱交換器3の一次側に循環させる一次側循環回路で、この一次側循環回路4は、給湯外熱交換器3の一側入口3aと貯湯タンク2上部とを接続する一次側往き管5と、給湯外熱交換器3の一次側出口3bと貯湯タンク2下部とを接続する一次側戻り管6とから構成され、一次側戻り管6途中には、貯湯タンク2上部から取り出した高温湯を給湯外熱交換器3の一次側に循環させる一次側ポンプ7が設けられている。
<First Embodiment>
Next, a hot water storage type water heater according to a first embodiment of the present invention will be described with reference to the drawings.
1 is a tank unit having a hot water storage tank 2 for storing hot water, 3 is a hot water external heat exchanger composed of a plate heat exchanger for heating the hot water in the hot water tank 2 as a heat source, and 4 is a hot water tank 2. The primary side circulation circuit 4 circulates the hot water inside the hot water supply outside heat exchanger 3 to the primary side, and the primary side circulation circuit 4 connects the one side inlet 3 a of the hot water supply outside heat exchanger 3 and the upper part of the hot water storage tank 2. The primary side return pipe 5 is composed of a primary side return pipe 6 that connects the primary side outlet 3b of the hot water supply external heat exchanger 3 and the lower part of the hot water storage tank 2, and the upper part of the hot water storage tank 2 is in the middle of the primary side return pipe 6. A primary pump 7 is provided for circulating the hot water taken out from the primary side of the hot water supply external heat exchanger 3.

8は給湯外熱交換器3の二次側入口3cに接続される給水管、9は給湯外熱交換器3の二次側出口3dと給湯栓10とを接続する給湯管である。ここで、給水管8は市水から減圧弁を介することなく給湯外熱交換器3に直接接続されているものである。   8 is a water supply pipe connected to the secondary side inlet 3 c of the hot water supply external heat exchanger 3, and 9 is a hot water supply pipe connecting the secondary side outlet 3 d of the hot water supply external heat exchanger 3 and the hot water tap 10. Here, the water supply pipe 8 is directly connected from the city water to the hot water supply external heat exchanger 3 without going through the pressure reducing valve.

ここで、給湯外熱交換器3は、公知のプレート式熱交換器を立てた姿勢でタンクユニット1内に配置固定されており、一面のエンドプレートの下部に一次側入口3aと二次側出口3dとが配置され、また同一面のエンドプレートの上部に一次側出口3bと二次側入口3cとが配置され、一次側と二次側とが略対向流で熱交換するものである。なお、この給湯外熱交換器3としては、プレート式熱交換器に限定されるものではない。   Here, the hot water supply external heat exchanger 3 is arranged and fixed in the tank unit 1 in a posture in which a known plate type heat exchanger is set up, and a primary side inlet 3a and a secondary side outlet are provided at the lower part of one end plate. 3d is arranged, and the primary side outlet 3b and the secondary side inlet 3c are arranged at the upper part of the end plate on the same surface, and the primary side and the secondary side exchange heat in a substantially opposite flow. The hot water supply external heat exchanger 3 is not limited to a plate heat exchanger.

11は貯湯タンク2内の湯水を加熱する加熱手段としてのヒートポンプユニット、12は貯湯タンク2内の湯水をヒートポンプユニット11に循環させる加熱循環回路で、この加熱循環回路12は、ヒートポンプユニット11の入口側と貯湯タンク2下部とを接続する加熱往き管13と、ヒートポンプユニット11の出口側と貯湯タンク2上部とを接続する加熱戻り管14とから構成され、加熱往き管13途中には、貯湯タンク2下部から取り出した湯水をヒートポンプユニット11の冷媒水熱交換器15の水側に循環させる加熱循環ポンプ16が設けられているものである。   11 is a heat pump unit as a heating means for heating the hot water in the hot water storage tank 2, and 12 is a heating circulation circuit for circulating the hot water in the hot water storage tank 2 to the heat pump unit 11, which is connected to the inlet of the heat pump unit 11. And a heating return pipe 14 connecting the outlet side of the heat pump unit 11 and the upper part of the hot water storage tank 2. The hot water storage tank 13 is located in the middle of the heating forward pipe 13. 2 A heating circulation pump 16 for circulating hot water taken out from the lower part to the water side of the refrigerant water heat exchanger 15 of the heat pump unit 11 is provided.

17は冷媒を圧縮する圧縮機、18は冷媒の圧力を減圧膨張する膨張弁、19は液冷媒を蒸発させる蒸発器、20は蒸発器19へ熱源となる外気を送風する送風機、21は冷媒水熱交換器15の水側に流入する貯湯タンク2からの湯水の温度を検出する入水温度センサ、22は冷媒水熱交換器15の水側から流出するヒートポンプユニット11で沸き上げられた湯水の温度を検出する沸き上げ温度センサ、23は外気温度を検出する外気温度センサで、ヒートポンプユニット11は蒸発器19で吸熱した冷媒を圧縮機17で圧縮して冷媒水熱交換器15を介して水を加熱するようにしているものである。   17 is a compressor that compresses refrigerant, 18 is an expansion valve that decompresses and expands the pressure of the refrigerant, 19 is an evaporator that evaporates liquid refrigerant, 20 is a blower that blows outside air as a heat source to the evaporator 19, and 21 is refrigerant water. An incoming water temperature sensor 22 detects the temperature of hot water from the hot water storage tank 2 that flows into the water side of the heat exchanger 15, and 22 is the temperature of hot water boiled up by the heat pump unit 11 that flows out from the water side of the refrigerant water heat exchanger 15. The boiling temperature sensor 23 detects the outside air temperature, and the outside air temperature sensor 23 detects the outside air temperature. The heat pump unit 11 compresses the refrigerant absorbed by the evaporator 19 by the compressor 17 and supplies water via the refrigerant water heat exchanger 15. It is intended to be heated.

24は加熱戻り管14途中から分岐されて一次側戻り管6に接続される加熱分岐管、25は加熱戻り管14と加熱分岐管24の分岐点に設けられて、ヒートポンプユニット11からの湯水を貯湯タンク2上部に戻すか、加熱分岐管24および一次側戻り管6を介して貯湯タンク2下部に戻すかを切り替える加熱切り替え弁である。   Reference numeral 24 denotes a heating branch pipe branched from the middle of the heating return pipe 14 and connected to the primary return pipe 6, and 25 is provided at a branch point between the heating return pipe 14 and the heating branch pipe 24. This is a heating switching valve that switches between returning to the upper part of the hot water storage tank 2 or returning to the lower part of the hot water storage tank 2 via the heating branch pipe 24 and the primary return pipe 6.

26は一次側戻り管6の一次側ポンプ7下流側から分岐して一次側往き管5に接続された再循環管で、給湯外熱交換器3で熱交換して温度低下した一次側の湯水を再度給湯外熱交換器3へ循環させるものである。   Reference numeral 26 denotes a recirculation pipe branched from the downstream side of the primary pump 7 of the primary return pipe 6 and connected to the primary forward pipe 5. The primary hot water whose temperature has dropped due to heat exchange in the hot water supply external heat exchanger 3. Is circulated again to the hot water supply external heat exchanger 3.

