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首页> 外文期刊>The Journal of Computational Multiphase Flows >Numerical simulation of flows about a stationary and a free-falling cylinder using immersed boundary-finite difference lattice boltzmann method
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Numerical simulation of flows about a stationary and a free-falling cylinder using immersed boundary-finite difference lattice boltzmann method

机译:浸入式边界有限差分格子boltzzmann方法对固定和自由落体圆柱体流动的数值模拟

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摘要

The applicability of the immersed boundary-finite difference lattice Boltzmann method (IB-FDLBM) to high Reynolds number flows about a circular cylinder is examined. Two-dimensional simulations of flows past a stationary circular cylinder are carried out for a wide range of the Reynolds number, Re, i.e., 1 Re 1 10~5. An immersed boundary-lattice Boltzmann method (IB-LBM) is also used for comparison. Then free-falling circular cylinders are simulated to demonstrate the feasibility of predicting moving particles at high Reynolds numbers. The main conclusions obtained are as follows: (1) steady and unsteady flows about a stationary cylinder are well predicted with IB-LBM and IB-FDLBM, provided that the spatial resolution is high enough to satisfy the conditions of numerical stability, (2) high spatial resolution is required for stable IB-LBM simulation of high Reynolds number flows, (3) IB-FDLBM can stably simulate flows at very high Reynolds numbers without increasing the spatial resolution, (4) IB-FDLBM gives reasonable predictions of the drag coefficient for 1 Re~110~5, and (5) IB-FDLBM gives accurate predictions for the motion of free-falling cylinders at intermediate Reynolds numbers.
机译:研究了浸没边界有限差分格子玻尔兹曼方法(IB-FDLBM)对绕圆柱体的高雷诺数流的适用性。对于宽范围的雷诺数Re(即1 Re 1 10〜5),进行了通过固定圆柱的流动的二维模拟。还使用浸入式边界晶格玻尔兹曼方法(IB-LBM)进行比较。然后模拟自由落体的圆柱体,以证明预测高雷诺数下运动的粒子的可行性。得出的主要结论如下:(1)如果空间分辨率足够满足数值稳定性的条件,则使用IB-LBM和IB-FDLBM可以很好地预测围绕固定圆柱体的稳态和非稳态流动,(2)高雷诺数流的稳定IB-LBM仿真需要高空间分辨率,(3)IB-FDLBM可以在不增加空间分辨率的情况下稳定地模拟高雷诺数的流,(4)IB-FDLBM给出阻力的合理预测1 Re〜110〜5的系数,以及(5)IB-FDLBM可以准确预测自由落体圆柱在中间雷诺数下的运动。

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