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Constructal design and thermal analysis of microchannel heat sinks with multistage bifurcations in single-phase liquid flow

机译:单相液流多级分叉微通道散热器的结构设计与热分析

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摘要

Based on constructal theory, five different cases with multistage bifurcations are designed as well as one case without bifurcations, and the corresponding laminar fluid flow and thermal performance have been investigated numerically. All laminar fluid flow and heat transfer results are obtained using computation fluid dynamics, and a uniform wall heat flux thermal boundary condition is applied all heated surfaces. The inlet velocity ranges from 0.66 m/s to 1.6 m/s with the corresponding Reynolds number ranging from 230 to 560. The pressure, velocity, temperature distributions and averaged Nusselt number are presented. The overall thermal resistances versus inlet Reynolds number or pumping power are evaluated and compared for the six microchannel heat sinks. Numerical results show that the thermal performance of the microchannel heat sink with multistage bifurcation flow is better than that of the corresponding straight microchannel heat sink. The heat sink with a long bifurcation length in the first stage (Case 1A) is superior. The usage of multistage bifurcated plates in microchannel heat sink can reduce the overall thermal resistance and make the temperature of the heated surface more uniform (Case 3). It is suggested that proper design of the multistage bifurcations could be employed to improve the overall thermal performance of microchannel heat sinks and the maximum number of stages of bifurcations is recommended to be two. The study complements and extends previous works.
机译:基于构造理论,设计了五种不同情况的多级分叉案例和一种无分叉的案例,并对相应的层流和热性能进行了数值研究。使用计算流体动力学获得所有层流的流体流动和传热结果,并对所有受热表面施加均匀的壁热通量热边界条件。入口速度范围为0.66 m / s至1.6 m / s,相应的雷诺数范围为230至560。显示了压力,速度,温度分布和平均努塞尔数。评估并比较了六个微通道散热器的总热阻与入口雷诺数或泵浦功率的关系。数值结果表明,多级分流微通道散热器的热性能优于相应的直型微通道散热器。在第一阶段(案例1A)中,分叉长度较长的散热器性能优越。在微通道散热器中使用多级分叉板可降低整体热阻,并使被加热表面的温度更均匀(案例3)。建议多级分叉的适当设计可用于改善微通道散热器的整体热性能,并且建议分叉的最大级数为两个。该研究是对先前工作的补充和扩展。

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