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    • 13. 发明授权
    • Heat pump according to the adsorption principle
    • 热泵根据吸附原理
    • US09416998B2
    • 2016-08-16
    • US13508208
    • 2010-11-08
    • Roland Burk
    • Roland Burk
    • F25B17/00F25B30/04F25B17/08F25B30/00F25B30/02F25B30/06F25B13/00
    • F25B30/04F25B13/00F25B17/00F25B17/083F25B30/00F25B30/02F25B30/06F25B2600/2507Y02A30/278Y02B30/64
    • The invention relates to a heat pump according to the adsorption principle, comprising a plurality of hollow elements each having an adsorbent, wherein a working medium is enclosed in each of the hollow elements is displaceable between the adsorbent and a phase change area, wherein a heat-transporting fluid in a variable fluid circuit can flow through the hollow elements by means of a valve arrangement. The hollow elements are brought into thermal contact with the fluid in the area of the adsorbent, wherein the flow through the hollow elements changes cyclically with the fluid, wherein at least two of the hollow elements are flown through parallel from the fluid at least in one, in particular each position of the valve arrangement, and at least two of the hollow elements are flown through serially one after the other.
    • 本发明涉及一种根据吸附原理的热泵,其包括多个中空元件,每个中空元件均具有吸附剂,其中每个中空元件中封入工作介质可在吸附剂和相变区域之间移动,其中热量 可变流体回路中的输送流体可以通过阀装置流过中空元件。 中空元件与吸附剂区域中的流体热接触,其中通过中空元件的流动与流体循环变化,其中至少两个中空元件至少在一个流体中与流体平行地流动 ,特别是阀装置的每个位置,并且至少两个中空元件一个接一个地连续地流动。
    • 14. 发明授权
    • Refrigerant charge management in a heat pump water heater
    • 热泵热水器中的制冷剂充电管理
    • US09383126B2
    • 2016-07-05
    • US14278982
    • 2014-05-15
    • NORTEK GLOBAL HVAC LLC
    • Jie ChenJustin W. Hampton
    • F25B30/00F25B30/02F25B30/06F25B41/04F25B40/04F25B29/00F25B13/00F24D19/10
    • F25B29/003F24D19/1072F25B13/00F25B49/02F25B2313/005F25B2313/02731F25B2313/02741F25B2313/0292F25B2339/047F25B2600/2507
    • Heat pumps that heat or cool a space and that also heat water, refrigerant management systems for such heat pumps, and methods of managing refrigerant charge. Various embodiments remove idle refrigerant from a heat exchanger that is not needed for transferring heat by opening a refrigerant recovery valve and delivering the idle refrigerant from the heat exchanger to an inlet port on the compressor. The heat exchanger can be isolated by closing an electronic expansion valve, actuating a refrigerant management valve, or both. Refrigerant charge can be controlled by controlling how much refrigerant is drawn from the heat exchanger, by letting some refrigerant back into the heat exchanger, or both. Heat pumps can be operated in different modes of operation, and various components can be interconnected with refrigerant conduit. Some embodiments deliver refrigerant gas to the heat exchanger and drive liquid refrigerant out prior to isolating the heat exchanger.
    • 用于加热或冷却空间并且还加热水的热泵,用于这种热泵的制冷剂管理系统以及管理制冷剂充注的方法。 各种实施例中,通过打开制冷剂回收阀并将空闲制冷剂从热交换器输送到压缩机的入口而从热交换器中除去空转制冷剂而不需要传递热量。 可以通过关闭电子膨胀阀,致动制冷剂管理阀或两者来隔离热交换器。 可以通过控制从热交换器抽取多少制冷剂,通过使一些制冷剂返回到热交换器中或两者来控制制冷剂。 热泵可以在不同的操作模式下运行,并且各种部件可以与制冷剂管道互连。 一些实施例将制冷剂气体输送到热交换器并在隔离热交换器之前驱动液体制冷剂。
    • 15. 发明授权
    • Portable heating system and method for pest control
    • 便携式加热系统及虫害防治方法
    • US09374991B2
    • 2016-06-28
    • US14168535
    • 2014-01-30
    • Technologies Holdings Corp.
    • Timothy S. O'BrienEric P. Camenga
    • F25B30/00A01M1/20A01M1/24E04B1/72
    • A01M1/2094A01M1/24E04B1/72F24H3/002F24H9/0057F25B3/00F25B30/02F25B49/022F25B2400/01F25B2600/025F25B2700/2103F28D1/024F28D1/0472
    • A system for killing pests in an affected area of a structure comprises a heat pump unit placed within an affected area. The heat pump unit comprises an evaporator component, a condensor component, and a compressor component. The evaporator component is configured to receive a flow of water from a faucet, and transfer heat from the flow of water to a refrigerant. The condenser component is configured to receive the refrigerant from the evaporator component, and generate heated air by transferring heat from the refrigerant to air flowing through the condenser component. The heated air being emitted into the affected area is in order to raise the temperature of the affected area to a target temperature greater than 120 degrees Fahrenheit. The compressor component is configured to return the refrigerant from the evaporator component of the heat pump unit to the condenser component of the heat pump unit.
