Stress relieved hose routing to liquid-cooled electronics rack door
    1.
    发明授权
    Stress relieved hose routing to liquid-cooled electronics rack door 失效
    减轻软管布置到液冷电子机柜门

    公开(公告)号:US08077462B2

    公开(公告)日:2011-12-13

    申请号:US12552479

    申请日:2009-09-02

    IPC分类号: H05K7/20

    摘要: A cooling apparatus and method are provided which include an air-to-liquid heat exchanger and system coolant inlet and outlet plenums mounted to an electronics rack door along an edge of the door remote from the edge hingedly mounted to the rack. The plenums are in fluid communication with the heat exchanger and respectively include an inlet and outlet. Coolant supply and return hoses are disposed above the electronics rack and couple the inlet plenum to a coolant supply header and the outlet plenum to a coolant return header. The hoses are sufficiently long and flexible to open or close the door. A stress relief structure is attached to the top of the door and clamps the supply and return hoses in fixed relation to relieve stress on connect couplings at the ends of the hoses to the plenum inlet and outlet during opening or closing of the door.

    摘要翻译: 提供了一种冷却装置和方法,其包括空气 - 液体热交换器和系统冷却剂入口和出口集气室,其沿着门的边缘安装到电子机架门,远离铰接安装到机架的边缘。 增压室与热交换器流体连通,分别包括入口和出口。 冷却剂供应和返回软管设置在电子机架上方,并将进气室连接到冷却剂供应集管,并将出口压力室连接到冷却剂返回集管。 软管足够长且灵活以打开或关闭门。 应力消除结构连接到门的顶部,并且固定地夹紧供应和返回软管,以在门的打开或关闭期间将软管端部处的连接联接器上的压力释放到通风口入口和出口。

    ADJUSTING COOLANT FLOW RESISTANCE THROUGH LIQUID-COOLED ELECTRONICS RACK(S)
    2.
    发明申请
    ADJUSTING COOLANT FLOW RESISTANCE THROUGH LIQUID-COOLED ELECTRONICS RACK(S) 审中-公开
    通过液体冷却电子球架调整冷却剂流动阻力(S)

    公开(公告)号:US20120201005A1

    公开(公告)日:2012-08-09

    申请号:US13447457

    申请日:2012-04-16

    IPC分类号: H05K7/20

    摘要: A method is presented for adjusting coolant flow resistance through one or more liquid-cooled electronics racks. Flow restrictors are employed in association with multiple heat exchange tube sections of a heat exchange assembly, or in association with a plurality of coolant supply lines or coolant return lines feeding multiple heat exchange assemblies. Flow restrictors associated with respective heat exchange tube sections (or respective heat exchange assemblies) are disposed at the coolant channel inlet or coolant channel outlet of the tube sections (or of the heat exchange assemblies). These flow restrictors tailor coolant flow resistance through the heat exchange tube sections or through the heat exchange assemblies to enhance overall heat transfer within the tube sections or across heat exchange assemblies by tailoring coolant flow. In one embodiment, the flow restrictors tailor a coolant flow distribution differential across multiple heat exchange tube sections or across multiple heat exchange assemblies.

    摘要翻译: 提出了一种通过一个或多个液冷电子机架来调节冷却剂流动阻力的方法。 流量限制器与热交换组件的多个热交换管部分相关联地使用,或者与供给多个热交换组件的多个冷却剂供应管线或冷却剂返回管路相关联地使用。 与相应的热交换管部分(或相应的热交换组件)相关联的流量限制器设置在管部分(或热交换组件)的冷却剂通道入口或冷却剂通道出口处。 这些流量限制器通过热交换管部分或通过热交换组件来调节冷却剂流动阻力,以通过调整冷却剂流量来增强管部分内部或通过热交换组件的整体热传递。 在一个实施例中,流量限制器定制跨越多个热交换管部分或跨多个热交换组件的冷却剂流量分配差。

