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Influence of power-law index on transitional Reynolds numbers for flow over a semi-circular cylinder

机译:幂律指数对半圆柱体上流动的过渡雷诺数的影响

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In this work, the governing partial differential equations (continuity and Cauchy's momentum equations) describing the flow of power-law type non-Newtonian fluids across a semicircular cylinder (oriented with its curved surface in the upstream direction) have been solved numerically. In particular, consideration has been given to the delineation of the critical Reynolds numbers denoting the onset of flow separation from the surface of the cylinder and the onset of the laminar vortex shedding regime. This information is germane to establish the scaling of the macroscopic characteristics like drag coefficient and Strouhal number on the governing parameters, namely, Reynolds number and power-law index. The present results clearly suggest that the transitional Reynolds numbers show a strong dependence on the type (shear-thinning and shear-thickening) of fluid behavior as well as on the severity of the shear-dependence of the viscosity. With reference to the behavior seen in Newtonian fluids, the flow remains not only attached to the surface up to higher Reynolds numbers, but shear-thinning behavior also delays the onset of the laminar vortex shedding regime. As expected, shear-thickening fluids, of course, display the opposite characteristics.
机译:在这项工作中,控制数值的偏微分方程(连续性和柯西的动量方程)描述了幂律型非牛顿流体跨半圆柱体(其弯曲面在上游方向定向)的流动。特别地,已经考虑了临界雷诺数的描绘,该临界雷诺数表示从圆柱体表面开始的流动分离的开始以及层状涡旋脱落形式的开始。此信息与在控制参数(即雷诺数和幂律指数)上建立诸如阻力系数和Strouhal数之类的宏观特性的缩放息息相关。本结果清楚地表明,过渡雷诺数显示出对流体行为类型(剪切稀化和剪切增稠)的强烈依赖性,以及对粘度的剪切依赖性的严重性。参照在牛顿流体中观察到的行为,流动不仅保持附着到表面,直到更高的雷诺数,而且剪切稀化行为也延迟了层流涡旋脱落机制的开始。正如预期的那样,剪切增稠流体当然显示出相反的特性。

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