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DESIGN OPTIMIZATION OF MICRO-CHANNEL FOR MICRO ELECTRONIC COOLING

机译:微电子冷却的微通道设计优化

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摘要

A numerical optimization of a rectangular micro-channel has been performed. Navier-Stokes and energy equations for laminar flow and conjugate heat transfer are solved using a finite volume solver. Solutions are first carefully validated with available analytical and experimental results; the shape of the micro-channel is then optimized using surrogate method. Ratios of the micro-channel width to depth and the width of the fin to the depth are selected as design variables. Design points are selected through a four-level full factorial design. A single objective function thermal resistance, formulated using pumping power as a constraint, is optimized. Mass flow rate is adjusted by the constant pumping power constraint. Kriging method is applied to construct surrogate and the optimum point is searched by sequential quadratic programming.
机译:矩形微通道的数值优化已经完成。使用有限体积求解器求解层流和共轭传热的Navier-Stokes方程和能量方程。首先使用可用的分析和实验结果仔细验证解决方案;然后使用替代方法优化微通道的形状。选择微通道宽度与深度的比率以及鳍片与深度的比率作为设计变量。通过四级全因子设计来选择设计点。优化了以泵浦功率为约束条件制定的单个目标函数热阻。质量流量通过恒定的泵送功率约束进行调整。采用克里格法构造替代物,并通过顺序二次规划求出最佳点。

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