27は給湯外熱交換器3の一次側に流入する再循環管26からの低温の湯水と一次側往き管5からの高温の湯水との混合比率を調整する混合比調節弁としての一次側混合弁で、一次側往き管5と再循環管26の合流点に設けられているものである。   Reference numeral 27 denotes a primary side mixing as a mixing ratio adjusting valve for adjusting a mixing ratio of the low temperature hot water from the recirculation pipe 26 flowing into the primary side of the hot water supply external heat exchanger 3 and the high temperature hot water from the primary side forward pipe 5. A valve is provided at the junction of the primary-side forward pipe 5 and the recirculation pipe 26.

28は給湯管9から分岐されて一次側往き管5途中に接続される補水管、29は補水管28途中に設けられて給水圧を減圧する減圧弁、30は一次側往き管5途中に接続され貯湯タンク2内の過圧を逃がす過圧逃がし弁である。   28 is a supplementary water pipe branched from the hot water supply pipe 9 and connected in the middle of the primary side outgoing pipe 5, 29 is a pressure reducing valve provided in the middle of the supplementary water pipe 28 to reduce the feed water pressure, and 30 is connected in the middle of the primary side outgoing pipe 5. This is an overpressure relief valve that releases overpressure in the hot water storage tank 2.

31は給水管8途中に設けられて給水温度を検出する給水温度センサ、32は給湯管9途中に設けられて給湯外熱交換器3の二次側出口の給湯温度(二次側出口温度)を検出する二次出口温度センサとしての給湯温度センサ、33は給湯管9途中に設けられて給湯流量を検出する給湯流量センサ、34は一次側往き管5と再循環管26の合流点と給湯外熱交換器3の間に設けられ給湯外熱交換器3へ流入する熱源としての湯水の温度を検出する一次入口温度センサ、35は一次側戻り管6途中に設けられ給湯外熱交換器3から流出する一次側の湯水の温度を検出する一次出口温度センサ、36は貯湯タンク2の側面上下に複数設けられてそれぞれ貯湯温度を検出する貯湯温度センサである。   A water supply temperature sensor 31 is provided in the middle of the water supply pipe 8 to detect the temperature of the water supply, and 32 is provided in the middle of the hot water supply pipe 9 and is a hot water supply temperature at the secondary outlet of the hot water supply external heat exchanger 3 (secondary outlet temperature). A hot water supply temperature sensor as a secondary outlet temperature sensor for detecting the hot water, a hot water supply flow sensor 33 for detecting a hot water supply flow rate provided in the middle of the hot water supply pipe 9, and a junction 34 and a hot water supply of the primary forward pipe 5 and the recirculation pipe 26. A primary inlet temperature sensor 35 is provided between the external heat exchangers 3 to detect the temperature of hot water as a heat source flowing into the hot water supply external heat exchanger 3. A hot water supply external heat exchanger 3 is provided in the middle of the primary return pipe 6. A plurality of primary outlet temperature sensors 36 for detecting the temperature of the primary hot water flowing out from the hot water storage tank 2 are provided above and below the side surface of the hot water storage tank 2 to detect the hot water storage temperature.

37は、所望の給湯設定温度を設定する操作スイッチや給湯設定温度を表示する表示部を備えたリモコンである。   Reference numeral 37 denotes a remote controller including an operation switch for setting a desired hot water supply set temperature and a display unit for displaying the hot water set temperature.

38は入水温度センサ21、沸き上げ温度センサ22、外気温度センサ23、給水温度センサ31、給湯温度センサ32、給湯流量センサ33、一次入口温度センサ34、一次出口温度センサ35、貯湯温度センサ36の検出値が入力され、一次側ポンプ7、ヒートポンプユニット11、加熱循環ポンプ16、圧縮機17、膨張弁18、送風機20、加熱切り替え弁25、一次側混合弁27の作動を制御すると共に、リモコン37と通信可能に接続された制御手段である。この制御手段38は、予め給湯機の作動を制御するためのプログラムが記憶されていると共に、演算、比較、記憶機能、時計機能を有しているものである。   Reference numeral 38 denotes an incoming water temperature sensor 21, a boiling temperature sensor 22, an outside air temperature sensor 23, a feed water temperature sensor 31, a hot water supply temperature sensor 32, a hot water supply flow rate sensor 33, a primary inlet temperature sensor 34, a primary outlet temperature sensor 35, and a hot water storage temperature sensor 36. The detected value is input, and the operation of the primary side pump 7, heat pump unit 11, heating circulation pump 16, compressor 17, expansion valve 18, blower 20, heating switching valve 25, primary side mixing valve 27 is controlled, and remote control 37 And a control means connected so as to be communicable with each other. The control means 38 stores in advance a program for controlling the operation of the water heater, and has a calculation, comparison, storage function, and clock function.

この制御手段38には、一次側ポンプ7の回転数を制御する一次側ポンプ制御手段39と、一次側混合弁27の開度を制御する一次側混合弁制御手段40とが設けられているものである。   The control means 38 is provided with a primary pump control means 39 for controlling the rotation speed of the primary pump 7 and a primary side mixing valve control means 40 for controlling the opening degree of the primary side mixing valve 27. It is.

一次側ポンプ制御手段39は、給湯外熱交換器3の二次側の目標温度としてのリモコン37で設定された給湯設定温度と給水温度センサ31で検出した給水温度と給湯流量センサ33で検出した給湯流量(熱交二次側流量)とから給湯要求熱量を算出し、給水温度から推定した給湯外熱交換器3の一次側出口温度(推定一次側出口温度)と給湯要求熱量とから給湯外熱交換器3の一次側を流通させる流量(熱交一次側流量)を算出し、この熱交一次側流量を一次側ポンプ7の回転数(指示回転数)に換算し、一次側ポンプ7の回転数が指示回転数となるように制御することで給湯温度が給湯設定温度となるようにフィードフォワード制御すると共に、一次側ポンプ7の実回転数が指示回転数に達すると、給湯設定温度と給湯温度センサ32で検出した給湯温度とから温度偏差を算出し、温度偏差から所定制御周期のPI演算によって一次側ポンプ7の回転数(指示回転数)を算出し、一次側ポンプ7の回転数が指示回転数となるように制御することで給湯温度が給湯設定温度となるようにフィードバック制御するものである。   The primary pump control means 39 detects the hot water supply temperature set by the remote controller 37 as the target temperature on the secondary side of the hot water supply external heat exchanger 3, the hot water temperature detected by the hot water temperature sensor 31, and the hot water flow rate sensor 33. Calculate the required amount of hot water supply from the hot water supply flow rate (heat exchange secondary side flow rate), and outside the hot water supply from the primary side outlet temperature (estimated primary side outlet temperature) of the hot water outside heat exchanger 3 estimated from the supply water temperature and the required hot water supply heat amount A flow rate (heat exchange primary side flow rate) flowing through the primary side of the heat exchanger 3 is calculated, and this heat exchange primary side flow rate is converted into the rotation speed (indicated rotation speed) of the primary side pump 7. Feed-forward control is performed so that the hot water supply temperature becomes the hot water supply set temperature by controlling the rotational speed to be the indicated rotational speed, and when the actual rotational speed of the primary pump 7 reaches the indicated rotational speed, With hot water temperature sensor 32 A temperature deviation is calculated from the supplied hot water temperature, and the rotation speed (instructed rotation speed) of the primary pump 7 is calculated from the temperature deviation by PI calculation of a predetermined control cycle. The rotation speed of the primary pump 7 is calculated as the instruction rotation speed. By performing such control, feedback control is performed so that the hot water supply temperature becomes the hot water supply set temperature.

