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Thermal and Hydrodynamic Characteristics of Constructal Tree-Shaped Minichannel Heat Sink

机译:结构树形微通道散热器的热力和水动力特性

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摘要

A three-dimensional thermal and hydrodynamic model for constructal tree-shaped minichannel heat sink is developed. The heat and fluid flow in the constructal heat sink with an inlet hydraulic diameter of 4 mm are numerically analyzed, taking into consideration conjugate heat transfer in the channel walls. The pressure drop, temperature uniformity, and coefficient of performance (COP) of the constructal tree-shaped heat sink are evaluated and compared with those of the corresponding traditional serpentine flow pattern. The results indicate that the constructal tree-shaped minichannel heat sinks have considerable advantages over the traditional serpentine flow patterns in both heat transfer and pressure drop. The strong and weak heat flow can be effectively allocated in tree-shaped flow structures; hence, the inherent advantage of uniform temperature on the heating surface in the constructal tree-shaped heat sink is demonstrated. And in tree-shaped flow structures, the local pressure loss due to confluence flow is found to be larger than that due to diffluence flow. In addition, an aluminum constructal tree-shaped minichannel heat sink is fabricated to conduct the verification experiment. The experimentally measured temperature distribution and pressure drop are in agreement with the numerical simulation, which verifies that the present model is reasonable.
机译:建立了结构树形微通道散热器的三维热力学模型。考虑到通道壁中的共轭传热,对入口液压直径为4 mm的结构散热器中的热量和流体流动进行了数值分析。对结构树形散热器的压降,温度均匀性和性能系数(COP)进行了评估,并与相应的传统蛇形流型进行了比较。结果表明,结构树形微通道散热器在传热和压降方面均优于传统的蛇形流型。可以将强热流和弱热流有效地分配到树形流动结构中;因此,证明了在结构树形散热器中的受热面上温度均匀的固有优势。并且在树形流动结构中,发现由于汇流引起的局部压力损失要大于由于扩散流引起的局部压力损失。另外,制作了铝质结构树形微通道散热器,进行了验证实验。实验测得的温度分布和压降与数值模拟吻合,证明了该模型是合理的。

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