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Heat Transfer in Porous Graphite Foams

机译:多孔石墨泡沫的传热

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摘要

Measured values of heat transfer and pressure loss are presented for a variety of porous graphite foams in subsonic turbulent airflow. These foams were developed over the last decade to find combinations of high conductivity, porosity, strength, and low density suitable for application to rapid cooling of electronics and to corrosionless heat-exchangers. Measured maxima in the thermal performance that is the ratio of heat transfer to pressure loss, were correlated the pore structure obtained from scanning electron microscopy, to show a linear dependence of thermal performance on the average diameter of interpore windows representative of the cross-sectional area through which cooling air flows. For the same heat transfer, measured pressure losses were reduced by over two orders of magnitude by increasing pore and window diameters. However, the best thermal performance of porous graphite foams that were strong enough for industrial application, had measured pressure losses that were more than an order of magnitude greater than losses in conventional finned heat exchangers
机译:给出了亚音速湍流中各种多孔石墨泡沫的传热和压力损失的测量值。这些泡沫是在过去十年中开发的,旨在发现高导电性,孔隙率,强度和低密度的组合,这些组合适用于电子产品的快速冷却和无腐蚀的热交换器。测得的热性能最大值即传热与压力损失之比,与通过扫描电子显微镜获得的孔结构相关,以显示热性能对代表横截面积的孔间窗口平均直径的线性依赖性冷却空气从中流过。对于相同的传热,通过增加孔径和窗口直径,可将测得的压力损失减少两个数量级以上。但是,多孔石墨泡沫的最佳热性能足以满足工业应用,因此测得的压力损失比常规翅片式换热器的损失大一个数量级。

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