首页> 外文会议>ASME international technical conference and exhibition on packaging and integration of electronic and photonic microsystems >PERFORMANCE AND INTEGRATION IMPLICATIONS OF ADDRESSING LOCALIZED HOTSPOTS THROUGH TWO APPROACHES: CLUSTERING OF MICRO PIN-FINS AND DEDICATED MICROGAP COOLERS
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PERFORMANCE AND INTEGRATION IMPLICATIONS OF ADDRESSING LOCALIZED HOTSPOTS THROUGH TWO APPROACHES: CLUSTERING OF MICRO PIN-FINS AND DEDICATED MICROGAP COOLERS

机译:通过两种方法解决本地热点的性能和集成含义:微型针鳍和专用微型间隙冷却器的聚类

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An evaluation of two approaches to localized hotspot cooling is conducted through both numerical modeling and experimental demonstration, with the advantages and limitations of each approach highlighted. The first approach, locally increasing the density of pins in a micro pin fin heat sink, was shown through numerical modeling to deliver a factor of two enhancement in effective heat transfer coefficient by doubling the pin density near the hotspot. This simpler approach to maintaining temperature uniformity eliminates the need for hotspot specific fluid routing and delivery, and also has minimal impact on the larger flow field. Dedicated hotspot coolers, on the other hand, have the ability to dissipate significantly larger heat fluxes while maintaining manageable pressure drops, because the flow rate to the dedicated cooler can be closely matched to the demands of the hotspot. Dissipation of hotspot heat fluxes in excess of 2 kW/cm2 is demonstrated experimentally using a two phase dedicated hotspot cooler. However, dedicated coolers require additional fluidic routing and manifolding to efficiently deliver the coolant to the hotspot. These integration concerns are considered in concert with the performance of the hotspot cooler itself to enable better informed thermal design for both system level and device level cooling.
机译:通过数值模型和实验演示对两种局部热点冷却方法进行了评估,并突出了每种方法的优点和局限性。通过数值模型表明,第一种方法是局部增加微引脚翅片散热器中引脚的密度,通过将热点附近的引脚密度加倍,有效传热系数提高了两倍。这种更简单的保持温度均匀性的方法消除了对热点特定的流体布管和输送的需求,并且对较大的流场影响最小。另一方面,专用热点冷却器具有消散较大的热流的能力,同时保持可控的压降,因为专用冷却器的流量可以与热点的需求紧密匹配。使用两阶段专用热点冷却器,通过实验证明了超过2 kW / cm2的热点热通量的耗散。但是,专用的冷却器需要额外的流体路由和歧管,以有效地将冷却剂输送到热点。这些集成问题应与热点冷却器本身的性能配合考虑,以便为系统级和设备级冷却提供更好的信息热设计。

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