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Wavenumber-extended high-order oscillation control finite volume schemes for multi-dimensional aeroacoustic computations

机译:波数扩展的高阶振荡控制有限体积格式,用于多维航空声学计算

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A new numerical method toward accurate and efficient aeroacoustic computations of multi-dimensional compressible flows has been developed. The core idea of the developed scheme is to unite the advantages of the wavenumber-extended optimized scheme and M-AUSMPW+/MLP schemes by predicting a physical distribution of flow variables more accurately in multi-space dimensions. The wavenumber-extended optimization procedure for the finite volume approach based on the conservative requirement is newly proposed for accuracy enhancement, which is required to capture the acoustic portion of the solution in the smooth region. Furthermore, the new distinguishing mechanism which is based on the Gibbs phenomenon in discontinuity, between continuous and discontinuous regions is introduced to eliminate the excessive numerical dissipation in the continuous region by the restricted application of MLP according to the decision of the distinguishing function. To investigate the effectiveness of the developed method, a sequence of benchmark simulations such as spherical wave propagation, nonlinear wave propagation, shock tube problem and vortex preservation test problem are executed. Also, throughout more realistic shock-vortex interaction and muzzle blast flow problems, the utility of the new method for aeroacoustic applications is verified by comparing with the previous numerical or experimental results. (C) 2007 Elsevier Inc. All rights reserved.
机译:已经开发出一种新的数值方法,可以对多维可压缩流进行精确而有效的空气声计算。所开发方案的核心思想是通过在多空间维度上更精确地预测流量变量的物理分布,来结合波数扩展优化方案和M-AUSMPW + / MLP方案的优势。新提出了基于保守要求的有限体积方法的波数扩展优化程序,以提高精度,这是捕获光滑区域中解的声学部分所必需的。此外,引入了一种基于连续区域和不连续区域之间的不连续性的吉布斯现象的新的区分机制,以根据区分功能的决定,通过限制使用MLP来消除连续区域中过多的数值耗散。为了研究该方法的有效性,执行了一系列基准测试,例如球面波传播,非线性波传播,激波管问题和涡流保持测试问题。此外,在更现实的冲击涡相互作用和枪口冲击流问题中,通过与先前的数值或实验结果进行比较,验证了该新方法在航空声学应用中的实用性。 (C)2007 Elsevier Inc.保留所有权利。

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