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On the robust, flexible and consistent implementation of time domain impedance boundary conditions for compressible flow simulations

机译:关于可压缩流仿真的时域阻抗边界条件的鲁棒,灵活和一致的实现

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摘要

The accurate simulation of compressible flows requires the appropriate modeling of the reflection of acoustic waves at the boundaries. In the present study we discuss time domain impedance boundary conditions (TDIBC). The formulation proposed allows to impose a desired reflection coefficient at the inflow and outflow boundaries. Our formulation is an extension of the well known Navier-Stokes characteristic boundary conditions. The frequency dependent reflections at the boundaries are implemented with a state-space model in the time domain. We provide a comprehensive discussion on how such state-space models can be constructed and interpreted. This discussion shows that the state-space description allows a robust and flexible implementation. It allows to consider complex reflection coefficients and account for non-constant CFD time steps in a straight forward manner. Furthermore, we prove analytically and demonstrate numerically that the formulation proposed is consistent, i.e. the formulation ensures that the flow simulation exhibits the reflection coefficient imposed accurately, as long as the waves impinging on the boundary are plane, and it prohibits drift of the mean flow variables. Finally, the boundary conditions are tested successfully for laminar and turbulent flows. (C) 2016 Elsevier Inc. All rights reserved.
机译:对可压缩流的精确模拟需要对声波在边界处的反射进行适当的建模。在本研究中,我们讨论时域阻抗边界条件(TDIBC)。提出的公式允许在流入和流出边界处施加所需的反射系数。我们的公式是众所周知的Navier-Stokes特征边界条件的扩展。边界处与频率有关的反射是通过时域中的状态空间模型实现的。我们对如何构建和解释这种状态空间模型进行了全面的讨论。该讨论表明状态空间描述允许进行健壮和灵活的实现。它允许考虑复杂的反射系数并以直接的方式考虑非恒定CFD时间步长。此外,我们通过分析证明并从数值上证明了所提出的公式是一致的,即该公式可确保流动模拟显示出准确施加的反射系数,只要撞击在边界上的波是平面的,并且可以防止平均流量的漂移变量。最后,边界条件已成功测试了层流和湍流。 (C)2016 Elsevier Inc.保留所有权利。

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