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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >A Numerical Investigation of Developing Flow in Concentric and Eccentric Curved Square Annuli
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A Numerical Investigation of Developing Flow in Concentric and Eccentric Curved Square Annuli

机译:同心和偏心弯曲方形环流中流动的数值研究

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In this article developing incompressible viscous fluid flow in concentric and eccentric curved square annuli are numerically studied. A second order finite difference method based on the projection algorithm is implemented to solve the governing equations, including the full Navier-Stokes and continuity equations in a cylindrical coordinate system. To discretize the governing equations in the square annulus, a uniform staggered grid is used to enforce an exact second order numerical scheme. The effects of the governing nondimensional parameters involving the aspect ratio, curvature, Reynolds number, Dean number, and eccentricity on the flow field, both in developing and fully developed regions of the curved annular square duct, are studied in detail. The numerical results obtained indicate that the friction factor in the eccentric curved square annulus increases with the square root of the Dean number (κ~(1/2)) and the aspect ratio and decreases with the eccentricity. Furthermore, when the square root of the Dean number becomes larger than about 17.3, the friction factor increases linearly with the square root of the Dean number in the range of the current study.
机译:在本文中,对同心和偏心弯曲方形环中不可压缩粘性流体的流动进行了数值研究。实现了基于投影算法的二阶有限差分方法来求解控制方程,包括圆柱坐标系中的完整Navier-Stokes和连续性方程。为了离散平方环中的控制方程,使用均匀的交错网格来强制执行精确的二阶数值方案。详细研究了在弯曲环形方管的展开区域和完全展开区域中,涉及到长宽比,曲率,雷诺数,迪恩数和偏心度的控制无量纲参数对流场的影响。数值结果表明,偏心弯曲矩形环中的摩擦系数随Dean数(κ〜(1/2))的平方根和纵横比的增大而增大,而随偏心率的减小而减小。此外,当Dean数的平方根大于约17.3时,在当前研究范围内,摩擦因数随Dean数的平方根线性增加。

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