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Performance Analysis of Double-Layer Microchannel Heat Sinks under Non-Uniform Heating Conditions with Random Hotspots

机译:随机热点非均匀加热条件下双层微通道散热器的性能分析

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摘要

Performance analysis of double-layer microchannel heat sinks was performed under non-uniform heating conditions having randomly distributed hotspots. Two parallel-channel (parallel-flow and counter-flow) and one cross-channel (transverse-flow) designs of double-layer heat sink were evaluated with three sets of heating schemes. Each set of heating scheme consisted of eleven randomly distributed hotspots generated by Latin hypercube sampling. The heat flux, area, and location of the hotspots were selected as the design parameters. Conjugate heat transfer analysis of the heat sinks was performed by solving three-dimensional Navier–Stokes and energy equations. Water with temperature-dependent properties was selected as the coolant. The thermal resistance, pressure drop, maximum temperature rise, and temperature variation among hotspots were evaluated for all the heat sinks. The transverse-flow microchannel heat sink exhibited the lowest thermal resistance, temperature rise and temperature variation among the hotspots throughout the specified range of flow rate. The lowest pressure drop was exhibited by the counter-flow heat sink.
机译:在具有随机分布的热点的非均匀加热条件下进行双层微通道散热器的性能分析。利用三套加热方案评估了双层散热器的两个平行通道(平行流和逆流)和一个交叉通道(横向流)设计。每套加热方案均由拉丁超立方体采样生成的11个随机分布的热点组成。选择热点的热通量,面积和位置作为设计参数。散热器的共轭传热分析是通过求解三维Navier-Stokes和能量方程进行的。选择具有温度依赖性的水作为冷却剂。对所有散热器评估了热点之间的热阻,压降,最大温升和温度变化。在指定的流量范围内,横向流微通道散热器在热点中表现出最低的热阻,温度升高和温度变化。逆流散热器显示出最低的压降。

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