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    • 6. 发明申请
    • COUNTER-FLOW HEAT EXCHANGER WITH HELICAL PASSAGES
    • 具有通风通道的逆流热交换器
    • US20170030651A1
    • 2017-02-02
    • US14813272
    • 2015-07-30
    • General Electric Company
    • Peter Joseph Rock, JR.Matthew GoldenbergLauren Ashley HenningJeffrey Miles McMillen PrescottKevin Robert Shannon
    • F28D7/02
    • F28D7/022F28D7/0008F28D7/0033F28F1/06F28F7/02F28F2210/02F28F2255/00
    • A counter-flow heat exchanger is provided that includes: a first fluid path having a first supply tube connected to a first transition area separating the first fluid path into a first array of first passageways, with the first array of first passageways merging at a first converging area into a first discharge tube; and a second fluid path having a second supply tube connected to a second transition area separating the second fluid path into a second array of second passageways, with the second array of second passageways merge at a second converging area into a second discharge tube. The first passageways and the second passageways have a substantially helical path around the centerline of the counter-flow heat exchanger. Additionally, the first array and the second array are arranged together such that each first passageway is adjacent to at least one second passageway.
    • 提供了一种逆流式热交换器,其包括:第一流体路径,其具有连接到第一过渡区域的第一供应管道,该第一过渡区域将第一流体路径分离成第一通道的第一阵列,第一通道的第一阵列在第一通道 会聚区域成为第一放电管; 以及第二流体路径,其具有连接到第二过渡区域的第二供应管道,所述第二过渡区域将所述第二流体路径分成第二通道的第二阵列,所述第二通道的第二阵列在第二会聚区域合并成第二放电管。 第一通道和第二通道具有围绕逆流热交换器的中心线的基本螺旋形路径。 另外,第一阵列和第二阵列被布置在一起,使得每个第一通道与至少一个第二通道相邻。
    • 9. 发明授权
    • Cooling apparatuses and electronics modules having branching microchannels
    • 具有分支微通道的冷却装置和电子模块
    • US09353999B2
    • 2016-05-31
    • US13561117
    • 2012-07-30
    • Ercan Mehmet Dede
    • Ercan Mehmet Dede
    • H05K7/20F28F9/02F28F3/04F28F3/12G06F1/20F28D21/00
    • F28F9/02F28D2021/0028F28F3/048F28F3/12F28F2210/02F28F2250/04F28F2260/02
    • Electronics modules and cooling apparatuses having branching microchannels for liquid cooling by jet impingement and fluid flow are disclosed. In one embodiment, a cooling apparatus includes a heat receiving surface and an array of branching microchannel cells. Each branching microchannel cell includes an inlet manifold fluidly coupled to the heat receiving surface and a branching microchannel manifold fluidly coupled to the inlet manifold. The branching microchannel manifold includes a plurality of fins that orthogonally extend from the heat receiving surface such that the plurality of fins define a plurality of branching microchannels that is normal with respect to the heat receiving surface. The cooling apparatus further includes an outlet manifold fluidly coupled to the plurality of branching microchannels. The coolant fluid flows through the plurality of branching microchannels in a direction normal to the heat receiving surface.
    • 公开了具有用于通过喷射冲击和流体流动进行液体冷却的分支微通道的电子模块和冷却装置。 在一个实施例中,冷却装置包括热接收表面和分支微通道单元阵列。 每个分支微通道单元包括流体耦合到热接收表面的入口歧管和流体耦合到入口歧管的分支微通道歧管。 分支微通道歧管包括从热接收表面正交延伸的多个翅片,使得多个翅片限定相对于热接收表面是正常的多个分支微通道。 冷却装置还包括流体耦合到多个分支微通道的出口歧管。 冷却剂流体沿垂直于热接收表面的方向流过多个分支微通道。