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Direct numerical simulation of the Taylor-Couette flow with the asymmetric end-wall boundary conditions

机译:端壁边界不对称的泰勒-库埃特流的直接数值模拟

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IN THE PAPER THE AUTHORS PRESENT the results obtained during a direct numerical simulation of the transitional Taylor-Couette flow in closed cavity. The spectral vanishing viscosity method is used to stabilize computations for higher Reynolds numbers. The Taylor-Couette flow is widely used for studying the primary pattern formation, transitional flows and fully turbulent flows. The Taylor-Couette flow is also important from engineering point of view: the results can be interesting for engineers dealing with gas turbines and axial compressors. In the paper the attention is focused on the influence of the end-wall boundary conditions on the flow structures and on statistics (i.e. the radial profiles of the angular velocity, angular momentum, torque, the Reynolds stress tensor components). The results are discussed in the light of experimental and numerical data published in literature (F. Wendt, Ing.-Arch., 4, 1933; H. Brauckmann, B. Eckhardt, J. Fluid Mech., 718, 2013).
机译:在本文中,作者目前是在封闭空腔中的过渡Taylor-Couette流动的直接数值模拟过程中获得的结果。光谱消失粘度法用于稳定较高雷诺数的计算。泰勒-库埃特流被广泛用于研究基本模式的形成,过渡流和全湍流。从工程的角度来看,泰勒-库埃特流也很重要:对于处理燃气轮机和轴流压缩机的工程师来说,结果可能很有趣。在本文中,注意力集中在端壁边界条件对流动结构的影响和统计上(即角速度,角动量,扭矩,雷诺应力张量分量的径向分布)。根据文献中发表的实验和数值数据对结果进行了讨论(F. Wendt,Ing.-Arch。,1933年4月; H。Brauckmann,B。Eckhardt,J。Fluid Mech。,718,2013)。

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