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首页> 外文期刊>SIAM Journal on Scientific Computing >High-order radiation boundary conditions for the convective wave equation in exterior domains
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High-order radiation boundary conditions for the convective wave equation in exterior domains

机译:外域对流波方程的高阶辐射边界条件

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摘要

We construct and apply radiation boundary conditions of arbitrary order for wave propagation with subsonic convection in exterior domains. The conditions generalize those we constructed earlier for the isotropic wave equation. As in the well-known work of Bayliss and Turkel, the construction is based on the progressive wave (or multipole) expansion of outgoing solutions. Using auxiliary functions defined only on the artificial boundary, problems associated with the use of high-order derivatives, as in the original Bayliss-Turkel formulation, are avoided. The order of the conditions is thus increased simply by using more auxiliary variables. By generalizing to the convective case, we have developed conditions which can be used in aeroacoustics applications whenever the Euler equations linearized about a uniform flow are sufficiently accurate in the far field. Numerical experiments in two space dimensions are presented to illustrate the stability and accuracy of the proposed technique. [References: 20]
机译:我们构造并应用了任意阶次的辐射边界条件,用于在外域中具有亚音速对流的波传播。这些条件概括了我们先前为各向同性波动方程构造的条件。就像在Bayliss和Turkel的著名著作中一样,该构造基于输出解决方案的渐进波(或多极)展开。使用仅在人工边界上定义的辅助函数,可以避免与使用原始Bayliss-Turkel公式中的高阶导数相关的问题。因此,仅通过使用更多辅助变量即可增加条件的顺序。通过归纳为对流情况,只要关于均匀流线性化的欧拉方程在远场中足够精确,我们就可以开发出可用于航空声学的条件。提出了二维空间中的数值实验,以说明所提出技术的稳定性和准确性。 [参考:20]

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