首页> 外文会议>2003 International Electronic Packaging Technical Conference and Exhibition; Jul 6-11, 2003; Maui, Hawaii >COMPACT THERMAL REPRESENTATIONS FOR SEVERAL FUNDAMENTAL SHAPES IN NATURAL CONVECTION
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COMPACT THERMAL REPRESENTATIONS FOR SEVERAL FUNDAMENTAL SHAPES IN NATURAL CONVECTION

机译:自然对流中几种基本形状的紧凑热表示

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In this article, general canonical forms for the effective thermal conductivities of compact heat sink models are derived using perturbation tools. The resulting approximations apply to a large number of fundamental heat sink shapes used in natural convection applications. The effective thermal conductivity is a property that can be assigned to the porous block (i.e., volume of fluid) above the heat sink base that was once occupied by the fins. The increased thermal conductivity of the fluid entering the porous block produces a reduced thermal resistance that matches that of the original heat sink. The use of a compact representation is accompanied by substantial computational savings that promote faster optimization and communication between simulation analysts and design engineers. The generalized approximations for the effective thermal conductivity presented here are numerically verified.
机译:在本文中,使用扰动工具推导了紧凑型散热器模型的有效热导率的一般规范形式。所得近似值适用于自然对流应用中使用的大量基本散热器形状。有效导热率是可以分配给曾经被散热片占据的散热器基座上方的多孔块(即,流体的体积)的属性。进入多孔块的流体的导热系数增加,产生的导热系数降低,与原始散热器的导热系数匹配。使用紧凑表示形式会带来可观的计算量节省,从而促进更快的优化以及仿真分析师和设计工程师之间的沟通。此处给出的有效导热系数的一般近似值已得到数值验证。

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