层流状态下平滑垂直板上的自然对流是否可以通过添加面向前方的三角形粗糙度单元来改善?

J. Hærvig, A. Jensen, H. Sørensen
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引用次数: 1

摘要

垂直光滑表面通常用于通过自然对流传递热量。许多研究都试图以各种方式改变光滑表面以增加热量传递。这些研究中的许多都未能增加全球热传递。通常报道的问题是,死区出现在上游和下游的障碍物上,有效地降低了与表面垂直的壁面温度梯度。在这项研究中,我们模拟了几何形状的变化如何影响等温板的局部和全局换热。在Grashof数GrL = 8.0·104和GrL = 6.4·105时,将三角形元素的纵横比从L/h = 5改为L/h = 40。在所有情况下,气流都保持层流。即使考虑到表面积的增加,我们也不断观察到与光滑的垂直板相比,全球传热的减少。结果表明,根据格拉希夫数仔细选择三角单元的长径比和节距,可以消除水平部分后面的死区,从而显著增加局部换热。这一发现有助于提高具有高局部热流的电子设备的冷却性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Can Natural Convection on Smooth Vertical Plates in the Laminar Regime Be Improved by Adding Forward Facing Triangular Roughness Elements?
Vertical smooth surfaces are commonly used for transferring heat by natural convection. Many studies have tried altering smooth surfaces in various ways to increase heat transfer. Many of these studies fail to increase global heat transfer. The problem commonly reported is dead zones appearing just upstream and downstream obstructions that effectively decrease wall temperature gradients normal to the surface. In this study, we simulate how changes geometry of forward facing triangular roughness elements affect local and global heat transfer for isothermal plates. We change the aspect ratio of the triangular elements from L/h = 5 to L/h = 40 at Grashof numbers of GrL = 8.0 · 104 and GrL = 6.4 · 105. In all cases the flow remains laminar. Even when accounting for the increase in surface area, we keep observing a decrease in global heat transfer compared to the smooth vertical plate. However, the results show by carefully selecting the aspect ratio and pitch distance of the triangular elements based on the Grashof number, the dead zone behind the horizontal part can be eliminated thereby significantly increasing local heat transfer. This observation could help to improve cooling of electronics with high localised heat fluxes.
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