また、一次側混合弁制御手段40は、一次側ポンプ制御手段39の指示する一次側ポンプ7の指示回転数が所定の最小回転数となり、かつ給湯温度センサ32で検出する給湯温度(二次側出口温度)が給湯設定温度(目標出口温度)を所定値(ここでは1℃)以上上回った状態を所定時間(ここでは1秒)継続したら、一次側ポンプ7の回転数を所定の最小回転数に維持するよう一次側ポンプ制御手段39に指示すると共に、給湯温度が給湯設定温度と一致するように一次側混合弁27の開度を制御し、その後、一次側混合弁27の開度が高温側100%の開度となり、かつ給湯温度が給湯設定温度を所定値(ここでは1℃)以上下回った状態を所定時間(ここでは1秒)継続したら、一次側混合弁27の開度を高温側100%の状態で固定すると共に、一次側ポンプ制御手段39に指示していた一次側ポンプ7の回転数を所定の最小回転数に維持させる指示を取り消して、給湯温度が給湯設定温度に一致するように一次側ポンプ7の回転数を制御させるようにしたものである。   Further, the primary side mixing valve control means 40 has a specified rotational speed of the primary pump 7 instructed by the primary pump control means 39 to a predetermined minimum rotational speed, and a hot water temperature (secondary side) detected by the hot water temperature sensor 32. If the state in which the outlet temperature) exceeds the hot water supply set temperature (target outlet temperature) by a predetermined value (here, 1 ° C.) or more continues for a predetermined time (here, 1 second), the rotational speed of the primary pump 7 is set to the predetermined minimum rotational speed. The primary side pump control means 39 is instructed to maintain the temperature at the same time, and the opening degree of the primary side mixing valve 27 is controlled so that the hot water supply temperature coincides with the hot water supply set temperature. If the hot water supply temperature continues below a predetermined value (here, 1 ° C.) or more for a predetermined time (here, 1 second), the opening of the primary side mixing valve 27 becomes high. Fixed with 100% side At the same time, the instruction for maintaining the rotational speed of the primary pump 7 at the predetermined minimum rotational speed, which has been instructed to the primary pump control means 39, is canceled, and the primary pump 7 so that the hot water supply temperature matches the hot water supply set temperature. The number of rotations is controlled.

<沸き上げ動作>
電力料金単価の安価な所定時間帯(深夜時間帯)の開始時刻になると、制御手段36はそれまでの給湯負荷量に見合う湯量を沸き上げ開始するべく、ヒートポンプユニット11と加熱循環ポンプ16を駆動開始して貯湯タンク2下部から取り出した湯水を沸き上げ設定温度まで加熱開始する。
<Boiling operation>
At the start time of a predetermined time zone (midnight time zone) at which the power unit price is cheap, the control means 36 drives the heat pump unit 11 and the heating circulation pump 16 so as to start boiling the hot water amount corresponding to the hot water supply load amount so far. The hot water taken out from the lower part of the hot water storage tank 2 is started and heated to the set temperature.

このとき、制御手段38は、沸き上げ温度センサ22が検出する沸き上げ温度が沸き上げ設定温度より低い所定温度未満の間は、加熱切り替え弁25を加熱分岐管24側にしておき、温度の低い湯が貯湯タンク2上部から流入して貯湯温度を低下してしまうことを防止し、沸き上げ温度が沸き上げ設定温度より低い所定温度以上にまで達したら、加熱切り替え弁25を貯湯タンク2上部側を連通するようにして沸き上げた湯を貯湯タンク2上部へ戻し、貯湯タンク2上部から沸き上げ設定温度の湯を積層状に貯湯する。   At this time, the control means 38 keeps the heating switching valve 25 on the heating branch pipe 24 side while the boiling temperature detected by the boiling temperature sensor 22 is lower than a predetermined temperature lower than the boiling setting temperature, and the temperature is low. When hot water is prevented from flowing in from the upper part of the hot water storage tank 2 to lower the hot water storage temperature, and the boiling temperature reaches a predetermined temperature lower than the boiling temperature, the heating switching valve 25 is placed on the upper side of the hot water tank 2. The hot water that has been boiled so as to communicate with each other is returned to the upper part of the hot water storage tank 2, and hot water at the boiling set temperature is stored in a stacked manner from the upper part of the hot water storage tank 2.

そして、最下部の貯湯温度センサ36が所定の沸き上げ終了判定温度を検出すると、制御手段38は、ヒートポンプユニット11と加熱循環ポンプ16を駆動停止して沸き上げ運転を終了する。   When the lowermost hot water storage temperature sensor 36 detects a predetermined boiling end determination temperature, the control means 38 stops driving the heat pump unit 11 and the heating circulation pump 16 and ends the boiling operation.

このとき、貯湯タンク2内の湯水の温度上昇に伴って貯湯されている湯水が膨張し、貯湯タンク2内の圧力が過圧逃がし弁30の設定圧力を超過すると過圧逃がし弁30が開いて膨張水が排水され、貯湯タンク2内の圧力が過圧逃がし弁30の設定圧力以下になると過圧逃がし弁30が閉じて排水が停止して、貯湯タンク2内を適正圧力に保つようにしている。   At this time, the hot water stored as the temperature of the hot water in the hot water tank 2 rises, and when the pressure in the hot water tank 2 exceeds the set pressure of the overpressure relief valve 30, the overpressure relief valve 30 opens. When the expanded water is drained and the pressure in the hot water storage tank 2 becomes equal to or lower than the set pressure of the overpressure relief valve 30, the overpressure relief valve 30 is closed and the drainage is stopped to keep the inside of the hot water storage tank 2 at an appropriate pressure. Yes.

そして、時間経過による貯湯タンク2内の湯水の自然放熱や後述する給湯に伴う貯湯タンク2内の湯水の温度低下に伴って貯湯されている湯水が収縮し、貯湯タンク2内の圧力が減圧弁29の設定圧力より低くなると減圧弁29を介して補水管28から市水が貯湯タンク2内に流入し、貯湯タンク2内の圧力が減圧弁29の設定圧力以上となると補水管28からの市水の流入が停止して貯湯タンク2内を適正圧力での満水状態に保つようにしている。   Then, the hot water stored in the hot water storage tank 2 contracts due to the natural heat dissipation of the hot water in the hot water storage tank 2 over time and the temperature drop of the hot water in the hot water storage tank 2 due to the hot water supply described later, and the pressure in the hot water storage tank 2 is reduced. When the pressure falls below the set pressure of 29, the city water flows into the hot water storage tank 2 from the refill water pipe 28 via the pressure reducing valve 29, and when the pressure in the hot water storage tank 2 becomes equal to or higher than the set pressure of the pressure reducing valve 29, The inflow of water stops and the hot water storage tank 2 is kept in a full water state at an appropriate pressure.

