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Liquid Impingement Flow and Heat Transfer of a Cone Heat Sink With Filet Profiles

机译:液体冲击流和锥散热器的热传递与丝绒型材

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摘要

Jet impingement is a technique for removing heat efficiently. A liquid jet impingement on a cone heat sink was investigated numerically to explore the effect of filet profiles at the top and bottom edge of conical protuberances on fluid flow and heat transfer. An adopted turbulence model was validated through an experiment as described in the literature. Numerical results of pressure coefficient and Nusselt number were obtained for cases with and without filet profiles for variable jet Reynolds numbers and conical angles. Results showed that the flow and heat transfer of conical protuberances with small tip filet profiles are similar to that of the original cone. Pressure coefficient curves are similar to that of convex surfaces, and the average heat transfer slightly increases when the radius of the tip filet profiles exceeds 1mm. A small filet profile of a conical bottom edge can improve the average Nusselt number. A secondary jet that enhanced the overall heat transfer was demonstrated, and the heat transfers of convex surfaces, as the comparison, with small angles were enhanced in most cases.
机译:喷射冲击是一种用于效率去除热量的技术。在数值上研究锥形散热器上的液体喷射冲击,以探讨圆角曲线在流体流动和热传递的锥形突起的顶部和底部边缘处的效果。通过在文献中描述的实验验证了采用的湍流模型。用于可变射流雷诺数和锥形角度的壳体和没有磁片曲线的情况获得压力系数和营养数的数值结果。结果表明,具有小尖端箔片型材的锥形突起的流动和传热类似于原始锥体的流动和传热。压力系数曲线类似于凸面的曲线,并且当尖端叶片轮廓的半径超过1mm时,平均传热略微增加。锥形底部边缘的小部分剖面可以改善平均营养数。在大多数情况下,对增强整体传热增强的整体传热增强的次级射流以及凸面的热量转移,并且在大多数情况下增强了小角度。

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