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Convection heat transfer from discrete heat sources in a liquid cooled rectangular channel

机译:液体冷却矩形通道中来自离散热源的对流传热

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Steady-state experiments are performed to study general convective heat transfer from an in-line four simulated electronic chips in a vertical rectangular channel using water as the working fluid. The experimental data covers a wide range for laminar flow under natural, mixed and forced convection conditions with Reynolds number based on channel hydraulic diameter ranging from 40 to 2220 and Reynolds number based on heat source length ranging from 50 to 2775, respectively. The heat flux ranges from 0.1 W/cm(2) to 0.6 W/cm(2). The inlet water temperature is at 24 degrees C. The effect of heat fluxes, flow rates and geometrical parameters such as chip number are investigated. The experimental results indicate that the heat transfer coefficient is strongly affected by Reynolds number and fully-developed values of heat transfer coefficient are reached before the first chip. Empirical correlations are developed for relations using Nusselt number, Reynolds number and Grashof number, based on channel hydraulic diameter. (c) 2005 Elsevier Ltd. All rights reserved.
机译:进行稳态实验以研究使用水作为工作流体在垂直矩形通道中从串联的四个模拟电子芯片中进行的一般对流传热。实验数据涵盖了自然,混合和强制对流条件下的层流的广泛范围,基于通道水力直径的雷诺数分别为40至2220,基于热源长度的雷诺数分别为50至2775。热通量范围从0.1 W / cm(2)到0.6 W / cm(2)。进水温度为24摄氏度。研究了热通量,流速和几何参数(例如切屑数)的影响。实验结果表明,传热系数受到雷诺数的强烈影响,并且在第一个芯片之前达到了充分发展的传热系数值。基于通道水力直径,使用Nusselt数,Reynolds数和Grashof数建立了关系的经验相关性。 (c)2005 Elsevier Ltd.保留所有权利。

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