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A LBIE-RBF solution to the convected wave equation for flow acoustics

机译:流动声学对流波动方程的LBIE-RBF解

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In this paper, the meshless local boundary integral equation (LBIE) method is implemented for the solution of convected wave equation in frequency domain. Such a problem plays an important role for the noise prediction in flow acoustics. The case of a uniform flow inx-direction is analyzed. For the resultant convected Helmholtz equation, the free-space Green's function has a more complicated form than the Green's function for the classical Helmholtz equation, though it reduces to the latter when a coordinate (Prandtl–Glauert) transformation is applied. Furthermore, the LBIE method requires the determination of the solution of the corresponding Dirichlet's problem in local subdomains (companion solution). Therefore, the relevant companion solution is derived. Radial basis functions are used for the interpolations of the field variable. Numerical examples are shown for cases up to frequency of 5000 Hz and Mach number of 0.5, and the results are compared with FEM software (COMSOL).
机译:针对频域对流波动方程,本文采用无网格局部边界积分方程(LBIE)方法。这样的问题对于流动声学中的噪声预测起着重要的作用。分析了均匀流入x方向的情况。对于合成的对流Helmholtz方程,自由空间的Green函数具有比经典Helmholtz方程的Green函数更复杂的形式,尽管当应用坐标(Prandtl–Glauert)变换时,它会简化为后者。此外,LBIE方法需要确定局部子域中相应Dirichlet问题的解(伴随解)。因此,得出相关的伴随解决方案。径向基函数用于字段变量的插值。给出了频率高达5000 Hz和马赫数为0.5的情况的数值示例,并将结果与​​FEM软件(COMSOL)进行了比较。

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