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On the effects of orientation on flow and heat transfer from a semi-circular cylinder near a stationary wall

机译:关于定向对固定墙上的半圆圆筒的流动和热传递的影响

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摘要

Numerical analysis of flow and forced convection heat transport from a two-dimensional semi-circular cylinder placed near a stationary wall is presented. The uniformly heated cylinder is within the boundary layer of the plane wall and is subjected to linear shear flow. An unsteady flow of incompressible Newtonian fluid around the cylinder is studied assuming constant properties. Two different orientations of the cylinder, i.e. the curved and flat surfaces exposed to the incoming flow, are considered, and the results are compared with those of a circular cylinder. The cylinder-to-wall gap ratio (G/D.) values are varied between 0.1 and 0.5, and the Reynolds number range of 100 ≤ Re ≤ 200 is considered. Numerical experiments are performed using Ansys Fluent. Results suggest that the presence of a stationary wall influences both the flow and thermal fields significantly. A decrement in the drag coefficient and average Nusselt number values is reported, while the lift coefficient and Strouhal number increase, resulting from shear layers’ interaction in the gap between cylinder and wall. The heat transfer enhancement ratio is higher for the flow past curved forebody than the flat forebody configuration and circular cylinder. Mean Nusselt number correlations for the range of parameters considered in the present study are provided.
机译:介绍了从固定壁附近放置的二维半圆柱的流量和强制对流热传输的数值分析。均匀加热的圆筒位于平面壁的边界层内,并经受线性剪切流。假设恒定性质研究了气缸周围的不可压缩牛顿流体的不稳定流动。考虑了圆柱体的两种不同取向,即暴露于进入流动的弯曲和平坦表面,并将结果与​​圆筒的圆柱体进行比较。气缸到壁间隙比(G / D.)值在0.1和0.5之间变化,并且考虑了100≤Re≤200的雷诺数范围。使用ANSYS流畅的数值实验。结果表明,固定壁的存在显着影响流动和热场。报告了拖动系数和平均露天数值的递减,而提升系数和斯特鲁姆数增加,由剪切层在气缸和墙壁之间的间隙中的相互作用产生。对于流过弯曲的前体的热传递增强率比平面前体配置和圆柱体更高。提供了本研究中考虑的参数范围的平均良好数量相关性。

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