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ANALYSIS OF SINGLE-PHASE MULTI-LAYER HEAT SINKS USING A POROUS MEDIA APPROACH: INFLUENCE OF SPATIALLY VARYING POROSITY

机译:多孔介质方法的单相多层热沉降分析:空间变化孔隙度的影响

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Prior analyses and experiments have demonstrated that varying or scaling the number of fluid channels in each layer of a stacked multi-layer heat sink yields distinct advantages over traditional single-layer designs which use channels with high aspect ratios. Specifically, a design which implements scaling in order to vary the porosity (or equivalently, the number of channels) from one layer to the next allows a given thermal performance to be realized at a lower pressure drop than the corresponding non-scaled design. While previous studies use porous media theory for their analytical foundation just as the current studies do, they also focused on heat exchangers with machined channels , and have consequently been limited to discrete variation of the porosity (or number of channels) in each layer. Extending this approach by allowing for continuous porosity variation provides a generalized and powerful design method for scaled multi-layer heat exchangers by mathematically modeling them using two-equation volume averaged quantities. This approach also yields insight into the fundamental design parameters which control the performance of this class of heat exchangers, and suggests that their performance-governing parameters are similar to those which govern fin performance. This paper focuses primarily on the thermal behavior of these liquid cooled heat sinks which employ various scaling functions to define the spatial variation of porosity. Comparisons are made with available closed-form solutions as well as results available from prior studies of discretely-scaled designs. The results indicate that scaling laws which have not been investigated previously can likely yield further performance improvements relative to prior designs.
机译:先前的分析和实验已经证明,堆叠的多层散热器中的每层中的流体通道的数量不同,从传统的单层设计中使用具有高纵横比的通道的传统单层设计产生明显的优势。具体地,实现缩放的设计以便从一层到下一个层改变孔隙率(或等效,通道数)允许在比相应的非缩放设计的较低压力下降下实现给定的热性能。虽然以前的研究使用多孔媒体理论,其分析基础正如目前的研究所做的那样,它们还将热交换器聚焦在具有加工通道的热交换器上,因此因此被限制在每层中孔隙率(或通道数)的离散变化。通过允许连续的孔隙率变化来扩展该方法,提供了通过使用两级体积平均量的数学建模来缩放多层热交换器的广义和强大的设计方法。这种方法还能洞察到控制这类热交换器性能的基本设计参数,并表明它们的性能管理参数类似于控制Fin性能的性能。本文主要侧重于这些液体冷却散热器的热行为,该液体冷却散热器采用各种缩放功能来限定孔隙率的空间变化。使用可用的封闭式解决方案进行比较以及从先前的离散缩放设计中提供的结果。结果表明,尚未研究过的缩放法律可能会产生相对于先前设计的进一步性能改进。

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