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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical study on the pulsating effect on heat transfer performance of pseudo-plastic fluid flow in a manifold microchannel heat sink
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Numerical study on the pulsating effect on heat transfer performance of pseudo-plastic fluid flow in a manifold microchannel heat sink

机译:歧管微通道散热器伪塑料流体脉动脉动效应的数值研究

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Highlights?Effect of pulsating inlet on heat transfer of pseudo-plastic fluid flow is studied.?Heat transfer performance can be significantly enhanced by pulsating inlet.?Heat transfer improvement is ascribed to the occurrence of secondary & reverse flow.?Sinusoidal-wave pulsating inlet leads to best thermal performance in this study.AbstractIn the present paper, we carried out a numerical investigation on the pulsating effect on the heat transfer performance of pseudo-plastic fluid flow in a manifold microchannel heat sink. Three types of pulsating inlet condition were introduced, including square-wave, sinusoidal-wave and semi-sinusoidal wave pulsating inlets. Special attentions were paid to the parametric effect on the thermal performance, i.e., pulsating duty ratio, amplitude and period, which together describe the pulsating pattern. The results show that introducing pulsating flow can significantly improve the overall thermal performance comparing with that of steady flow under the same mass flow rate. The thermal performance factorTPof all the cases both square-wave and sinusoidal-wave pulsating inlet studied is larger than 1 and can even reach more than 3 comparing with the steady flow. The two scenarios existing in pulsating flow are responsible for the heat transfer enhancement, which are the continuously developing characteristics of the flow and the induction of secondary flows or reversal flows in the pulsating flow. In addition, the pulsating inlet with sinusoidal wave led to the highest heat transfer coefficient among the three types of pulsating inlet conditions in consideration. Therefore, this pulsating inlet condition is more beneficial to strengthening the heat transfer during the practical application.]]>
机译:<![cdata [ 亮点 研究了脉动入口对伪塑料流体流动传热的影响。 传热性能脉动入口可以显着增强。 传热改进归因于次要和反转流的发生。 正弦波脉动入口引线在本研究中最好的热性能。 抽象 在本文中对伪塑料流体流动传热性能进行了数值研究歧管微通道散热器。引入了三种类型的脉动入口条件,包括方波,正弦波和半正弦波脉动入口。对热性能的参数效应,即脉动占空比,幅度和周期进行了特殊关节,其共同描述了脉动图案。结果表明,引入脉动流动可以显着提高与在相同质量流量下的稳定流动的总热性能。热性能因子 TP 在研究中的所有情况下,所研究的方波和正弦波脉动入口大于1,甚至可以与稳定流量相比达到3多个比较。存在于脉动流动的两个场景负责传热增强,这是流动的连续显影特性和脉动流动中的二次流量或逆流的诱导。另外,考虑到的三种类型的脉动入口条件中,具有正弦波的脉动入口导致了最高的传热系数。因此,这种脉动入口条件更有利于在实际应用过程中加强传热。 ]]>

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