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    • 2. 发明申请
    • REFRIGERATION AND AIR-CONDITIONING APPARATUS AND HUMIDITY CONTROL DEVICE
    • 制冷和空气调节装置和湿度控制装置
    • US20140230479A1
    • 2014-08-21
    • US14349098
    • 2011-10-28
    • Shinichi ItoFumitake UnezakiMamoru Hamada
    • Shinichi ItoFumitake UnezakiMamoru Hamada
    • F25B30/02
    • F25B30/02F24F3/1429F24F5/0014F24F11/0008F24F12/006Y02B30/563
    • An air-conditioning system includes a pump that sends, to an evaporator, a cooling fluid that exchanges heat with a refrigerant at the evaporator, and a first heat exchanger that exchanges heat between ambient air and the cooling fluid that has undergone the heat exchange at the evaporator. A sensible heat exchange cycle is formed by annularly connecting the evaporator, the heat exchanger, and the pump by using a pipe. This system is also includes an air-sending unit that sends air to a second heat exchanger, moisture absorbing-and-desorbing devices that are provided at a passage of the air sent by the air-sending unit and that are disposed in front of and behind the first heat exchanger, and an air-path switching device that reverses a passing direction of air passing through the moisture absorbing-and-desorbing device, the first heat exchanger, and the moisture absorbing-and-desorbing device.
    • 空调系统包括:泵,其向蒸发器发送与蒸发器中的制冷剂进行热交换的冷却流体;以及第一热交换器,其在环境空气和经过热交换的冷却流体之间进行热交换 蒸发器。 通过使用管道环形连接蒸发器,热交换器和泵来形成明显的热交换循环。 该系统还包括将空气送至第二热交换器的送风单元,设置在由送风单元送出的空气通道的吸湿解吸装置, 在第一热交换器之后,以及使通过吸湿解吸装置,第一热交换器和吸湿解吸装置的空气的通过方向反转的风路切换装置。
    • 5. 发明申请
    • HEAT PUMP APPARATUS
    • 热泵装置
    • US20120111042A1
    • 2012-05-10
    • US13384680
    • 2010-01-15
    • Mamoru HamadaFumitake UnezakiYoshihiro TakahashiKengo TakahashiKazuki OkadaHirokazu MinamisakoShinichi Uchino
    • Mamoru HamadaFumitake UnezakiYoshihiro TakahashiKengo TakahashiKazuki OkadaHirokazu MinamisakoShinichi Uchino
    • F25B49/00
    • F25B47/025F24F11/41F25B13/00F25B49/02F25B2400/0411F25B2600/01F25B2600/021F25B2600/2501F25B2600/2513F25B2600/2521F25B2700/21151F25B2700/21163Y02B30/741
    • In a heat pump apparatus, it is aimed to enhance efficiency of a defrost operation by reducing a loss of heat radiation during the defrost operation and reducing a compressor input during the defrost operation. The heat pump apparatus includes a main refrigerant circuit in which a compressor, a first heat exchanger, an expansion mechanism, and a second heat exchanger are connected sequentially, and also includes a bypass circuit including an on-off valve and providing a connection by bypassing the expansion mechanism. The main refrigerant circuit includes a four-way valve that switches between a heating operation and the defrost operation by switching an order in which the refrigerant circulates through the main refrigerant circuit. The main refrigerant circuit also includes a first temperature detection unit and a second temperature detection unit. Based on values detected by these temperature detection units, a degree of superheat of the first heat exchanger during the defrost operation is computed. When the heating operation is switched to the defrost operation, the heat pump apparatus increases a circulation amount of the refrigerant circulating through the refrigerant circuit by opening the on-off valve, and also controls an operation frequency of the compressor such that the degree of superheat is at a predetermined target value.
    • 在热泵装置中,旨在通过减少除霜操作期间的热辐射损失来提高除霜操作的效率,并且在除霜操作期间减少压缩机输入。 热泵装置包括:主制冷剂回路,其中压缩机,第一热交换器,膨胀机构和第二热交换器依次连接,并且还包括旁通回路,旁路回路包括开关阀,并通过旁路提供连接 扩张机制。 主制冷剂回路包括四通阀,其通过切换制冷剂通过主制冷剂回路循环的顺序而在加热操作和除霜操作之间切换。 主制冷剂回路还包括第一温度检测单元和第二温度检测单元。 基于这些温度检测单元检测出的值,算出除霜运转时的第一热交换器的过热度。 当加热操作切换到除霜操作时,热泵装置通过打开开关阀来增加通过制冷剂回路循环的制冷剂的循环量,并且还控制压缩机的操作频率使得过热度 处于预定的目标值。
    • 6. 发明授权
    • Heat pump water heater and operating method thereof
    • 热泵热水器及其操作方法
    • US08839636B2
    • 2014-09-23
    • US13125906
    • 2009-12-02
    • Mamoru HamadaFumitake UnezakiYusuke Tashiro
    • Mamoru HamadaFumitake UnezakiYusuke Tashiro
    • F25B30/02F25B13/00F25B47/02F24H4/04
    • F24H4/04F24D2200/12F25B13/00F25B47/022F25B2313/003F25B2313/0234F25B2313/02741
    • A refrigerant circuit of a heat pump water heater has a compressor, a four-way valve, a water heat exchanger, a heat storage transfer pipe contained in a heat storage water tank, an expansion valve, and an air heat exchanger and forms a refrigerating cycle by sequentially connecting them. A water circuit of the heat pump water heater has a water inlet pipeline that supplies water to the water heat exchanger, a hot water tank, and a water outlet pipeline that allows the water heat exchanger to communicate with the hot water tank, in which water is supplied to the heat storage water tank through a heat storage water tank water feed pipe branching from the water inlet pipeline by opening a heat storage water tank water feed opening/closing valve) and the water in the heat storage water tank can be discharged through the heat storage water tank water discharge pipe (by opening a heat storage water tank water discharge opening/closing valve).