<給湯動作>
次に、給湯動作について説明すると、給湯栓10が開かれると、給湯外熱交換器3の二次側に給水管8から市水が流入し、給湯外熱交換器3の二次側を通過した湯水が給湯管9から給湯栓10に向けて流出する。このとき、給湯流量センサ33が所定の最小作動水量以上を検出すると、一次側ポンプ制御手段39は、給水温度センサ31で検出している給水温度と、リモコン37で設定された給湯設定温度と、給湯流量センサ33で検出している給湯流量とから給湯要求熱量を算出し、給水温度から給湯外熱交換器3から流出する一次側の湯水の温度(推定一次側出口温度)を推定し、貯湯タンク2の最上部の貯湯温度センサ36で検出する貯湯温度と推定一次側出口温度と給湯要求熱量とから給湯外熱交換器3の一次側を流す湯水の流量(一次側流量)を算出し、算出した一次側流量に応じた回転数(指示回転数)で一次側ポンプ7を駆動開始する。
<Hot-water supply operation>
Next, the hot water supply operation will be described. When the hot water tap 10 is opened, city water flows into the secondary side of the hot water supply external heat exchanger 3 from the water supply pipe 8 and passes through the secondary side of the hot water supply external heat exchanger 3. The discharged hot water flows out from the hot water supply pipe 9 toward the hot water tap 10. At this time, if the hot water supply flow sensor 33 detects a predetermined minimum working water amount or more, the primary pump control means 39 will detect the water supply temperature detected by the water supply temperature sensor 31, the hot water supply set temperature set by the remote control 37, The hot water supply required heat quantity is calculated from the hot water supply flow rate detected by the hot water supply flow rate sensor 33, the temperature of the primary hot water flowing out of the hot water supply external heat exchanger 3 (estimated primary side outlet temperature) is estimated from the hot water supply temperature, and hot water storage From the hot water storage temperature detected by the hot water storage temperature sensor 36 at the uppermost part of the tank 2, the estimated primary outlet temperature, and the required hot water supply amount, the flow rate of the hot water flowing through the primary side of the hot water supply heat exchanger 3 (primary flow rate) is calculated. The primary pump 7 is started to be driven at a rotation speed (instructed rotation speed) corresponding to the calculated primary flow rate.

そして、一次側ポンプ制御手段39は、一次側ポンプ7の実回転数が指示回転数に達したことを検知すると、給湯設定温度と給湯温度センサ32で検出した給湯温度とから温度偏差を算出し、温度偏差から所定のPI演算によって一次側ポンプ7の回転数(指示回転数)を算出し、一次側ポンプ7の回転数が指示回転数となるように制御することで給湯温度が給湯設定温度となるようにフィードバック制御して、給湯設定温度の給湯を行う。   When the primary pump control means 39 detects that the actual rotational speed of the primary pump 7 has reached the indicated rotational speed, it calculates a temperature deviation from the hot water set temperature and the hot water temperature detected by the hot water temperature sensor 32. The rotation speed of the primary pump 7 (instructed rotation speed) is calculated from the temperature deviation by a predetermined PI calculation, and the hot water supply temperature is controlled so that the rotation speed of the primary pump 7 becomes the instruction rotation speed. The feedback control is performed so that the hot water supply temperature is reached.

このとき、給湯要求熱量が小さく、かつ貯湯温度が高い状況で、一次側ポンプ7を最小回転数で駆動しても給湯温度が給湯設定温度よりも上回ってしまう場合がある。この場合には、一次側ポンプ制御手段39の指示する一次側ポンプ7の指示回転数が所定の最小回転数となり、かつ給湯温度センサ32で検出する給湯温度が給湯設定温度を所定値(ここでは1℃)以上上回った状態を所定時間(ここでは1秒)継続したことを一次側混合弁制御手段40が検知したら、一次側混合弁制御手段40は、一次側ポンプ7の回転数を所定の最小回転数に維持するよう一次側ポンプ制御手段39に指示すると共に、給湯温度センサ32で検出する給湯温度が給湯設定温度と一致するように一次側混合弁27の開度をフィードバック制御する。   At this time, the hot water supply temperature may exceed the hot water supply set temperature even if the primary pump 7 is driven at the minimum number of revolutions in a situation where the required hot water supply amount is small and the hot water storage temperature is high. In this case, the designated rotational speed of the primary pump 7 designated by the primary pump control means 39 is a predetermined minimum rotational speed, and the hot water temperature detected by the hot water temperature sensor 32 is a predetermined value (here, the hot water temperature setting temperature). When the primary side mixing valve control means 40 detects that the state exceeding 1 ° C.) has been continued for a predetermined time (here, 1 second), the primary side mixing valve control means 40 sets the rotation speed of the primary side pump 7 to a predetermined value. The primary pump control means 39 is instructed to maintain the minimum number of revolutions, and the opening degree of the primary side mixing valve 27 is feedback-controlled so that the hot water temperature detected by the hot water temperature sensor 32 coincides with the hot water set temperature.

このようにして、給湯要求熱量が小さく、かつ貯湯温度が高い状況で、一次側ポンプ7を最小回転数で駆動しても給湯温度が給湯設定温度よりも上回ってしまう場合には、一次側ポンプ制御手段39は一次側ポンプ7の指示回転数を最小回転数に維持し、一次側混合弁制御手段40は給湯温度と給湯設定温度と一致するように温度偏差から所定のPI演算によって一次側混合弁27の開度をフィードバック制御するので、給湯外熱交換器3の一次側から流出した温度低下した湯水が再循環管26を介して給湯外熱交換器3の一次側の入口に再度循環されるため、給湯外熱交換器3の一次側入口から流入する湯水の温度が適切な温度まで低下され、一次側ポンプ7の回転数を最小回転数以下に落とすことなく、給湯外熱交換器3の加熱量を低下させることができ、給湯要求熱量が小さく、かつ貯湯温度が高い時でも、所望の給湯設定温度の湯水を安定して給湯することができる。   In this way, when the required hot water supply amount is small and the hot water storage temperature is high, even if the primary pump 7 is driven at the minimum number of rotations, the hot water supply temperature exceeds the hot water supply set temperature. The control means 39 maintains the indicated rotational speed of the primary pump 7 at the minimum rotational speed, and the primary mixing valve control means 40 performs the primary side mixing by a predetermined PI calculation from the temperature deviation so as to coincide with the hot water supply temperature and the hot water supply set temperature. Since the opening degree of the valve 27 is feedback-controlled, the temperature-decreasing hot water flowing out from the primary side of the hot water supply external heat exchanger 3 is recirculated to the primary side inlet of the hot water supply heat exchanger 3 through the recirculation pipe 26. Therefore, the temperature of the hot water flowing from the primary side inlet of the hot water supply external heat exchanger 3 is lowered to an appropriate temperature, and the hot water supply external heat exchanger 3 is not reduced without reducing the rotational speed of the primary pump 7 below the minimum rotational speed. Reduce the amount of heating So that it is, the hot water supply heat value demand is small, and even when the hot water storage temperature is high, it is possible to stably hot water to hot water of a desired hot water temperature setting.

