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高频建筑声学系统的动力能量分析。

Dynamical energy analysis for built-up acoustic systems at high frequencies.

机构信息

School of Mathematical Sciences, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom.

出版信息

J Acoust Soc Am. 2011 Sep;130(3):1420-9. doi: 10.1121/1.3621041.

Abstract

Standard methods for describing the intensity distribution of mechanical and acoustic wave fields in the high frequency asymptotic limit are often based on flow transport equations. Common techniques are statistical energy analysis, employed mostly in the context of vibro-acoustics, and ray tracing, a popular tool in architectural acoustics. Dynamical energy analysis makes it possible to interpolate between standard statistical energy analysis and full ray tracing, containing both of these methods as limiting cases. In this work a version of dynamical energy analysis based on a Chebyshev basis expansion of the Perron-Frobenius operator governing the ray dynamics is introduced. It is shown that the technique can efficiently deal with multi-component systems overcoming typical geometrical limitations present in statistical energy analysis. Results are compared with state-of-the-art hp-adaptive discontinuous Galerkin finite element simulations.

摘要

描述机械和声波场强度分布的标准方法在高频渐近极限中通常基于流动输运方程。常用的技术是统计能量分析,主要用于振动声学领域,以及射线追踪,这是建筑声学中的一种流行工具。动力能分析使得在标准统计能量分析和全射线追踪之间进行插值成为可能,这两种方法都是其极限情况。在这项工作中,引入了一种基于支配射线动力学的 Perron-Frobenius 算子的 Chebyshev 基展开的动力能分析版本。结果表明,该技术可以有效地处理多分量系统,克服了统计能量分析中存在的典型几何限制。结果与最先进的 hp 自适应间断 Galerkin 有限元模拟进行了比较。

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