    • 热泵热水器的制冷剂回路具有压缩机,四通阀,水热交换器,储热水箱内的蓄热输送管,膨胀阀和空气热交换器,形成冷藏 按顺序连接它们。 热泵热水器的水回路具有向水热交换器,热水箱和出水管道供水的进水管道,其允许水热交换器与热水箱连通,在该水槽中,水 通过开放蓄热水箱供水开闭阀从进水管道分流的蓄热水箱供水管道供给蓄热水箱,蓄热水箱内的水可以通过 蓄热水箱排水管(通过打开储热水箱排水开关阀)。
    • 7. 发明申请
    • HEAT PUMP WATER HEATER AND OPERATING METHOD THEREOF
    • 热泵水加热器及其操作方法
    • US20110197600A1
    • 2011-08-18
    • US13125906
    • 2009-12-02
    • Mamoru HamadaFumitake UnezakiYusuke Tashiro
    • Mamoru HamadaFumitake UnezakiYusuke Tashiro
    • F25B30/02F25B13/00
    • F24H4/04F24D2200/12F25B13/00F25B47/022F25B2313/003F25B2313/0234F25B2313/02741
    • A refrigerant circuit of a heat pump water heater has a compressor, a four-way valve, a water heat exchanger, a heat storage transfer pipe contained in a heat storage water tank, an expansion valve, and an air heat exchanger and forms a refrigerating cycle by sequentially connecting them. A water circuit of the heat pump water heater has a water inlet pipeline that supplies water to the water heat exchanger, a hot water tank, and a water outlet pipeline that allows the water heat exchanger to communicate with the hot water tank, in which water is supplied to the heat storage water tank through a heat storage water tank water feed pipe branching from the water inlet pipeline by opening a heat storage water tank water feed opening/closing valve) and the water in the heat storage water tank can be discharged through the heat storage water tank water discharge pipe (by opening a heat storage water tank water discharge opening/closing valve).
    • 热泵热水器的制冷剂回路具有压缩机,四通阀,水热交换器,储热水箱内的蓄热输送管,膨胀阀,空气热交换器,形成冷藏 按顺序连接它们。 热泵热水器的水回路具有向水热交换器,热水箱和出水管道供水的进水管道,其允许水热交换器与热水箱连通,在该水槽中,水 通过开放蓄热水箱供水开闭阀从进水管道分流的蓄热水箱供水管道供给蓄热水箱,蓄热水箱内的水可以通过 蓄热水箱排水管(通过打开储热水箱排水开关阀)。
    • 9. 发明授权
    • Heat pump apparatus
    • 热泵设备
    • US09557085B2
    • 2017-01-31
    • US13384680
    • 2010-01-15
    • Mamoru HamadaFumitake UnezakiYoshihiro TakahashiKengo TakahashiKazuki OkadaHirokazu MinamisakoShinichi Uchino
    • Mamoru HamadaFumitake UnezakiYoshihiro TakahashiKengo TakahashiKazuki OkadaHirokazu MinamisakoShinichi Uchino
    • F25D21/06F25B47/00F25B13/00F25B47/02F25B49/02F24F11/00
    • F25B47/025F24F11/41F25B13/00F25B49/02F25B2400/0411F25B2600/01F25B2600/021F25B2600/2501F25B2600/2513F25B2600/2521F25B2700/21151F25B2700/21163Y02B30/741
    • In a heat pump apparatus, it is aimed to enhance efficiency of a defrost operation by reducing a loss of heat radiation during the defrost operation and reducing a compressor input during the defrost operation. The heat pump apparatus includes a main refrigerant circuit in which a compressor, a first heat exchanger, an expansion mechanism, and a second heat exchanger are connected sequentially, and also includes a bypass circuit including an on-off valve and providing a connection by bypassing the expansion mechanism. The main refrigerant circuit includes a four-way valve that switches between a heating operation and the defrost operation by switching an order in which the refrigerant circulates through the main refrigerant circuit. The main refrigerant circuit also includes a first temperature detection unit and a second temperature detection unit. Based on values detected by these temperature detection units, a degree of superheat of the first heat exchanger during the defrost operation is computed. When the heating operation is switched to the defrost operation, the heat pump apparatus increases a circulation amount of the refrigerant circulating through the refrigerant circuit by opening the on-off valve, and also controls an operation frequency of the compressor such that the degree of superheat is at a predetermined target value.
    • 在热泵装置中,旨在通过减少除霜操作期间的热辐射损失来提高除霜操作的效率,并且在除霜操作期间减少压缩机输入。 热泵装置包括:主制冷剂回路,其中压缩机,第一热交换器,膨胀机构和第二热交换器依次连接,并且还包括旁通回路,旁路回路包括开关阀,并通过旁路提供连接 扩张机制。 主制冷剂回路包括四通阀,其通过切换制冷剂通过主制冷剂回路循环的顺序而在加热操作和除霜操作之间切换。 主制冷剂回路还包括第一温度检测单元和第二温度检测单元。 基于这些温度检测单元检测出的值,算出除霜运转时的第一热交换器的过热度。 当加热操作切换到除霜操作时,热泵装置通过打开开关阀来增加通过制冷剂回路循环的制冷剂的循环量,并且还控制压缩机的操作频率使得过热度 处于预定的目标值。