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Experimental investigations of forced cooling for aluminum heat sinks of high-power electronics

机译:高功率电子铝散热器强制冷却的实验研究

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An extensive experimental investigation of the forced convection cooling process of electronic equipment with metal substrates used in automobile industry is described. The study is motivated by the desire to predict the heat transfer coefficient of a heated electronic device with complex geometry. Most of the previous investigations of heat sinks have dealt with different heat sink geometry when the components are located on isolated surfaces or within channels formed by two parallel planes. Thermal conductivity of various sink materials used leads to the different cooling situations. Besides, the forced convection heat transfer is affected by the rate and propagation of the cooling air or gas flow. The wide range of the flow velocities or Reynolds numbers, two shapes of the heat sinks and their specific material make this study an important one. The details of the mathematical model used for the analysis of the experimental data obtained are presented. These include the final equation for the heat transfer coefficient as well as the procedure of the results transformation. Results and their comparisons with the data of the other authors are discussed.
机译:描述了汽车工业中使用的金属基板的电子设备强制对流冷却过程的广泛实验研究。该研究是通过预测具有复杂几何形状的加热电子器件的传热系数的希望。当部件位于隔离的表面上或由两个平行平面形成的通道内时,最先前的散热器的研究已经处理了不同的散热几何形状。所用的各种水槽材料的导热率导致不同的冷却情况。此外,强制对流传热受冷却空气或气流的速率和传播的影响。宽范围的流速或雷诺数,散热器的两个形状及其特定材料使这项研究成为重要的。介绍了用于分析所获得的实验数据的数学模型的细节。这些包括用于传热系数的最终方程以及结果变换的过程。讨论了与其他作者的数据的比较。

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