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A pre-conditioned implicit direct forcing based immersed boundary method for incompressible viscous flows

机译:基于预处理的基于隐式直接强迫的沉浸边界方法

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A novel immersed boundary (IB) method based on an implicit direct forcing (IDF) scheme is developed for incompressible viscous flows. The key idea for the present IDF method is to use a block LU decomposition technique in momentum equations with Taylor series expansion to construct the implicit IB forcing in a recurrence form, which imposes more accurate no-slip boundary conditions on the IB surface. To accelerate the IB forcing convergence during the iterative procedure, a pre-conditioner matrix is introduced in the recurrence formulation of the IB forcing. A Jacobi-type parameter is determined in the preconditioner matrix by minimizing the Frobenius norm of the matrix function representing the difference between the IB forcing solution matrix and the pre-conditioner matrix. In addition, the pre-conditioning parameter is restricted due to the numerical stability in the recurrence formulation. Consequently, the present pre-conditioned IDF (PIDF) enables accurate calculation of the IB forcing within a few iterations. We perform numerical simulations of two-dimensional flows around a circular cylinder and three-dimensional flows around a sphere for low and moderate Reynolds numbers. The result shows that PIDF yields a better imposition of no-slip boundary conditions on the IB surfaces for low Reynolds number with a fairly larger time step than IB methods with different direct forcing schemes due to the implicit treatment of the diffusion term for determining the IB forcing. Finally, we demonstrate the robustness of the present PIDF scheme by numerical simulations of flow around a circular array of cylinders, flows around a falling sphere, and two sedimenting spheres in gravity. (C) 2016 Elsevier Inc. All rights reserved.
机译:针对不可压缩的粘性流,开发了一种基于隐式直接强迫(IDF)方案的新型浸入边界(IB)方法。当前IDF方法的关键思想是在具有泰勒级数展开的动量方程中使用块LU分解技术,以递归形式构造隐式IB强迫,从而在IB表面上施加更准确的防滑边界条件。为了在迭代过程中加快IB强制收敛,在IB强制的递归公式中引入了前置条件矩阵。通过最小化表示IB强制解矩阵与预条件矩阵之间的差的矩阵函数的Frobenius范数,在预条件矩阵中确定Jacobi类型的参数。另外,由于递归公式中的数值稳定性,限制了预处理参数。因此,当前的预处理IDF(PIDF)可以在几次迭代中精确计算IB强制。对于低和中等的雷诺数,我们对围绕圆柱的二维流和围绕球的三维流进行了数值模拟。结果表明,由于对确定IB的扩散项进行了隐式处理,对于低雷诺数,PIDF可以在具有较低雷诺数的情况下在IB表面上更好地施加防滑边界条件,并且步长比具有不同直接强制方案的IB方法要大得多。强迫。最后,我们通过围绕圆柱阵列的流动,围绕下降球的流动以及两个重力沉降球的数值模拟,证明了本PIDF方案的鲁棒性。 (C)2016 Elsevier Inc.保留所有权利。

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