このとき、給湯外熱交換器3の一次側に流入する湯水の温度を低下させるために用いられるのは、給湯外熱交換器3の一次側を流通して温度低下した湯水であるため、貯湯タンク2内が全て高温の湯水で満たされている状況においても、一次側ポンプ7の回転数を最小回転数以下に落とすことなく、給湯外熱交換器3の加熱量を低下させることができ、給湯要求熱量が小さく、かつ貯湯温度が高い時でも、所望の給湯設定温度の湯水を安定して給湯することができるものである。   At this time, since the hot water flowing through the primary side of the hot water supply external heat exchanger 3 is used to reduce the temperature of the hot water flowing into the primary side of the hot water supply heat exchanger 3, Even in a situation where the tank 2 is entirely filled with high-temperature hot water, the heating amount of the hot water supply external heat exchanger 3 can be reduced without reducing the rotational speed of the primary pump 7 below the minimum rotational speed, Even when the required hot water supply amount is small and the hot water storage temperature is high, hot water having a desired hot water supply set temperature can be stably supplied.

ここで、一次側混合弁制御手段40による給湯温度制御が開始された後に、一次側混合弁27の開度が高温側100%の開度となり、かつ給湯温度が給湯設定温度を所定値(ここでは1℃)以上下回った状態を所定時間(ここでは1秒)継続したら、一次側ポンプ7を最小回転数より高い回転数で制御できる状況に復帰したと判断して、一次側混合弁27の開度を高温側100%の状態で固定すると共に、一次側ポンプ制御手段39に指示していた一次側ポンプ7の回転数を所定の最小回転数に維持させる指示を取り消して、一次側ポンプ制御手段39によって給湯温度が給湯設定温度に一致するように一次側ポンプ7の回転数を制御させるようにしている。   Here, after the hot water supply temperature control by the primary side mixing valve control means 40 is started, the opening degree of the primary side mixing valve 27 becomes an opening degree of 100% on the high temperature side, and the hot water supply temperature is a predetermined value (here, If the temperature of the primary side mixing valve 27 is reduced to a state where the primary side pump 7 can be controlled at a higher rotational speed than the minimum rotational speed, While the opening degree is fixed at a high temperature side of 100%, the primary pump control means 39 cancels the instruction for maintaining the rotational speed of the primary pump 7 which has been instructed to the primary pump control means 39 at a predetermined minimum rotational speed. The means 39 controls the rotational speed of the primary pump 7 so that the hot water supply temperature matches the hot water supply set temperature.

このように、給湯要求熱量が大きくなって、一次側混合弁27の開度が高温側100%の開度となると、給湯外熱交換器3の一次側に流入する湯水の温度が低温の再循環分がなくなるために元の貯湯タンク2内の湯水の温度まで上昇するため、一次側ポンプ7の回転数が低下して、一次側ポンプ7の最大回転数を抑えることができる。   In this way, when the required amount of hot water supply becomes large and the opening of the primary side mixing valve 27 reaches 100% on the high temperature side, the temperature of the hot water flowing into the primary side of the hot water outside heat exchanger 3 is reduced again. Since there is no circulation, the temperature rises to the original hot water temperature in the hot water storage tank 2, so that the rotation speed of the primary pump 7 is reduced and the maximum rotation speed of the primary pump 7 can be suppressed.

そして、給湯栓10が閉じられる等によって給湯流量センサ33で検出する給湯流量が最小作動水量未満まで低下すると、制御手段38は、一次側ポンプ7と一次側混合弁27の作動を停止して給湯を終了する。   When the hot water flow rate detected by the hot water flow rate sensor 33 decreases to less than the minimum working water amount due to the hot water tap 10 being closed or the like, the control means 38 stops the operation of the primary side pump 7 and the primary side mixing valve 27 to supply hot water. Exit.

このようにして、給湯外熱交換器3の一次側から流出した放熱後の湯水を給湯外熱交換器3の一次側に再循環管26を介して再循環させるので、貯湯タンク2内の湯水が全量高温であったとしても、給湯外熱交換器3の一次側に供給する湯水の温度を給湯水の加熱に必要な温度まで低下させることができ、給湯要求熱量が小さい時でも、所望の給湯設定温度の湯水を安定して給湯することができる。   In this way, the hot water after heat dissipation flowing out from the primary side of the hot water supply heat exchanger 3 is recirculated to the primary side of the hot water supply heat exchanger 3 via the recirculation pipe 26, so that the hot water in the hot water storage tank 2 is recirculated. Even if the total amount of water is high, the temperature of the hot water supplied to the primary side of the hot water supply external heat exchanger 3 can be lowered to the temperature required for heating the hot water, and even when the required amount of hot water supply is small, Hot water at a hot water supply set temperature can be stably supplied.

なお、この第1の実施形態では、混合比調整弁としての一次側混合弁27を一次側往き管5と再循環管26との合流点に配置したが、混合比調整弁の実施形態としてはこれに限らず、一次側混合弁27を一次側戻り管6と再循環管26の分岐点に配置してもよく、また、一次側混合弁27の代わりに、流量調整弁を再循環管26に設けるか、あるいは、合流前の一次側往き管5または分岐後の一次側戻り管6のいずれか一方と、再循環管26と、に設けるようにしても第1の実施形態の一次側混合弁27と同等の作用を発揮させることができるものである。   In the first embodiment, the primary side mixing valve 27 as a mixing ratio adjusting valve is arranged at the junction of the primary side forward pipe 5 and the recirculation pipe 26. However, as an embodiment of the mixing ratio adjusting valve, Not limited to this, the primary side mixing valve 27 may be arranged at a branch point between the primary side return pipe 6 and the recirculation pipe 26, and the flow rate adjusting valve is replaced with the recirculation pipe 26 instead of the primary side mixing valve 27. Or the primary-side mixing of the first embodiment may be provided in either the primary-side forward pipe 5 before joining or the primary-side return pipe 6 after branching and the recirculation pipe 26. An action equivalent to that of the valve 27 can be exhibited.

