Reis T, Phillips T N
School of Mathematics, Cardiff University, Cardiff, CF24 4AG, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Feb;77(2 Pt 2):026703. doi: 10.1103/PhysRevE.77.026703. Epub 2008 Feb 11.
A recently derived axisymmetric lattice Boltzmann model is evaluated numerically. The model incorporates a spatially and temporally varying source term into the evolution equation for the momentum distribution function on a two-dimensional Cartesian lattice. The precise form of the source term is derived through a Chapman-Enskog analysis so that the additional axisymmetric contributions in the Navier-Stokes equations are furnished when written in the cylindrical polar coordinate system. The validity of the model is confirmed by simulating Hagen-Poiseuille flow. Numerical predictions for the drag coefficient in Stokes' flow over a sphere are presented and shown to be in excellent agreement with analytical results. At larger Reynolds numbers the numerical predictions are shown to approach an empirically derived formula for the drag coefficient.
对最近推导的轴对称格子玻尔兹曼模型进行了数值评估。该模型在二维笛卡尔格子上的动量分布函数演化方程中纳入了一个时空变化的源项。源项的精确形式通过查普曼-恩斯科格分析得出,以便在写成圆柱极坐标系时,能提供纳维-斯托克斯方程中的附加轴对称贡献。通过模拟哈根-泊肃叶流证实了该模型的有效性。给出了斯托克斯流中球体阻力系数的数值预测,并显示与分析结果高度吻合。在较大雷诺数下,数值预测结果趋近于一个根据经验推导的阻力系数公式。