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Abstracts of Papers in Acoustical Science and Technology

机译:声学科学与技术论文的摘要

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In this study, we assessed the reduction in the computational costs of a room-acoustics solver by the partition of unity finite-element method (PUFEM), particularly addressing the element matrix construction process with numerical integration rules. The PUFEM enriches the approximation of sound fields by incorporating a general solution of the Helmholtz equation into shape functions. Plane wave enrichment is applied herein. In plane-wave-enriched FEM, the construction of element matrices using a high-order Gauss-Legendre quadrature is the main numerical operation with a long computational time. To reduce the computational time of the room-acoustics solver with plane-wave-enriched FEM, in this report, we describe our exploration of efficient integration rules via an ideal plane wave propagation problem in a duct. We present two integration rules: a well-used existing rule extended to the low-frequency range and another derived by the linear regression of the relationship between the number of wavelengths included in each element and the minimum number of integration points required for solution convergence. Numerical results revealed that both rules produce accurate frequency responses in a broad frequency range. However, the rule obtained by linear regression outperforms the extended rule.
机译:在这项研究中,我们通过统一有限元方法(PUFEM)的分区评估了房地学求解器的计算成本的计算成本,特别是用数值集成规则解决元素矩阵施工过程。 PUFEM通过将Helmholtz方程的一般解决方案结合到形状函数来丰富声场的近似。本文应用了平面波富集。在富集的FEM中,使用高阶高斯 - Legendre正交的元件矩阵的构造是具有长计算时间长的主要数值操作。为了减少具有平面富集的FEM的房间求解器的计算时间,在本报告中,我们通过管道中的理想平面波传播问题描述了我们对高效整合规则的探索。我们展示了两个集成规则:使用良好使用的现有规则扩展到低频范围,另一条规则扩展到低频范围,并且通过线性回归在每个元素中包括的波长数和解决方案收敛所需的最小集成点之间的关系。数值结果显示,两个规则在宽频范围内产生精确的频率响应。但是,线性回归获得的规则优于扩展规则。

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