<第2の実施形態>
次に、本発明の第2の実施形態について図3、4に基づいて説明する。この第2の実施形態では、先の第1の実施形態の一次側混合弁27に代えて、再循環管26途中に開閉弁41と流量制限用のオリフィス42を配置し、一次側混合弁制御手段40に代えて開閉弁41の開閉を制御する開閉弁制御手段43を設けたもので、先の第1の実施形態と同一のものには同一の符号を付してその説明を省略する。
<Second Embodiment>
Next, a second embodiment of the present invention will be described with reference to FIGS. In the second embodiment, instead of the primary side mixing valve 27 of the previous first embodiment, an on-off valve 41 and a flow restricting orifice 42 are arranged in the middle of the recirculation pipe 26 to control the primary side mixing valve. An opening / closing valve control means 43 for controlling the opening / closing of the opening / closing valve 41 is provided in place of the means 40, and the same components as those in the first embodiment are denoted by the same reference numerals and the description thereof is omitted.

ここで開閉弁41は、制御手段38中に設けられた開閉弁制御手段43により開閉が制御されるもので、開閉弁制御手段43は、一次側ポンプ制御手段39の指示する一次側ポンプ7の指示回転数が最小回転数より大きい所定の第1回転数以下となると、開閉弁41を開弁し、開閉弁41を開いた状態において、一次側ポンプ制御手段39の指示する一次側ポンプ7の指示回転数が第1回転数より大きい所定の第2回転数以上となると、開閉弁41を閉弁するようにしている。   Here, the on-off valve 41 is controlled to be opened and closed by an on-off valve control means 43 provided in the control means 38, and the on-off valve control means 43 is connected to the primary side pump 7 indicated by the primary side pump control means 39. When the indicated rotational speed is equal to or less than a predetermined first rotational speed greater than the minimum rotational speed, the on-off valve 41 is opened, and the primary-side pump 7 instructed by the primary-side pump control means 39 in the state where the on-off valve 41 is opened. The on-off valve 41 is closed when the indicated rotational speed is equal to or greater than a predetermined second rotational speed that is greater than the first rotational speed.

ここで、オリフィス42は、予め試験等によって開閉弁41が開いたときに給湯外熱交換器3で温度低下した湯水が再循環管26を適切な量だけ流れるものが選択されるものである。   Here, the orifice 42 is selected so that when the on-off valve 41 is opened in advance by a test or the like, hot water whose temperature has decreased in the hot water supply external heat exchanger 3 flows through the recirculation pipe 26 by an appropriate amount.

<給湯動作>
次に、給湯動作について説明すると、給湯栓10が開かれると、給湯外熱交換器3の二次側に給水管8から市水が流入し、給湯外熱交換器3の二次側を通過した湯水が給湯管9から給湯栓10に向けて流出する。このとき、給湯流量センサ33が所定の最小作動水量以上を検出すると、一次側ポンプ制御手段39は、給水温度センサ31で検出している給水温度と、リモコン37で設定された給湯設定温度と、給湯流量センサ33で検出している給湯流量とから給湯要求熱量を算出し、給水温度から給湯外熱交換器3から流出する一次側の湯水の温度(推定一次側出口温度)を推定し、貯湯タンク2の最上部の貯湯温度センサ36で検出する貯湯温度と推定一次側出口温度と給湯要求熱量とから給湯外熱交換器3の一次側を流す湯水の流量(一次側流量)を算出し、算出した一次側流量に応じた回転数(指示回転数)で一次側ポンプ7を駆動開始する。
<Hot-water supply operation>
Next, the hot water supply operation will be described. When the hot water tap 10 is opened, city water flows into the secondary side of the hot water supply external heat exchanger 3 from the water supply pipe 8 and passes through the secondary side of the hot water supply external heat exchanger 3. The discharged hot water flows out from the hot water supply pipe 9 toward the hot water tap 10. At this time, if the hot water supply flow sensor 33 detects a predetermined minimum working water amount or more, the primary pump control means 39 will detect the water supply temperature detected by the water supply temperature sensor 31, the hot water supply set temperature set by the remote control 37, The hot water supply required heat quantity is calculated from the hot water supply flow rate detected by the hot water supply flow rate sensor 33, the temperature of the primary hot water flowing out of the hot water supply external heat exchanger 3 (estimated primary side outlet temperature) is estimated from the hot water supply temperature, and hot water storage From the hot water storage temperature detected by the hot water storage temperature sensor 36 at the uppermost part of the tank 2, the estimated primary outlet temperature, and the required hot water supply amount, the flow rate of the hot water flowing through the primary side of the hot water supply heat exchanger 3 (primary flow rate) is calculated. The primary pump 7 is started to be driven at a rotation speed (instructed rotation speed) corresponding to the calculated primary flow rate.

そして、一次側ポンプ制御手段39は、一次側ポンプ7の実回転数が指示回転数に達したことを検知すると、給湯設定温度と給湯温度センサ32で検出した給湯温度とから温度偏差を算出し、温度偏差から所定のPI演算によって一次側ポンプ7の回転数(指示回転数)を算出し、一次側ポンプ7の回転数が指示回転数となるように制御することで給湯温度が給湯設定温度となるようにフィードバック制御して、給湯設定温度の給湯を行う。   When the primary pump control means 39 detects that the actual rotational speed of the primary pump 7 has reached the indicated rotational speed, it calculates a temperature deviation from the hot water set temperature and the hot water temperature detected by the hot water temperature sensor 32. The rotation speed of the primary pump 7 (instructed rotation speed) is calculated from the temperature deviation by a predetermined PI calculation, and the hot water supply temperature is controlled so that the rotation speed of the primary pump 7 becomes the instruction rotation speed. The feedback control is performed so that the hot water supply temperature is reached.

このとき、一次側ポンプ7の指示回転数が最小回転数よりも大きい第1所定回転数を下回ったことを開閉弁制御手段43が検知したら、開閉弁制御手段43は開閉弁41を開弁し、一次側ポンプ制御手段39はそれまでと同様に給湯温度が給湯設定温度となるように一次側ポンプ7の回転数をフィードバック制御して、給湯設定温度の給湯を行う。   At this time, if the on-off valve control means 43 detects that the command speed of the primary pump 7 has fallen below a first predetermined speed greater than the minimum speed, the on-off valve control means 43 opens the on-off valve 41. The primary side pump control means 39 feeds back the hot water at the hot water set temperature by feedback controlling the rotational speed of the primary side pump 7 so that the hot water temperature becomes the hot water set temperature as before.

このようにして、給湯要求熱量が小さく、かつ貯湯温度が高い状況において、一次側ポンプ7の回転数が第1回転数を下回ってしまう場合には、開閉弁制御手段43は開閉弁41を開弁して、給湯外熱交換器3の一次側から流出した温度低下した湯水が再循環管26を介して給湯外熱交換器3の一次側の入口に再度循環されるため、給湯外熱交換器3の一次側入口から流入する湯水の温度が適切な温度範囲まで低下され、一次側ポンプ7の回転数を最小回転数以下に落とすことなく、給湯外熱交換器3の加熱量を低下させることができ、給湯要求熱量が小さく、かつ貯湯温度が高い時でも、所望の給湯設定温度の湯水を安定して給湯することができる。   In this way, when the rotational speed of the primary pump 7 falls below the first rotational speed in a situation where the required amount of hot water supply is small and the hot water storage temperature is high, the on-off valve control means 43 opens the on-off valve 41. Therefore, the hot water whose temperature has dropped from the primary side of the hot water supply external heat exchanger 3 is circulated again to the inlet of the primary side of the hot water supply heat exchanger 3 through the recirculation pipe 26, so that the heat exchange outside the hot water supply is performed. The temperature of the hot water flowing in from the primary side inlet of the water heater 3 is lowered to an appropriate temperature range, and the heating amount of the hot water supply heat exchanger 3 is reduced without lowering the rotational speed of the primary pump 7 below the minimum rotational speed. Even when the required hot water supply amount is small and the hot water storage temperature is high, hot water having a desired hot water supply set temperature can be stably supplied.

