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    • 1. 发明授权
    • Flat tube evaporator with enhanced refrigerant flow passages
    • 具有增强制冷剂流通道的扁平管式蒸发器
    • US07080683B2
    • 2006-07-25
    • US10866905
    • 2004-06-14
    • Mohinder Singh BhattiShrikant Mukund JoshiSunil S. Mehendale
    • Mohinder Singh BhattiShrikant Mukund JoshiSunil S. Mehendale
    • F28F1/42
    • F28F1/022F28D1/05391F28D2021/0071
    • A heat exchanger for a heating, ventilating and air conditioning system comprises a plurality of heat exchange tubes extending between a pair of spaced header tanks and arranged in groups of tubes with varying number of tubes in each group to cause a refrigerant to flow in multiple passes in the interior of the tubes across another fluid flowing on the exterior of the tubes. The heat exchange tubes comprise a plurality of flow passages having at least one corner formed by a pair of straight or arcuate sides with an included angle of less than or equal to ninety degrees, more preferably less than or equal to thirty degrees, to promote intense pool boiling within the flow passages. In addition to at least one corner region, the flow passage has a passage-specific optimal hydraulic diameter determined by the relationship between the optimal hydraulic diameter of the passage and the optimal hydraulic diameter of a baseline circular passage.
    • 用于加热,通风和空调系统的热交换器包括多个热交换管,该热交换管在一对隔开的集水箱之间延伸,并且在每组中以不同数量的管排成一组管,以使制冷剂在多次通过 在管的内部横跨在管的外部流动的另一种流体。 热交换管包括多个流动通道,其具有由一对直线或弓形侧面形成的至少一个角部,其中夹角小于或等于九十度,更优选小于或等于三十度,以促进强烈 泳池在流动通道内沸腾。 除了至少一个角区域之外,流动通道具有由通道的最佳水力直径与基线圆形通道的最佳水力直径之间的关系确定的通道特定的最佳水力直径。
    • 2. 发明申请
    • Evaporative heat exchanger for cooling a refrigerant
    • 用于冷却制冷剂的蒸发式换热器
    • US20090178426A1
    • 2009-07-16
    • US12009026
    • 2008-01-16
    • Mohinder Singh BhattiIlya ReyzinShrikant Mukund Joshi
    • Mohinder Singh BhattiIlya ReyzinShrikant Mukund Joshi
    • F28D5/02F28D7/16
    • F28D5/02F25B39/04F25B2339/041
    • An evaporative heat exchanger for cooling a hot refrigerant having a core of alternatively stacked dry and wet plates. Each dry plate includes a dry side defining a plurality of dry channels in a first direction, a series of ports distributed along the dry channels, a wet side, and a refrigerant cooling section. Each wet plate includes a wet side adjacent to and cooperates with the wet side of the dry plate to define a plurality of wet channels in a second direction. The dry channels, ports, and wet channels define a labyrinth for the air flow, which evaporates the liquid contained in the wet channels resulting in a cooling of the refrigerant. The refrigerant cooling section is integral with the outboard of the dry plate and adjacent to an end section of the wet channels to provide enhanced refrigerant cooling.
    • 一种蒸发式热交换器,用于冷却具有交替堆叠干湿板的芯的热制冷剂。 每个干板包括在第一方向上限定多个干燥通道的干燥侧面,沿着干燥通道分布的一系列端口,湿侧和制冷剂冷却部分。 每个湿板包括与干板相邻并与湿侧配合的湿侧以在第二方向上限定多个湿通道。 干燥的通道,端口和湿通道为空气流动定义了迷宫,这会使包含在湿通道中的液体蒸发,从而冷却制冷剂。 制冷剂冷却部分与干板的外侧相邻并且与湿通道的端部部分相邻,以提供增强的制冷剂冷却。
    • 4. 发明授权
    • Heat dissipation element for cooling electronic devices
    • 用于冷却电子设备的散热元件
    • US07509995B2
    • 2009-03-31
    • US10840410
    • 2004-05-06
    • Mohinder Singh BhattiIlya ReyzinDebashis GhoshShrikant Mukund Joshi
    • Mohinder Singh BhattiIlya ReyzinDebashis GhoshShrikant Mukund Joshi
    • F28F7/00H05K7/20
    • F28F3/04F28D15/0233F28F13/00
    • A heat dissipation element for cooling an electronic device is disclosed. The heat dissipation element has a top surface and a bottom surface for mounting the electronic device to be cooled thereto. The top surface defines a heat dissipation area for dissipating heat from the electronic device and a plurality of heat transfer fins project upwardly from the top surface and are coextensive with the heat dissipation area. Each of the heat transfer fins defines a plurality of steps having a rise and a run and each of the steps extend across the heat dissipation area for maximizing an amount of heat dissipated from the electronic device. The heat dissipation element is particularly useful in either one of a cold plate assembly used with a liquid cooled unit (LCU) or a boiler plate assembly used with a thermosiphon cooling unit (TCU).
    • 公开了一种用于冷却电子设备的散热元件。 散热元件具有用于安装要冷却的电子设备的顶表面和底表面。 顶表面限定了用于从电子设备散热的散热区域,并且多个传热翅片从顶表面向上突出并且与散热区域共同延伸。 每个传热翅片限定了具有上升和下降的多个台阶,并且每个台阶延伸穿过散热区域以最大化从电子设备散发的热量。 散热元件在与液体冷却单元(LCU)一起使用的冷板组件或与热虹吸冷却单元(TCU)一起使用的锅炉板组件中的任一个中特别有用。
    • 10. 发明授权
    • Low profile thermosiphon
    • 低调热虹吸
    • US07422052B2
    • 2008-09-09
    • US11407452
    • 2006-04-20
    • Ilya ReyzinMohinder Singh BhattiShrikant Mukund Joshi
    • Ilya ReyzinMohinder Singh BhattiShrikant Mukund Joshi
    • F28D15/02
    • H01L23/427H01L2924/0002H01L2924/00
    • A thermosiphon cooling assembly for dissipating heat generated by an electronic device includes a housing having a housing top, housing bottom and opposing sides. The opposing sides extend between the housing top and the housing bottom to define a low profile entrance and a low profile exit. A refrigerant is disposed within one or more boiling chambers. Heat generated by the electronic device is transferred to the refrigerant by the boiling chambers for liquid-to-vapor transformation. Condenser tubes having a bottom end and a top end extend from the boiling chambers at a diagonally upward angle across the sides between the housing bottom and housing top. The condenser tubes receive and condense vapor boiled off from the refrigerant. Air moving devices axially move air through the housing. Air is flowed across the condenser tubes to facilitate condensation.
    • 用于耗散由电子设备产生的热量的热虹吸管冷却组件包括具有壳体顶部,壳体底部和相对侧面的壳体。 相对的侧面在壳体顶部和壳体底部之间延伸以限定低轮廓入口和低轮廓出口。 制冷剂设置在一个或多个沸腾室内。 由电子装置产生的热量通过沸腾室转移至制冷剂进行液 - 气转化。 具有底端和顶端的冷凝器管从沸腾室以对角线向上的角度延伸穿过壳体底部和壳体顶部之间的侧面。 冷凝器管接收并冷凝从制冷剂中蒸发的蒸气。 空气移动装置将空气轴向移动通过壳体。 空气流过冷凝器管,以便冷凝。