    APPARATUS AND METHOD FOR ADJUSTING COOLANT FLOW RESISTANCE THROUGH LIQUID-COOLED ELECTRONICS RACK(S)
    3.
    发明申请
    APPARATUS AND METHOD FOR ADJUSTING COOLANT FLOW RESISTANCE THROUGH LIQUID-COOLED ELECTRONICS RACK(S) 审中-公开
    通过液体冷却电子架(S)调节冷却剂流动阻力的装置和方法

    公开(公告)号:US20110056675A1

    公开(公告)日:2011-03-10

    申请号:US12556040

    申请日:2009-09-09

    IPC分类号: G05D23/00 F28F13/00

    摘要: Apparatuses and methods are presented for adjusting coolant flow resistance through one or more liquid-cooled electronics racks. Flow restrictors are employed in association with multiple heat exchange tube sections of a heat exchange assembly, or in association with a plurality of coolant supply lines or coolant return lines feeding multiple heat exchange assemblies. Flow restrictors associated with respective heat exchange tube sections (or respective heat exchange assemblies) are disposed at the coolant channel inlet or coolant channel outlet of the tube sections (or of the heat exchange assemblies). These flow restrictors tailor coolant flow resistance through the heat exchange tube sections or through the heat exchange assemblies to enhance overall heat transfer within the tube sections or across heat exchange assemblies by tailoring coolant flow. In one embodiment, the flow restrictors tailor a coolant flow distribution differential across multiple heat exchange tube sections or across multiple heat exchange assemblies.

    摘要翻译: 提出了通过一个或多个液冷电子机架来调节冷却剂流动阻力的装置和方法。 流量限制器与热交换组件的多个热交换管部分相关联地使用,或者与供给多个热交换组件的多个冷却剂供应管线或冷却剂返回管路相关联地使用。 与相应的热交换管部分(或相应的热交换组件)相关联的流量限制器设置在管部分(或热交换组件)的冷却剂通道入口或冷却剂通道出口处。 这些流量限制器通过热交换管部分或通过热交换组件来调节冷却剂流动阻力,以通过调整冷却剂流量来增强管部分内部或通过热交换组件的整体热传递。 在一个实施例中,流量限制器定制跨越多个热交换管部分或跨多个热交换组件的冷却剂流量分配差。

    STRESS RELIEVED HOSE ROUTING TO LIQUID-COOLED ELECTRONICS RACK DOOR
    4.
    发明申请
    STRESS RELIEVED HOSE ROUTING TO LIQUID-COOLED ELECTRONICS RACK DOOR 失效
    应力消除软管路由液体冷却电子机架门

    公开(公告)号:US20110051372A1

    公开(公告)日:2011-03-03

    申请号:US12552479

    申请日:2009-09-02

    IPC分类号: H05K7/20 B21D53/02

    摘要: A cooling apparatus and method are provided which include an air-to-liquid heat exchanger and system coolant inlet and outlet plenums mounted to an electronics rack door along an edge of the door remote from the edge hingedly mounted to the rack. The plenums are in fluid communication with the heat exchanger and respectively include an inlet and outlet. Coolant supply and return hoses are disposed above the electronics rack and couple the inlet plenum to a coolant supply header and the outlet plenum to a coolant return header. The hoses are sufficiently long and flexible to open or close the door. A stress relief structure is attached to the top of the door and clamps the supply and return hoses in fixed relation to relieve stress on connect couplings at the ends of the hoses to the plenum inlet and outlet during opening or closing of the door.

    摘要翻译: 提供了一种冷却装置和方法,其包括空气 - 液体热交换器和系统冷却剂入口和出口集气室,其沿着门的边缘安装到电子机架门,远离铰接安装到机架的边缘。 增压室与热交换器流体连通,分别包括入口和出口。 冷却剂供应和返回软管设置在电子机架上方,并将进气室连接到冷却剂供应集管,并将出口压力室连接到冷却剂返回集管。 软管足够长且灵活以打开或关闭门。 应力消除结构连接到门的顶部,并且固定地夹紧供应和返回软管,以在门的打开或关闭期间将软管端部处的连接联接器上的压力释放到通风口入口和出口。