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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Design and Optimization of Multiple Microchannel Heat Transfer Systems
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Design and Optimization of Multiple Microchannel Heat Transfer Systems

机译:多微通道传热系统的设计与优化

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In this paper, two different configurations of multiple microchannel heat sinks, with fluid flow, are investigated for heat removal: straight and U-shaped channel designs. Numerical models are utilized to study the multiphysics behavior in the microchannels and these are validated by comparisons with experimental results. The main focus of this work is on the design and optimization of these systems and to outline the methodology that may be used for other similar thermal systems. Three responses, including thermal resistance, pressure drop, and maximum temperature, are parametrically modeled with respect to various design variables and operating conditions such as dimensions of the channels, total number of channels, and flow rate. Multi-objective optimization problems, which minimize the thermal resistance and the pressure drop simultaneously, are formulated and studied. Physical constraints in terms of channel height, maximum temperature, and pressure are further investigated. The Pareto frontiers are studied and the trade-off behavior between the thermal resistance and the pressure drop are discussed. Characteristic results are presented and discussed.
机译:在本文中,研究了具有流体流动的多个微通道散热器的两种不同配置以进行散热:直通道和U形通道设计。利用数值模型研究微通道中的多物理场行为,并通过与实验结果进行比较来验证这些模型。这项工作的主要重点是这些系统的设计和优化,并概述了可用于其他类似热系统的方法。针对各种设计变量和运行条件(例如通道尺寸,通道总数和流速),对包括热阻,压降和最高温度在内的三个响应进行了参数化建模。制定并研究了同时降低热阻和压降的多目标优化问题。进一步研究了通道高度,最高温度和压力方面的物理限制。研究了帕累托边界,并讨论了热阻和压降之间的权衡行为。提出并讨论了特征结果。

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