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An immersed boundary method using unstructured anisotropic mesh adaptation combined with level-sets and penalization techniques

机译:非结构化各向异性网格自适应结合水平集和惩罚技术的沉浸边界方法

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摘要

The interest on embedded boundary methods increases in Computational Fluid Dynamics (CFD) because they simplify the mesh generation problem in the case of the Navier-Stokes equations. The same simplifications occur for the simulation of multi-physics flows, the coupling of fluid-solid interactions in situation of large motions or deformations, to give a few examples. Nevertheless an accurate treatment of the wall boundary conditions remains an issue of the method. In this work, the wall boundary conditions are easily taken into account through a penalization technique, and the accuracy of the method is recovered using mesh adaptation, thanks to the potential of unstructured meshes. Several classical examples are used to demonstrate that claim.
机译:对嵌入式边界方法的关注在计算流体动力学(CFD)中得到了提高,因为它们简化了Navier-Stokes方程的网格生成问题。举几个例子,对于多物理场流的模拟,在大运动或变形的情况下流固耦合的耦合,也有相同的简化。然而,壁边界条件的精确处理仍然是该方法的问题。在这项工作中,可以通过惩罚技术轻松考虑壁边界条件,并且由于具有非结构化网格的潜力,因此可以使用网格自适应来恢复方法的准确性。几个经典的例子用来证明这一主张。

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