    • 用于杀死结构的受影响区域中的害虫的系统包括放置在受影响区域内的热泵单元。 热泵单元包括蒸发器部件,冷凝器部件和压缩机部件。 蒸发器部件构造成从龙头接收水流,并将热量从水流传递到制冷剂。 冷凝器部件构造成从蒸发器部件接收制冷剂,并且通过将热量从制冷剂传递到流过冷凝器部件的空气来产生加热的空气。 发射到受影响区域的加热空气是为了将受影响的区域的温度升高到大于120华氏度的目标温度。 压缩机部件构造成将制冷剂从热泵单元的蒸发器部件返回到热泵单元的冷凝器部件。
    • 17. 发明申请
    • HIGH PERFORMANCE HEAT PUMP UNIT
    • 高性能热泵单元
    • US20140331708A1
    • 2014-11-13
    • US14364491
    • 2012-12-12
    • STP S.R.L.
    • Gianfranco Pellegrini
    • F25B30/00
    • F25B30/00F24D11/02F24D17/02F24D2200/12
    • A heat pump unit (1) comprises at least one main circuit (2) adapted to perform a main heat pump cycle with a respective operating fluid, which comprises: a main condenser (S4) adapted to perform the condensation of the operating fluid of the main heat pump cycle and intended to be connected to an external circuit of a first thermal user plant (10) in a heating operating mode of said heat pump unit (1); a first heat exchanger (S3), connected downstream of the main condenser (S4) and upstream of expansion means (L2) of said the main circuit (2), adapted to perform an undercooling of the operating fluid of the main heat pump cycle after the condensation of the same in the main condenser (S4), and a main evaporator (S8) adapted to perform the evaporation of the operating fluid of the main heat pump cycle and intended to be connected to an external circuit of a heat sink (20) in a heating operating mode of said heat pump unit (1). The first heat exchanger (S3) is selectively connectable to the external circuit of the first thermal user plant (10) so as to be in series with the main condenser (S4) in said external circuit.
    • 热泵单元(1)包括适于与相应的工作流体执行主热泵循环的至少一个主回路(2),其包括:主冷凝器(S4),适于执行所述工作流体的冷凝 主要热泵循环并且旨在在所述热泵单元(1)的加热操作模式中连接到第一热使用设备(10)的外部电路; 连接在所述主回路(2)的所述主冷凝器(S4)的下游侧和所述膨胀装置(L2)的上游的第一热交换器(S3),其适于对所述主热泵循环的工作流体进行过冷 在主冷凝器(S4)中冷凝,以及主蒸发器(S8),其适于执行主热泵循环的工作流体的蒸发并且要连接到散热器(20)的外部电路 )在所述热泵单元(1)的加热操作模式中。 第一热交换器(S3)可选择地连接到第一热用户设备(10)的外部电路,以便与所述外部电路中的主电容器(S4)串联。
    • 19. 发明申请
    • HEAT PUMP SYSTEM AND METHOD OF COOLING AND/OR HEATING BY MEANS OF SAID SYSTEM
    • 热泵系统及其系统的冷却和/或加热方法
    • US20140196482A1
    • 2014-07-17
    • US14237051
    • 2012-08-02
    • Gianfranco Pelligrini
    • Gianfranco Pelligrini
    • F25B25/02F25B27/02F25B30/00
    • F25B25/02F25B7/00F25B27/02F25B30/00Y02A30/274
    • A heat pump system (100) comprising a first hydraulic circuit (1) suitable to carry out a heat pump cycle in solution with a first operating fluid which, during part of said cycle, is combined with at least one auxiliary substance so as to form a material system therewith, and a second hydraulic circuit (2) adapted to carry out a compression heat pump cycle with a second operating fluid. The first hydraulic circuit (1) comprises a first treatment device (10) for the material system for separating from the material system at least a fraction of the first operating fluid; a first condenser (11) for at least partially condensing the first operating fluid which has been separated; a first evaporator (13) for at least partially evaporating the first operating fluid which has been condensed, and a second treatment device (14) for the material system for again incorporating in the material system the first operating fluid which has been evaporated. The second hydraulic circuit (2) comprises a second condenser (21) for at least partially condensing the second operating fluid and an evaporator (23) for evaporating the second operating fluid which has been condensed. The second condenser thermally coupled with the first treatment device (10) of the material system for transferring heat released from the second operating fluid at the second condenser (23) to the first treatment device (21) to separate said at least a fraction of the first operating fluid from said material system. A method of cooling and/or heating implementable by means of said heat pump system (100) is also described.
    • 一种热泵系统(100),包括适于在第一工作流体中进行溶液中的热泵循环的第一液压回路(1),所述第一工作流体在所述循环的一部分期间与至少一种辅助物质组合以形成 一种材料系统,以及适于用第二工作流体执行压缩热泵循环的第二液压回路(2)。 第一液压回路(1)包括用于材料系统的第一处理装置(10),用于与材料系统分离至少一部分第一工作流体; 用于至少部分地冷凝已经分离的第一工作流体的第一冷凝器(11) 用于至少部分地蒸发已经冷凝的第一工作流体的第一蒸发器(13)和用于材料系统的第二处理装置(14),用于再次在材料系统中并入已蒸发的第一工作流体。 第二液压回路(2)包括用于至少部分地冷凝第二工作流体的第二冷凝器(21)和用于蒸发已经冷凝的第二工作流体的蒸发器(23)。 第二冷凝器与材料系统的第一处理装置(10)热耦合,用于将在第二冷凝器(23)处从第二工作流体释放​​的热量传递到第一处理装置(21),以将至少一部分 来自所述材料系统的第一工作流体。 还描述了借助于所述热泵系统(100)可实施的冷却和/或加热方法。