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Numerical optimization on microchannel flow and heat transfer performance based on field synergy principle

机译:基于场协同原理的微通道传热性能数值优化

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摘要

As the development of integrated circuit (IC) devices continuously towards high density and high integration, microchannel cooling technology is becoming an inevitable option for solving heat dissipation of high power density. This work investigated the field synergy and heat transfer performance of the microchannels with three different internal spoiler cavities configurations using a three-dimension numerical simulation of conjugate heat transfer model. The analysis of temperature field, flow field, field synergy angle and thermal characteristics were presented to discuss the heat transfer enhancement mechanism. It was found that the field synergy angle andNunumber have a good consistency on evaluating the heat transfer enhancement in terms of the internal spoiler cavities in the microchannel. Additionally, the field synergy effect in the microchannels was optimal when the internal spoiler cavities of the microchannels were configured in form of front-loose-back-compact (FLBC) under laminar flow, which could achieve the optimization of heat dissipation performance in a limited space without any pressure drop.
机译:随着集成电路(IC)器件向高密度和高集成度的不断发展,微通道冷却技术已成为解决高功率密度散热问题的必然选择。这项工作使用共轭传热模型的三维数值模拟研究了具有三种不同内部扰流腔结构的微通道的场协同和传热性能。对温度场,流场,场协同角和热特性进行了分析,以探讨强化传热的机理。已经发现,根据微通道中的内部扰流腔,场协同角和Nunumber在评估传热增强方面具有良好的一致性。此外,当微通道的内部扰流腔以层流形式配置为前松后紧凑型(FLBC)时,微通道中的场协同效应最佳,这可以在有限的条件下实现散热性能的优化。空间没有任何压降。

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