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An Immersed Method Based on Cut-Cells for the Simulation of 2D Incompressible Fluid Flows Past Solid Structures

机译:基于切割细胞的浸渍方法,用于模拟2D不可压缩流体的仿真流动固体结构

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摘要

We present a cut-cell method for the simulation of 2D incompressible flows past obstacles.It consists in using the MAC scheme on cartesian grids and imposing Dirchlet boundary conditions for the velocity field on the boundary of solid structures following the Shortley-Weller formulation.In order to ensure local conservation properties,viscous and convecting terms are discretized in a finite volume way.The scheme is second order implicit in time for the linear part,the linear systems are solved by the use of the capacitance matrix method for non-moving obstacles.Numerical results of flows around an impulsively started circular cylinder are presented which confirm the efficiency of the method,for Reynolds numbers 1000 and 3000.An example of flows around a moving rigid body at Reynolds number 800 is also shown,a solver using the PETSc-Library has been prefered in this context to solve the linear systems.
机译:我们提出了一种用于模拟2D不可压缩流过去障碍的切割细胞方法。它包括在笛卡尔 - 韦尔默配方之后的固体结构边界上对笛卡尔栅格的MAC方案和对速度区域的速度场进行施加的小速度边界条件。为了确保局部保护特性,粘性和对流术语以有限的体积方式离散化。该方案是线性部分的第二阶隐式,通过使用电容矩阵法来解决用于非移动障碍物的线性系统介绍了冲动开始圆柱圆绕围绕循环圆柱体的数值结果,该方法确认了该方法的效率,对于雷诺数1000和3000,还示出了雷诺数800的移动刚体周围的流动示例,一种使用PETSC的求解器在此上下文中首先优选用于解决线性系统的限制。

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