首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >The development of a volume-averaged entropy-generation function for nonequilibrium heat transfer in high-conductivity porous foams
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The development of a volume-averaged entropy-generation function for nonequilibrium heat transfer in high-conductivity porous foams

机译:高传导性多孔泡沫非平衡传热的体积平均熵产生函数的发展

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摘要

The study of entropy-generation characteristics is of great utility in the field of enhanced heat transfer. Previously, entropy-generation studies involving porous media have been restricted to local thermal equilibrium conditions; however, this assumption is not applicable to high-conductivity foams. In this work, a volume-averaged entropy-generation function suitable for use in the analysis of high-conductivity foams is developed for the condition of local thermal nonequilibrium. The constraints imposed in the derivation are reasonable for a wide variety of realistic scenarios. The derived model is employed in the analysis of a simple enhanced heat transfer device.
机译:熵产生特性的研究在增强传热领域中具有很大的实用性。以前,涉及多孔介质的熵产生研究仅限于局部热平衡条件。但是,该假设不适用于高电导率泡沫。在这项工作中,针对局部热非平衡条件,开发了适用于高电导率泡沫分析的体积平均熵产生函数。在推导中施加的约束对于各种现实情况都是合理的。导出的模型用于分析简单的增强型传热设备。

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