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    • 2. 发明授权
    • Heat pump including auxiliary outdoor heat exchanger acting as defroster
and sub-cooler
    • 热泵包括辅助室外热交换器作为除霜器和副冷却器
    • US4171622A
    • 1979-10-23
    • US820003
    • 1977-07-28
    • Koichiro YamaguchiMakoto ObataMitsuo Ogawa
    • Koichiro YamaguchiMakoto ObataMitsuo Ogawa
    • F25B13/00F25B47/02F25B47/00
    • F25B47/022F25B13/00F25B2313/02542
    • A heat pump including an indoor heat exchanger, a main outdoor heat exchanger and an auxiliary outdoor heat exchanger provided underneath the main outdoor heat exchanger and connected between the indoor and main outdoor heat exchangers in a closed refrigerant flow circuit. The refrigerant flow circuit includes a compressor and a reversal valve which can be adjusted (1) during cooling operation to direct the hot compressed gaseous refrigerant from the compressor to the main outdoor heat exchanger and thence to the auxiliary heat exchanger acting as a sub-cooler into the indoor heat exchanger for extracting heat from air of the interior of a building and (2) during heating operation to direct the hot compressed gaseous refrigerant to the indoor heat exchanger to supply heat to the indoor air and then to the auxiliary heat exchanger now acting as a defroster for melting a block of ice which may have accumulated under the main outdoor heat exchanger and into the main outdoor heat exchanger.
    • 一种包括室内热交换器,主室外热交换器和辅助室外热交换器的热泵,其设置在主室外热交换器的下面,并且在封闭的制冷剂流动回路中连接在室内和室外热交换器之间。 制冷剂流动回路包括压缩机和反转阀,其可以在冷却操作期间被调节(1),以将热压缩的气态制冷剂从压缩机引导到主室外热交换器,并且然后到辅助热交换器作为副冷却器 进入用于从建筑物内部的空气中提取热量的室内热交换器和(2)在加热操作期间,将热压缩的气态制冷剂引导到室内热交换器,以便现在向室内空气供热,然后到辅助热交换器 作为用于熔化可能积聚在主室外热交换器下方并进入主室外热交换器的冰块的除霜器。
    • 5. 发明授权
    • Three coil electric heat pump
    • 三线电热泵
    • US5771699A
    • 1998-06-30
    • US720581
    • 1996-10-02
    • Henderson F. Ponder
    • Henderson F. Ponder
    • F24F11/00F25B13/00F25B47/02F25B41/00F25B47/00
    • F25B13/00F24F11/0086F25B47/02F24F2011/0087F25B2313/0251F25B2313/02531F25B2313/02533F25B2313/02542F25B2347/021
    • An air conditioning system usually referred to as an electric heat pump, which employs reverse cycle refrigeration apparatus to condition air inside a building for heating in the winter months, and for cooling in the summer months, utilizing one heat exchanger coil disposed in heat exchange relation to the flow of conditioned air circulating within a building, and two heat exchanger coils disposed in heat exchange relation to the flow of ambient air circulating outside a building, wherein each said heat exchanger coil comprises a separate and singular component part of a single air conditioning circuit connected to, and served by one single compressor; and wherein, each of the said outside heat exchanger coils are designed to change functions independent of the other, from that of an evaporator, to that of a condenser, for the purpose of inhibiting the accumulation of frost on, and/or removing frost from said outside heat exchanger coil when the heat pump is operating in the heating mode without reversing the flow of refrigerant within, or impeding the flow of refrigerant to said inside heat exchanger coil, whereby said inside heat exchanger coil will continue to function in the condenser mode, and will continue to furnish heat to the inside of a building during the defrost cycle of either of the said outside heat exchanger coils, and whereby heat generated by one said outside heat exchanger coil during the defrost cycle of that coil will be reabsorbed into the heat pump system via the other outside heat exchanger coil and circulated through the same refrigeration circuit, in a manner that will improve the efficiency of said heat pump.
