Li Huabing, Lu Xiaoyan, Fang Haiping, Qian Yuehong
Shanghai Institute of Applied Physics, Chinese Academy of Sciences, P.O. Box 800-204, Shanghai 201800, China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Aug;70(2 Pt 2):026701. doi: 10.1103/PhysRevE.70.026701. Epub 2004 Aug 9.
Two techniques, based on the exchange of momentum and the integration of stress tensor, for the evaluation of the hydrodynamic forces in the lattice Boltzmann simulations are investigated on the curved and moving boundaries in two dimensions. The following results are obtained by numerical simulations: (i) the hydrodynamic forces on an inclined boundary and arc in liquid without flow computed by the stress-integration method agree with analytical predictions to a very high accuracy, while those by the momentum-exchange method have considerable errors for small segments; (ii) the simulation results of the sedimentation of a circular cylinder in a two-dimensional channel with the stress-integration method for hydrodynamic forces are in excellent agreement with those by a second-order moving finite-element method; (iii) the particle migrated from the centerline is found to occur in the simulations of a circular cylinder in a Poiseuille flow by the stress-integration method, consistent with the Segré-Silberberg effect. In conclusion, the stress-integration method can be a good candidate to evaluate the hydrodynamic forces on the elastic boundaries and moving particles in fluid.
研究了基于动量交换和应力张量积分的两种技术,用于在二维弯曲和移动边界的格子玻尔兹曼模拟中评估流体动力。通过数值模拟得到以下结果:(i) 在无流动液体中,用应力积分法计算的倾斜边界和弧上的流体动力与解析预测高度吻合,而用动量交换法计算的小线段流体动力有相当大的误差;(ii) 用应力积分法计算流体动力的二维通道中圆柱体沉降的模拟结果与二阶移动有限元法的结果非常吻合;(iii) 在泊肃叶流中圆柱体的模拟中,用应力积分法发现粒子从中心线迁移,这与塞格雷 - 西尔伯格效应一致。总之,应力积分法可能是评估流体中弹性边界和移动粒子上流体动力的一个很好的选择。