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首页> 外文期刊>Journal of Electronic Materials >Natural convection in shallow, horizontal air layers encountered in electronic cooling
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Natural convection in shallow, horizontal air layers encountered in electronic cooling

机译:电子冷却遇到的浅水平空气层中的自然对流

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摘要

A numerical study of natural convection induced in a horizontal, enclosed air layer due to a discrete, constant heat flux source at the bottom surface is carried out in this paper. The nature of the transition from conduction to a cellularconvection regime for this discrete-heating case is characterized. Multiple sources are also considered and the results are compared to those for a single source. The governing equations of continuity, momentum, and energy conservation are formulated fora two-dimensional layer. The important parameters are the overall aspect ratio (length/ height of the layer), the ratio of source length to total length, and the Rayleigh number. The effect of varying these parameters is investigated, and heat transfercorrelations are derived, for both single and multiple sources, in the form Nu{sub}s∝(Ra) {sub}c, where Nu{sub}s is the Nusselt number averaged over each source. The value of C is found to depend strongly on the aspect ratio and the source size. Based on the heat transfer results, the tendency of each geometric configuration to fully attain transition to the convection regime is evaluated. This can provide guidelines for maintaining certain critical dimensions that best exploit natural convection effects, in systems where fan-driven cooling is not available.
机译:本文进行了数值研究,该研究是由水平,封闭的空气层在底面上的离散,恒定热流源引起的自然对流引起的。对于这种离散的加热情况,从传导到细胞对流状态的过渡的性质被表征。还考虑了多个来源,并将结果与​​单个来源的结果进行比较。为二维层制定了连续性,动量和能量守恒的控制方程式。重要的参数是总体纵横比(层的长度/高度),源长度与总长度的比率以及瑞利数。研究了改变这些参数的效果,并以Nu {sub} s∝(Ra){sub} c的形式导出了单个和多个源的传热相关性,其中Nu {sub} s是平均的努塞尔数在每个来源上。发现C的值在很大程度上取决于纵横比和源尺寸。基于传热结果,评估每种几何构型完全达到对流状态的趋势。这可以为在没有风扇驱动冷却的系统中维持最佳利用自然对流效应的某些关键尺寸提供指导。

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