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An Overset Mesh Framework for an Isentropic ALE Navier-Stokes HDG Formulation

机译:等向ALE Navier-Stokes HDG配方的过剩网格框架

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Fluid-structure interaction simulations where solid bodies undergo large deformations require special handling of the mesh motion for Arbitrarily Lagrangian-Eulerian (ALE) formulations. Such formulations are necessary when body-fitted meshes with certain characteristics, such as boundary layer resolution, are required to properly resolve the problem. We present an overset mesh method to accommodate such problems in which flexible bodies undergo large deformations, or where rigid translation modes of motion occur. To accommodate these motions of the bodies through the computational domain, an overset mesh enabled ALE formulation for fluid flow is discretized with the hybridizable discontinuous Galerkin (HDG) finite element method. The overset mesh framework applied to the HDG method enables the deforming and translating dynamic meshes to maintain quality without remeshing. Verification is performed to demonstrate that optimal order convergence O (k + 1) is obtained for arbitrary overlap and approximation order k.
机译:流体结构相互作用模拟,其中固体体发生大变形,需要特殊处理网格运动,用于任意拉格朗日 - 欧拉(ALE)制剂。当需要某些特性的网格如边界层分辨率,例如边界层分辨率时,需要这种配方是必要的。我们提出了一种监视网格方法,以适应柔性体发生变形的这种问题,或者发生刚性平移模式的发生。为了通过计算领域容纳身体的这些动作,通过杂交的不连续的Galerkin(HDG)有限元方法离散地分散用于流体流动的推动网格的ALE配方。应用于HDG方法的潜置网格框架使得能够使动态网格变形并转换为保持质量而无需回忆。执行验证以证明可以获得任意重叠和近似顺序k的最佳阶阶层o(k + 1)。

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