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    • 6. 发明授权
    • HVAC system with refrigerant venting
    • HVAC系统与制冷剂排放
    • US06907748B2
    • 2005-06-21
    • US10606874
    • 2003-06-26
    • Prasad Shripad KadleJames Allen BakerWilliam James KumpfMahmoud GhodbaneLawrence P. Scherer
    • Prasad Shripad KadleJames Allen BakerWilliam James KumpfMahmoud GhodbaneLawrence P. Scherer
    • B60H1/00B60H1/32F25B41/00F25B49/00
    • B60H1/00978B60H1/3225F25B41/00F25B49/005F25B2500/222
    • Each blow-off valve includes a valve body with a first movable wall defining a portion of the liquid fluid passage therein and a second movable wall defining a portion of the suction fluid passage therein. An actuator interconnects the movable walls for simultaneously moving the walls and opening the fluid passages in response to the electrical leakage-warning signal. In the species of FIGS. 2 and 3, the movable walls are integrally united with the valve body and include frangible sections that are fractured by an explosive squib to separate the movable walls from the body to simultaneously open the liquid and suction fluid passages. In the species of FIG. 5, the movable walls are separate valve elements disposed in a circular bore that opens the passages to the ambient surroundings. The actuator includes a spring, for biasing each of the valve elements out of its respective bore, and a holding device that weakens in response to the electrical leakage-warning signal.
    • 每个排放阀包括具有限定其中的液体流体通道的一部分的第一活动壁的阀体和限定其中的吸入流体通道的一部分的第二活动壁。 致动器互连可动壁,用于同时移动壁并响应于漏电警告信号打开流体通道。 在图的物种中 如图2和图3所示,可移动壁与阀体整体地结合在一起,并且包括由爆炸物点燃器断裂的易碎部分,以将活动壁与主体分开以同时打开液体和抽吸流体通道。 在图的物种 如图5所示,可移动壁是设置在圆形孔中的分离的阀元件,其将通道打开到周围环境。 致动器包括用于将每个阀元件偏压出其相应的孔的弹簧以及响应于漏电警告信号而变弱的保持装置。
    • 8. 发明授权
    • Heat pump with secondary loop air-conditioning system
    • 热泵采用二次回路空调系统
    • US07063137B2
    • 2006-06-20
    • US10754037
    • 2004-01-08
    • Prasad Shripad KadleMahmoud Ghodbane
    • Prasad Shripad KadleMahmoud Ghodbane
    • F25B29/00B60H1/32B60H1/00
    • B60H1/321B60H1/00878B60H1/00914B60H2001/00949
    • A chiller-condenser is disposed downstream of a condenser and a chiller-evaporator is disposed downstream of the chiller-condenser. A main three-way valve is disposed between the compressor and the condenser for directing flow from the compressor to the condenser in the air-conditioning mode and for directing flow from the compressor through a by-pass line to the chiller-condenser in the heat pump mode. A heat pump (HP) expansion device shown as an orifice tube expands the refrigerant in the heat pump mode and an by-pass valve is disposed between the chiller-condenser and the chiller-evaporator for directing flow from the chiller-condenser through the heat pump expansion device and to the chiller-evaporator in the heat pump mode. An air-conditioning (A/C) expansion device shown as orifice tube is disposed downstream of the condenser and upstream of the by-pass line for expanding the refrigerant in the air-conditioning mode.
    • 冷凝器设置在冷凝器的下游,冷却器 - 蒸发器设置在冷却器 - 冷凝器的下游。 在压缩机和冷凝器之间设置主要的三通阀,用于引导在空气调节模式下从压缩机流向冷凝器的流动,并且用于引导来自压缩机的流经旁通管线流到冷却器 - 冷凝器 泵模式。 显示为孔管的热泵(HP)膨胀装置以热泵模式膨胀制冷剂,并且旁通阀设置在冷却器 - 冷凝器和制冷机 - 蒸发器之间,用于引导来自冷却器 - 冷凝器的热量通过热量 泵的膨胀装置和在热泵模式下的冷却器 - 蒸发器。 设置在冷凝器下游的旁通管线的空气调节(A / C)膨胀装置,用于在空调模式下膨胀制冷剂。