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首页> 外文期刊>Journal of Electronic Packaging >The Influence of Material Properties and Spreading Resistance in the Thermal Design of Plate Fin Heat Sinks
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The Influence of Material Properties and Spreading Resistance in the Thermal Design of Plate Fin Heat Sinks

机译:材料特性和扩展阻力在板翅式散热器热设计中的影响

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The thermal design of plate fin heat sinks can benefit from optimization procedures where all design variables are simultaneously prescribed, ensuring the best thermodynamic and air flow characteristic possible. While a cursory review of the thermal network established between heat sources and sinks in typical plate fin heat sinks would indicate that the film resistance at the fluid-solid boundary dominates, it is shown that the effects of other resistance elements, such as the spreading resistance and the material resistance, although of lesser magnitude, play an important role in the optimization and selection of heat sink design conditions. An analytical model is presented for calculating the best possible design parameters for plate fin heat sinks using an entropy generation minimization procedure with constrained variable optimization. The method characterizes the contribution to entropy production of all relevant thermal resistances in the path between source and sink as well as the contribution to viscous dissipation associated with fluid flow at the boundaries of the heat sink. The minimization procedure provides a fast, convenient method for establishing the "best case" design characteristics of plate fin heat sinks given a set of prescribed boundary conditions. It is shown that heat sinks made of composite materials containing nonmetallic constituents, with a thermal conductivity as much as an order of magnitude less that typical metallic heat sinks, can provide an effective alternative where performance, cost, and manufacturability are of importance. It is also shown that the spreading resistance encountered when heat flows from a heat source to the base plate of a heat sink, while significant, can be compensated for by making appropriate design modifications to the heat sink.
机译:板翅式散热器的热设计可受益于优化程序,该程序同时规定了所有设计变量,从而确保了最佳的热力学和空气流动特性。粗略回顾一下典型的板翅式散热器中的热源与散热器之间建立的热网络会表明,在流固边界处的薄膜电阻占主导地位,但显示出其他电阻因素(例如散布电阻)的影响材料电阻虽然较小,但在散热器设计条件的优化和选择中起着重要作用。提出了一种分析模型,该模型使用带有约束变量优化的熵生成最小化程序来计算板翅片散热器的最佳可能设计参数。该方法表征了在源和散热器之间的路径中所有相关热阻对熵产生的贡献,以及与散热器边界处的流体流动相关的对粘性耗散的贡献。最小化过程提供了一种快速,便捷的方法,以在给定的一组规定边界条件下建立板翅式散热器的“最佳情况”设计特征。结果表明,由包含非金属成分的复合材料制成的散热器的导热系数比典型的金属散热器小一个数量级,可以提供对性能,成本和可制造性至关重要的有效替代方案。还显示出,当热量从热源流到散热器的基板时遇到的扩散阻力虽然很大,但是可以通过对散热器进行适当的设计修改来补偿。

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