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Three-Dimensional Conjugate Heat Transfer in a Horizontal Channel With Discrete Heating

机译:离散加热水平通道中的三维共轭传热

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Three-dimensional conjugate heat transfer in a rectangular duct with two discrete flush-mounted heat sources has been studied numerically in the context of cooling of electronic equipments. The Grashof number is fixed as 10~6 and the working fluid is taken as air. The effects of the spatial arrangement of heat sources, the thermal conductivity ratio of the bottom plate material to air, and the Reynolds numbers on the overall and local heat transfer in the duct are evaluated. The magnitudes of the conduction and the convection transport are compared for different parametric combinations. Of particular interest are the transverse variation in the flow, temperature and heat transfer, the interaction between the heat sources, and the effects of conjugate transport.
机译:在电子设备冷却的背景下,对具有两个离散的齐平安装热源的矩形管道中的三维共轭传热进行了数值研究。 Grashof数固定为10〜6,工作流体取为空气。评估了热源的空间布置,底板材料与空气的导热系数以及雷诺数对管道中整体和局部传热的影响。比较了不同参数组合的传导和对流传输的幅度。特别令人感兴趣的是流量,温度和热传递的横向变化,热源之间的相互作用以及共轭输运的影响。

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