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    • 2. 发明授权
    • Heat exchanger with multiple stage fluid expansion in header
    • 热交换器在头部有多级流体膨胀
    • US07527089B2
    • 2009-05-05
    • US10594651
    • 2005-12-28
    • Mikhail B. GorbounovJoseph J. SangiovanniIgor B. Vaisman
    • Mikhail B. GorbounovJoseph J. SangiovanniIgor B. Vaisman
    • F28F9/22
    • F25B41/06F25B13/00F25B39/028F25B2341/0662F28F1/022F28F9/0202F28F9/028
    • A heat exchanger includes a plurality of flat, multi-channel heat exchange tubes extending between spaced headers. Each heat exchange tube has an inlet end in fluid flow communication with one of the headers and an outlet opening to the other header. Each heat exchange tube has a plurality of flow channels extending longitudinally in parallel relationship from its inlet end to its outlet end. A plurality of connectors are positioned between the inlet header and the heat transfer tubes to define a flow path providing fluid flow communication between the inlet header and the inlet ends of the heat exchange tubes. Two or more flow restriction ports are arranged in the series in the flow path through each connector whereby fluid flowing from the inlet header to the flow channels of the heat exchange tube associated therewith undergoes an expansion as the fluid passes through each flow restriction port.
    • 热交换器包括在间隔的集管之间延伸的多个平坦的多通道热交换管。 每个热交换管具有与集管之一流体流动连通的入口端和到另一个集管的出口。 每个热交换管具有从其入口端到其出口端以平行关系纵向延伸的多个流动通道。 多个连接器定位在入口集管和传热管之间,以限定提供入口集管和热交换管的入口端之间的流体流动连通的流动路径。 两个或更多个流动限制口在流动路径中通过每个连接器布置在该系列中,由此当流体通过每个流动限制端口时,从入口集管流到与其相关联的热交换管的流动通道的流体经历膨胀。
    • 3. 发明申请
    • Mini-Channel Heat Exchanger With Multi-Stage Expansion Device
    • 带多级扩展装置的小型通道换热器
    • US20080251245A1
    • 2008-10-16
    • US10594651
    • 2005-12-28
    • Mikhail B. GorbounovJoseph J. SangiovanniIgor B. Vaisman
    • Mikhail B. GorbounovJoseph J. SangiovanniIgor B. Vaisman
    • F28F9/04
    • F25B41/06F25B13/00F25B39/028F25B2341/0662F28F1/022F28F9/0202F28F9/028
    • A heat exchanger includes a plurality of flat, multichannel heat exchange tubes extending between spaced headers. Each heat exchange tube has an inlet end in fluid flow communication with one of the headers and an outlet opening to the other header. Each heat exchange tube has a plurality of flow channels extending longitudinally in parallel relationship from its inlet end to its outlet end. A plurality of connectors are positioned between the inlet header and the heat transfer tubes to define a flow path providing fluid flow communication between the inlet header and the inlet ends of the heat exchange tubes. Two or more flow restriction ports are arranged in the series in the flow path through each connector whereby fluid flowing from the inlet header to the flow channels of the heat exchange tube associated therewith undergoes an expansion as the fluid passes through each flow restriction port.
    • 热交换器包括在间隔的集管之间延伸的多个平坦的多通道热交换管。 每个热交换管具有与集管之一流体流动连通的入口端和到另一个集管的出口。 每个热交换管具有从其入口端到其出口端以平行关系纵向延伸的多个流动通道。 多个连接器定位在入口集管和传热管之间,以限定提供入口集管和热交换管的入口端之间的流体流动连通的流动路径。 两个或更多个流动限制口在流动路径中通过每个连接器布置在该系列中,由此当流体通过每个流动限制端口时,从入口集管流到与其相关联的热交换管的流动通道的流体经历膨胀。
    • 6. 发明申请
    • RANKINE SYSTEM WITH GRAVITY-DRIVEN PUMP
    • 具有驱动泵的RANKINE系统
    • US20100154421A1
    • 2010-06-24
    • US12600913
    • 2007-05-25
    • Igor B. VaismanJoseph J. SangiovanniMichael F. Taras
    • Igor B. VaismanJoseph J. SangiovanniMichael F. Taras
    • F01K25/00F04B49/00
    • F01K25/10Y02E20/14
    • A gravity-driven pumping unit has an inlet valve connected to a condenser, an outlet valve connected to a boiler, and a staging zone between the inlet and outlet valves. The inlet valve, the outlet valve, the liquid line and entire path established between the condenser and boiler are oriented, sized and shaped to allow for the vapor refrigerant to freely move upward from the boiler to the condenser and to allow for the liquid refrigerant to freely drain downwards from the condenser to the boiler by gravity. A control system opens and closes the inlet and outlet valves in a proper sequence, which enables gravity-driven movement of liquid refrigerant from the condenser to the staging zone and then from the staging zone to the boiler, against a positive pressure differential between the boiler and condenser.
    • 重力驱动泵送单元具有连接到冷凝器的入口阀,连接到锅炉的出口阀以及入口阀和出口阀之间的分段区。 进口阀,出口阀,液体管线和建立在冷凝器和锅炉之间的整个通道被定向,定尺寸和成形,以允许蒸汽制冷剂自由地从锅炉向上移动到冷凝器,并允许液体制冷剂 通过重力自动从冷凝器向锅炉排水。 控制系统以适当的顺序打开和关闭入口和出口阀,这使得液体制冷剂从冷凝器到分级区域然后从分级区域到锅炉的重力驱动运动抵抗了锅炉之间的正压差 和冷凝器。