このとき、給湯外熱交換器3の一次側に流入する湯水の温度を低下させるために用いられるのは、給湯外熱交換器3の一次側を流通して温度低下した湯水であるため、貯湯タンク2内が全て高温の湯水で満たされている状況においても、一次側ポンプ7の回転数を最小回転数以下に落とすことなく、給湯外熱交換器3の加熱量を低下させることができ、給湯要求熱量が小さく、かつ貯湯温度が高い時でも、所望の給湯設定温度の湯水を安定して給湯することができるものである。   At this time, since the hot water flowing through the primary side of the hot water supply external heat exchanger 3 is used to reduce the temperature of the hot water flowing into the primary side of the hot water supply heat exchanger 3, Even in a situation where the tank 2 is entirely filled with high-temperature hot water, the heating amount of the hot water supply external heat exchanger 3 can be reduced without reducing the rotational speed of the primary pump 7 below the minimum rotational speed, Even when the required hot water supply amount is small and the hot water storage temperature is high, hot water having a desired hot water supply set temperature can be stably supplied.

そして、開閉弁制御手段43によって開閉弁41が開弁された後に、一次側ポンプ7の指示回転数が第1回転数よりも大きい第2所定回転数を上回ったことを開閉弁制御手段43が検知したら、開閉弁制御手段43は開閉弁41を閉弁し、一次側ポンプ制御手段39はそれまでと同様に給湯温度が給湯設定温度となるように一次側ポンプ7の回転数をフィードバック制御して、給湯設定温度の給湯を行う。   Then, after the opening / closing valve 41 is opened by the opening / closing valve control means 43, the opening / closing valve control means 43 indicates that the indicated rotation speed of the primary pump 7 has exceeded a second predetermined rotation speed larger than the first rotation speed. When detected, the on-off valve control means 43 closes the on-off valve 41, and the primary pump control means 39 feedback-controls the rotation speed of the primary pump 7 so that the hot water supply temperature becomes the hot water supply set temperature as before. Then, hot water is supplied at the set hot water temperature.

ここで、一次側ポンプ7の指示回転数が第2回転数を上回ると開閉弁41を閉じると、給湯外熱交換器3の一次側に流入する湯水の温度が低温の再循環分がなくなるために元の貯湯タンク2内の湯水の温度まで上昇するため、一次側ポンプ7の回転数が低下して、一次側ポンプ7の最大回転数を抑えることができる。   Here, when the indicated rotational speed of the primary pump 7 exceeds the second rotational speed, if the on-off valve 41 is closed, the temperature of the hot water flowing into the primary side of the hot water supply heat exchanger 3 will not be recirculated. Since the temperature of the hot water in the original hot water storage tank 2 rises, the rotational speed of the primary pump 7 is reduced, and the maximum rotational speed of the primary pump 7 can be suppressed.

そして、給湯栓10が閉じられる等によって給湯流量センサ33で検出する給湯流量が最小作動水量未満まで低下すると、制御手段38は、一次側ポンプ7と開閉弁41の作動を停止して給湯を終了する。   When the hot water flow rate detected by the hot water flow rate sensor 33 is reduced to less than the minimum working water amount due to the hot water tap 10 being closed, the control means 38 stops the operation of the primary pump 7 and the on-off valve 41 and ends the hot water supply. To do.

このようにして、給湯外熱交換器3の一次側から流出した放熱後の湯水を給湯外熱交換器3の一次側に再循環管26を介して再循環させるので、貯湯タンク2内の湯水が全量高温であったとしても、給湯外熱交換器3の一次側に供給する湯水の温度を給湯水の加熱に必要な温度まで低下させることができ、給湯要求熱量が小さい時でも、所望の給湯設定温度の湯水を安定して給湯することができる。   In this way, the hot water after heat dissipation flowing out from the primary side of the hot water supply heat exchanger 3 is recirculated to the primary side of the hot water supply heat exchanger 3 via the recirculation pipe 26, so that the hot water in the hot water storage tank 2 is recirculated. Even if the total amount of water is high, the temperature of the hot water supplied to the primary side of the hot water supply external heat exchanger 3 can be lowered to the temperature required for heating the hot water, and even when the required amount of hot water supply is small, Hot water at a hot water supply set temperature can be stably supplied.

なお、本発明は上記一実施形態に限定されるものではなく、発明の要旨を変更しない範囲で改変可能なものであり、例えば、加熱手段はヒートポンプユニット11のみに限られず、例えば、コージェネレーションによる排熱や太陽熱、あるいは電熱ヒータを加熱手段として用いても良いものである。   In addition, this invention is not limited to the said one Embodiment, It can modify | change within the range which does not change the summary of invention, For example, a heating means is not restricted only to the heat pump unit 11, For example, by cogeneration Exhaust heat, solar heat, or an electric heater may be used as the heating means.

2 貯湯タンク
3 給湯外熱交換器
3a 一次側入口
3b 一次側出口
3c 二次側入口
3d 二次側出口
5 一次側往き管
6 一次側戻り管
7 一次側ポンプ
8 給水管
9 給湯管
11 ヒートポンプユニット(加熱手段)
26 再循環管
27 一次側混合弁(混合比調整弁)
32 給湯温度センサ(二次出口温度センサ)
38 制御手段
DESCRIPTION OF SYMBOLS 2 Hot water storage tank 3 Hot water supply external heat exchanger 3a Primary side inlet 3b Primary side outlet 3c Secondary side inlet 3d Secondary side outlet 5 Primary side forward pipe 6 Primary side return pipe 7 Primary side pump 8 Water supply pipe 9 Hot water supply pipe 11 Heat pump unit (Heating means)
26 Recirculation pipe 27 Primary side mixing valve (mixing ratio adjustment valve)
32 Hot water temperature sensor (secondary outlet temperature sensor)
38 Control means

Claims (3)

