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    • 7. 发明申请
    • UNITARY HEAT PUMP AIR CONDITIONER
    • 单位热泵空调
    • US20130283838A1
    • 2013-10-31
    • US13995624
    • 2012-02-16
    • Prasad S. KadleFrederick V. OddiGary S. VreelandEdward Wolfe, IVLindsey L. LeitzelScott B. Lipa
    • Prasad S. KadleFrederick V. OddiGary S. VreelandEdward Wolfe, IVLindsey L. LeitzelScott B. Lipa
    • F25B30/02
    • The disclosure relates to a unitary heat pump air conditioner (Unitary HPAC) that includes a refrigerant loop having a condenser, a refrigerant expansion device, and an evaporator hydraulically connected in series. An electrically driven compressor is provided to circulate a two-phase refrigerant through the refrigerant loop to transfer heat from the evaporator to the condenser. The unitary HPAC also includes a cold side chiller configured to hydraulically connect to a cold side coolant loop and is in thermal communication with the evaporator. The unitary HPAC further includes a hot side chiller configured to hydraulically connect to a hot side coolant loop and is in thermal communication with the condenser. The refrigerant loop transfer heat from the cold side chiller to the hot side chiller, thereby cooling the cold side coolant loop and heating the hot side coolant loop. The components of the unitary HPAC are mounted on a common platform.
    • 本发明涉及一体式热泵空调(Unitary HPAC),其包括具有冷凝器,制冷剂膨胀装置和串联液压连接的蒸发器的制冷剂回路。 提供电动压缩机以使两相制冷剂循环通过制冷剂回路以将热量从蒸发器传递到冷凝器。 单一的HPAC还包括冷侧冷却器,其被配置为液压连接到冷侧冷却剂回路并与蒸发器热连通。 整体HPAC还包括一个热侧冷却器,其被配置为液压连接到热侧冷却剂回路并与冷凝器热连通。 制冷剂回路从冷侧冷却器传递热量到热侧冷却器,由此冷却冷侧冷却剂回路并加热热侧冷却剂回路。 单一HPAC的组件安装在公共平台上。
    • 10. 发明授权
    • Air conditioning system having an improved internal heat exchanger
    • 具有改进的内部热交换器的空调系统
    • US08596080B2
    • 2013-12-03
    • US12788377
    • 2010-05-27
    • Edward Wolfe, IVPrasad Shripad KadleJames Alan BrightMingyu Wang
    • Edward Wolfe, IVPrasad Shripad KadleJames Alan BrightMingyu Wang
    • F25B41/04F25B41/00F25B43/02
    • F25B40/00F25B2400/04F25B2500/27
    • An air conditioning system having an improved internal heat exchanger (IHX) assembly. The IHX assembly includes an elongated cavity for low pressure refrigerant flow from an evaporator and an interior tube disposed within the cavity for high pressure refrigerant flow from a condenser, and a pressure equalization passage between the low and high pressure sides. The passage is large enough to allow pressures to equalize between the condenser and evaporator while the air conditioning system is inactive, so as to prevent the pressure differential that would otherwise enable the loss of refrigerant oil from the compressor, and small enough not to effect the operation of the air conditioning system. The pressure equalization passage may be a by-pass valve assembly having a reed portion that is normally open when the air conditioning system is inactive and closed when the air conditioning system is active for maximum cooling efficiency.
    • 具有改进的内部热交换器(IHX)组件的空调系统。 IHX组件包括用于来自蒸发器的低压制冷剂流的细长腔和设置在腔内的内管,用于来自冷凝器的高压制冷剂流,以及在低压侧和高压侧之间的压力平衡通道。 该通道足够大以允许冷凝器和蒸发器之间的压力相等,同时空调系统处于非活动状态,以便防止否则将导致来自压缩机的致冷剂油损失的压力差,并且足够小以致不影响 运行空调系统。 压力平衡通道可以是旁路阀组件,其具有当空调系统不活动时常开的筘部分,并且当空调系统处于活动状态时为最大冷却效率而关闭。