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A computationally efficient method for simulating fluid flow in elastic pipes in three dimensions

机译:计算三维空间中弹性管道中流体流动的高效计算方法

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We propose a new method for carrying out lattice-Boltzmann simulations of pulsatile fluid flow in three-dimensional elastic pipes. It is based on estimating the distances from sites at the edge of the simulation box to the wall along the lattice directions from the displacement of the closest point on the wall and the curvature there, followed by application of a nonequilibrium extrapolation method. Viscous flow in an elastic pipe is studied in three dimensions at a wall displacement of 5% of the radius of the pipe, which is realistic for blood flow through large cerebral arteries. The numerical results for the pressure difference, wall displacement and flow velocity agree well with the analytical predictions. At all sites, the calculation depends only on information from nearest neighbours, so the method proposed is suitable for efficient computation on multicore machines. Compared to simulations with rigid walls, simulations with elastic walls require only 13% more computational effort at the parameters chosen in this study.
机译:我们提出了一种在三维弹性管中进行脉动流体流动的格-玻尔兹曼模拟的新方法。它基于从墙上最近点的位移和那里的曲率估算出模拟盒边缘的位置沿着晶格方向到墙的距离,然后应用非平衡外推方法。对弹性管道中的粘性流动进行了三维研究,其壁位移为管道半径的5%,这对于通过大脑动脉的血液流动是现实的。压差,壁位移和流速的数值结果与分析预测吻合得很好。在所有站点上,该计算仅取决于最近邻居的信息,因此,所提出的方法适用于在多核计算机上进行高效计算。与使用刚性墙进行的仿真相比,使用弹性墙进行的仿真在本研究中选择的参数上仅需要多13%的计算量。

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