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Study of fully-developed turbulent flow and heat transfer in a rotating wavy-walled duct

机译:旋转波纹管中湍流和传热的充分发展研究

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Finite volume based computations of fully developed flow and heat transfer through rotating wavy-walled ducts using large eddy simulation (LES) has been carried out. The shear improved Smagorinsky model (SISM) is employed to model the unresolved turbulent fluctuations. The wavy-walls of the duct are described by the sine function y = 2asin(2) (pi x/L). The geometrical ratios H-min/H-max and L/a are kept fixed to 0.2 and 8 respectively. The effect of rotation on the fluid flow and heat transfer characteristics are presented. All the computations are at a Reynolds number of 5000 and the rotation number is varied in the range, 0-0.5. It has been observed that the pressure drop across the wavy-walled duct varies with increasing rotation number. It is also found out that with rotation, the heat transfer increases on the trailing wall while the leading wall shows the opposite trend. Both Nusselt number and pressure drop for the wavy-walled duct is observed to be less than the corresponding values in ribbed duct geometry. (C) 2019 Elsevier Ltd. All rights reserved.
机译:已经使用大型涡流模拟(LES)进行了基于体积的充分计算,以充分开发通过旋转波浪壁管的流动和传热。采用剪切改进的Smagorinsky模型(SISM)对未解决的湍流波动进行建模。管道的波纹壁由正弦函数y = 2asin(2)(pi x / L)描述。几何比H-min / H-max和L / a分别固定为0.2和8。提出了旋转对流体流动和传热特性的影响。所有计算的雷诺数为5000,转数在0-0.5范围内变化。已经观察到,穿过波状管道的压降随着旋转数的增加而变化。还发现随着旋转,传热在后壁上增加,而前壁显示相反的趋势。观察到波状管的努塞尔数和压降均小于带肋管几何形状的相应值。 (C)2019 Elsevier Ltd.保留所有权利。

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