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    • 3. 发明申请
    • HVAC SYSTEM WITH POWERED SUBCOOLER
    • HVAC系统与供电子系统
    • WO2006099378A1
    • 2006-09-21
    • PCT/US2006/009047
    • 2006-03-14
    • YORK INTERNATIONAL CORPORATIONKOPKO, William L.
    • KOPKO, William L.
    • F25B6/02F25B7/00F25B40/02F25B13/00F25B9/00
    • F25B6/02F25B7/00F25B9/008F25B13/00F25B40/02F25B2309/061F25B2313/02741F25B2339/047F25B2400/0417F25B2400/075F25B2400/23F25B2600/0251F25B2600/111F25B2700/2106Y02B30/743
    • An HVAC system having a main circuit (100) and a subcooler circuit (210). The main circuit includes a main circuit evaporator (140), a main circuit expansion device (126), a main circuit condenser (118, 120) and a main circuit compressor (110, 112) connected in a closed refrigerant loop. The subcooler circuit (210) includes a subcooler evaporator (222), a subcooler expansion device (256), a subcooler condenser (260) and a subcooler compressor (250) connected in a closed refrigerant loop. The subcooler evaporator is arranged and disposed to exchange heat between liquid refrigerant in the main circuit and the refrigerant in the subcooler circuit to cool the liquid refrigerant in the main circuit prior to entering the main circuit evaporator. The operation of the subcooler circuit provides an increased cooling capacity per unit of a mass flow of cooling fluid through the main circuit condenser and subcooler condenser for the HVAC system with a predetermined design efficiency.
    • 一种具有主电路(100)和过冷器电路(210)的HVAC系统。 主电路包括连接在闭合制冷剂回路中的主回路蒸发器(140),主回路膨胀装置(126),主回路冷凝器(118,120)和主回路压缩机(110,112)。 过冷却器回路(210)包括过冷却器蒸发器(222),过冷却器膨胀装置(256),过冷却器冷凝器(260)和连续在闭合制冷剂回路中的过冷却器压缩机(250)。 过冷却器蒸发器被布置和设置为在主回路中的液体制冷剂与过冷却器回路中的制冷剂之间交换热量,以在进入主回路蒸发器之前冷却主回路中的液体制冷剂。 过冷却器回路的运行通过具有预定设计效率的HVAC系统的主回路冷凝器和过冷却器冷凝器每单位的冷却流体的质量流量提供了增加的冷却能力。
    • 9. 发明申请
    • VOLUME RATIO CONTROL SYSTEM AND METHOD
    • 体积比控制系统和方法
    • WO2012037229A1
    • 2012-03-22
    • PCT/US2011/051566
    • 2011-09-14
    • JOHNSON CONTROLS TECHNOLOGY COMPANYKOPKO, William, L.
    • KOPKO, William, L.
    • F04C28/12F04C28/26
    • F04C28/12F04C2/18F04C18/16F04C28/125F04C28/26
    • A system and method for controlling the volume ratio of a compressor is provided. The system can use a port (88) or ports in a rotor cylinder to bypass vapor from the compression chamber to the discharge passage of the compressor. A control valve (90) can be used to open or close the port or ports to obtain different volume ratios in the compressor. The control valve (90) can be moved or adjusted by one or more valves that control a flow of fluid to the valve. A control algorithm can be used to control the one or more valves to move the control valve to obtain different volume ratios from the compressor. The control algorithm can control the one or more valves in response to operating parameters associated with the compressor.
    • 提供了一种用于控制压缩机的体积比的系统和方法。 该系统可以使用端口(88)或转子气缸中的端口来将蒸气从压缩室旁通到压缩机的排放通道。 可以使用控制阀(90)来打开或关闭端口以在压缩机中获得不同的体积比。 控制阀(90)可以通过一个或多个阀来移动或调节,该阀控制流体流向阀。 可以使用控制算法来控制一个或多个阀来移动控制阀以获得与压缩机不同的体积比。 控制算法可以响应于与压缩机相关联的操作参数来控制一个或多个阀。