湯水を貯湯する貯湯タンクと、前記貯湯タンク内の湯水を加熱する加熱手段と、一次側を循環する前記貯湯タンク内の湯水を熱源として二次側の流水を加熱して給湯する給湯外熱交換器と、前記貯湯タンク上部と前記給湯外熱交換器の一次側入口とを接続する一次側往き管と、前記給湯外熱交換器の一次側出口と前記貯湯タンクとを接続する一次側戻り管と、前記一次側戻り管の途中に設けられて前記貯湯タンク内の湯水を前記給湯外熱交換器の一次側に循環させる一次側ポンプと、前記給湯外熱交換器の二次側入口に接続される給水管と、前記給湯外熱交換器の二次側出口に接続される給湯管と、前記給湯外熱交換器の二次側出口温度を検出する二次出口温度センサと、前記二次出口温度が目標温度に一致するように前記一次側ポンプの回転数を制御する制御手段と、を備えた貯湯式給湯機において、前記一次側ポンプの下流側の前記一次側戻り管から分岐して前記一次側往き管へ接続されて前記給湯外熱交換器の一次側に前記一次側ポンプの下流からの湯水を合流させる再循環管と、前記給湯外熱交換器の一次側に流入する前記再循環管からの湯水と前記一次側往き管からの湯水との混合比率を調整する混合比調整弁と、を設け、前記制御手段は、前記一次側ポンプの回転数が所定の最小回転数となり、かつ前記二次側出口温度が前記目標温度を上回ったら、前記一次側ポンプの回転数を前記所定の最小回転数に維持すると共に、前記混合比調整弁の混合比を前記二次側出口温度が前記目標温度と一致するように制御し、前記混合比調整弁の混合比が高温側の比率が大きい所定比率となり、かつ前記二次側出口温度が前記目標温度を下回ったら、前記混合比調整弁の混合比を固定すると共に、前記二次出口温度が前記目標温度に一致するように前記一次側ポンプの回転数を制御するようにしたことを特徴とする貯湯式給湯機。 Hot water storage tank for storing hot water, heating means for heating the hot water in the hot water storage tank, and hot water outside heat exchange for supplying hot water by heating the running water on the secondary side using the hot water in the hot water tank circulating in the primary side as a heat source A primary side forward pipe connecting the upper part of the hot water storage tank and the primary inlet of the hot water supply external heat exchanger, and a primary return pipe connecting the primary outlet of the hot water supply external heat exchanger and the hot water storage tank A primary side pump provided in the middle of the primary side return pipe to circulate hot water in the hot water storage tank to a primary side of the hot water supply external heat exchanger, and connected to a secondary side inlet of the hot water supply external heat exchanger A hot water supply pipe connected to a secondary side outlet of the hot water supply external heat exchanger, a secondary outlet temperature sensor for detecting a secondary side outlet temperature of the hot water supply external heat exchanger, and the secondary Turn the primary pump so that the outlet temperature matches the target temperature. A hot water storage hot water heater comprising a control means for controlling the number of the hot water supply external heat exchanger connected to the primary forward pipe branched from the primary return pipe downstream of the primary pump. A recirculation pipe that joins hot water from the downstream of the primary pump to the primary side, hot water from the recirculation pipe that flows into the primary side of the hot water supply external heat exchanger, and hot water from the primary side forward pipe A mixing ratio adjusting valve for adjusting a mixing ratio, and the control means, when the rotation speed of the primary pump becomes a predetermined minimum rotation speed and the secondary outlet temperature exceeds the target temperature, While maintaining the rotation speed of the primary pump at the predetermined minimum rotation speed, the mixing ratio of the mixing ratio adjusting valve is controlled so that the secondary outlet temperature matches the target temperature, and the mixing ratio adjusting valve The mixture ratio of the high temperature side is large When the secondary outlet temperature is lower than the target temperature, the mixing ratio of the mixing ratio adjusting valve is fixed, and the secondary pump temperature is adjusted so that the secondary outlet temperature matches the target temperature. A hot water storage type water heater characterized by controlling the rotation speed . 湯水を貯湯する貯湯タンクと、前記貯湯タンク内の湯水を加熱する加熱手段と、一次側を循環する前記貯湯タンク内の湯水を熱源として二次側の流水を加熱して給湯する給湯外熱交換器と、前記貯湯タンク上部と前記給湯外熱交換器の一次側入口とを接続する一次側往き管と、前記給湯外熱交換器の一次側出口と前記貯湯タンクとを接続する一次側戻り管と、前記一次側戻り管の途中に設けられて前記貯湯タンク内の湯水を前記給湯外熱交換器の一次側に循環させる一次側ポンプと、前記給湯外熱交換器の二次側入口に接続される給水管と、前記給湯外熱交換器の二次側出口に接続される給湯管とを備えた貯湯式給湯機において、一次側ポンプの下流側の一次側戻り管から分岐して一次側往き管へ接続されて給湯外熱交換器の一次側に一次側ポンプの下流からの湯水を合流させる再循環管と、給湯外熱交換器の一次側に流入する湯水に再循環管からの湯水を合流させるための開閉弁と、を設け、前記一次側ポンプの回転数が第1所定回転数以下となったら、前記再循環管からの湯水を前記給湯外熱交換器の一次側に流入するように前記開閉弁を開くようにしたことを特徴とする貯湯式給湯機。 Hot water storage tank for storing hot water, heating means for heating the hot water in the hot water storage tank, and hot water outside heat exchange for supplying hot water by heating the running water on the secondary side using the hot water in the hot water tank circulating in the primary side as a heat source A primary side forward pipe connecting the upper part of the hot water storage tank and the primary inlet of the hot water supply external heat exchanger, and a primary return pipe connecting the primary outlet of the hot water supply external heat exchanger and the hot water storage tank A primary side pump provided in the middle of the primary side return pipe to circulate hot water in the hot water storage tank to a primary side of the hot water supply external heat exchanger, and connected to a secondary side inlet of the hot water supply external heat exchanger In the hot water storage type hot water heater having a hot water supply pipe and a hot water supply pipe connected to the secondary side outlet of the hot water external heat exchanger, the primary side branches off from the primary return pipe downstream of the primary pump Primary side to the primary side of the hot water supply external heat exchanger connected to the forward pipe A recirculation pipe for combining the hot water from the downstream pump, opening and closing valve for merging the hot water from the recirculation tube to the hot water flowing into the primary side of the hot water out of the heat exchanger, the provided, the primary pump The hot water storage system , wherein the on-off valve is opened so that hot water from the recirculation pipe flows into a primary side of the hot water supply external heat exchanger when the rotational speed is equal to or lower than a first predetermined rotational speed. Water heater. 前記一次側ポンプの回転数が第1所定回転数より高い第2所定回転数以上となったら、前記再循環管からの湯水を前記給湯外熱交換器の一次側に流入させないよう前記開閉弁を閉じるようにしたことを特徴とする請求項記載の貯湯式給湯機。 When the rotational speed of the primary pump is equal to or higher than a second predetermined rotational speed that is higher than the first predetermined rotational speed, the on-off valve is prevented from flowing hot water from the recirculation pipe into the primary side of the hot water supply external heat exchanger. The hot water storage type water heater according to claim 2 , wherein the hot water storage type water heater is closed.
JP2012209307A 2012-09-24 2012-09-24 Hot water storage water heater Active JP5989481B2 (en)

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JP4953436B2 (en) * 2007-03-14 2012-06-13 大阪瓦斯株式会社 Thermal storage and heat dissipation system
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