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Extrapolation in Time in Thermal Fluid Structure Interaction

机译:热流体结构相互作用的推断

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We consider time dependent thermal fluid structure interaction. The respective models are the compressible Navier-Stokes equations and the nonlinear heat equation. A partitioned coupling approach via a Dirichlet-Neumann method and a fixed point iteration is employed. As a reference solver a previously developed efficient time adaptive higher order time integration scheme is used. To improve upon this, we work on reducing the number of fixed point coupling iterations. Thus, we explore the idea of extrapolation based on data given from the time integration and derive such methods for SDIRK2. This allows to reduce the number of fixed point iterations further by up to a factor of two with linear extrapolation performing better than quadratic.
机译:我们考虑时间依赖性热流体结构相互作用。相应的模型是可压缩的Navier-Stokes方程和非线性热方程。采用通过Dirichlet-Neumann方法和固定点迭代的分区耦合方法。作为参考求解器,使用先前显影的高效时间自适应高阶时间集成方案。为了改善这一点,我们致力于减少固定点耦合迭代的数量。因此,我们根据从时间集成给出的数据,从而获得SDIRK2的此类方法来探讨外推的概念。这允许通过比二次立方更好地执行直到两倍的多达两个倍数的固定点迭代的数量。

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