    • 一种通常称为电热泵的空调系统,其采用逆循环冷冻装置来在冬季用于调节建筑物内的加热空气,并在夏季用于冷却,利用一个以热交换关系设置的换热器盘管 涉及在建筑物内循环的调节空气的流动,以及与循环在建筑物外面的环境空气的热交换关系设置的两个热交换器盘管,其中每个所述热交换器盘管包括单个空调的单独的和单独的组成部分 电路连接并由一个单一的压缩机服务; 并且其中,每个所述外部热交换器盘管被设计成将蒸发器的功能与蒸发器的功能相互独立地改变为冷凝器的功能,以便抑制霜冻的积聚和/或去除霜冻 当热泵在加热模式下工作而不使制冷剂的流动反转,或妨碍制冷剂流向所述内部热交换器盘管时,所述内部热交换器盘管将继续在冷凝器模式中工作 并且将在所述外部热交换器线圈中的任一个的除霜循环期间继续向建筑物的内部供热,并且由此在该线圈的除霜循环期间由一个所述外部热交换器线圈产生的热将被再吸收到 热泵系统经由另一外部热交换器盘管并循环通过相同的制冷回路,以提高所述热泵的效率 p。
    • 8. 发明申请
    • Apparatus and method for controlling heating operation in heat pump system
    • 热泵系统加热运行控制装置及方法
    • US20050257557A1
    • 2005-11-24
    • US10911700
    • 2004-08-05
    • Sim ChinDeok Huh
    • Sim ChinDeok Huh
    • F25B30/00F25B13/00F25B47/02
    • F25B13/00F25B47/025F25B2313/02542F25B2347/021
    • There is provided an air conditioner, and more particularly, an apparatus and method for controlling a heating operation in a heat pump system, in which a continuous heating operation is provided. 1. The apparatus for controlling a heating operation in a heat pump system includes: at least one compressor for compressing a refrigerant into a high-temperature and high-pressure refrigerant vapor; a passage switching unit for switching a refrigerant circulation passage depending on a heating mode or a cooling mode; an indoor heat exchanger for condensing the high-temperature and high-pressure refrigerant vapor for a heating operation or a defrosting/heating operation of the heating mode; an expansion unit through which the condensed refrigerant passes during the defrosting/heating operation; an outdoor heat exchanger for defrosting at least one tube region by using the condensed refrigerant discharged from the expansion unit; and a defrosting control unit for expanding and decompressing the refrigerant that flows between the tube regions, or for bypassing the refrigerant.
    • 提供了一种空调机,更具体地,涉及一种用于控制在其中提供连续加热操作的热泵系统中的加热操作的装置和方法。 1.一种用于控制热泵系统中的加热操作的装置,包括:用于将制冷剂压缩成高温高压制冷剂蒸气的至少一个压缩机; 通道切换单元,用于根据加热模式或冷却模式切换制冷剂循环通道; 室内热交换器,用于冷凝用于加热操作的高温和高压制冷剂蒸汽或加热模式的除霜/加热操作; 在除霜·加热运转中冷凝后的制冷剂经过的膨胀机构; 室外热交换器,用于通过使用从膨胀单元排出的冷凝的制冷剂来除霜至少一个管区域; 以及除霜控制单元,其用于使在所述管区域之间流动的制冷剂膨胀和减压,或用于绕过所述制冷剂。
    • 10. 发明授权
    • Heat pump equipment
    • 热泵设备
    • US06751976B2
    • 2004-06-22
    • US09974813
    • 2001-10-12
    • Albert Robert Lowes
    • Albert Robert Lowes
    • F25B1300
    • F25B40/00F25B13/00F25B2313/0251F25B2313/02531F25B2313/02533F25B2313/0254F25B2313/02541F25B2313/02542F25B2313/02543F25B2313/02741F25B2313/02743F25B2341/066
    • Heat pump equipment comprising at least three heat exchangers, one of which is intended to be located in an enclosed region and the other two of which are intended to be located outside the enclosed region. Each heat exchanger has a delta connection end connected in heat-exchange fluid communication with a delta arrangement. The delta connection end of each heat exchanger is connected to both of the delta connection ends of the other two heat exchangers via the delta arrangement. There are three fluid-expansion devices, one between the two connections of each pair of adjacent connections of the heat exchangers to the delta arrangement. The present invention extends to heat pump equipment comprising at least three heat exchangers connected in a heat-exchange fluid circuit, one of which heat exchangers is intended to be located in an enclosed region and another of which is intended to be located outside the enclosed region. A third one of the heat exchangers is arranged so that air which flows through an aperture in a wall which forms a boundary of the enclosed region passes over the said third heat exchanger.
    • 包括至少三个热交换器的热泵设备,其中一个热交换器旨在位于封闭区域中,另外两个热交换器旨在位于封闭区域外部。 每个热交换器具有以三角形排列与热交换流体连通的三角形连接端。 每个热交换器的三角形连接端通过三角形排列与另外两个热交换器的三角形连接端连接。 有三个流体膨胀装置,一个在热交换器的每对相邻连接的两个连接之间到三角形排列。本发明延伸到热泵设备,其包括在热交换流体回路中连接的至少三个热交换器 其中一个热交换器旨在位于封闭区域中,另一个热交换器旨在位于封闭区域外部。 第三个热交换器被布置成使得流过形成封闭区域的边界的壁中的孔的空气通过所述第三热交换器。