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Prediction of Broadband Sound Fields in Enclosures by Decomposition in Powers of an Absorption Parameter

机译:用吸收参数的功率分解通过分解预测机壳中的宽带声场

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A novel analysis for steady-state or time-dependent broadband diffuse sound fields in enclosures is developed. Beginning with a formulation utilizing broadband intensity boundary sources, the strength of these wall sources is expanded in a series in powers of an absorption parameter, giving a separate boundary integral problem for each power. The first problem has a uniform interior level proportional to the reciprocal of the absorption parameter, as expected. The second problem gives a mean-square pressure distribution that is independent of the absorption parameter and is primarily responsible for the spatial variation of the reverberant field. This problem depends on the location of sources and the spatial distribution of absorption, but not the overall absorption level. Additional problems proceed at integer powers of the absorption parameter, but are essentially higher order corrections to the spatial variation. The important second problem and the higher order problems are easily solved numerically on a one-time basis for a given distribution of absorption and given source locations. Solutions show the method to be accurate and efficient for the prediction of the reverberant and overall pressure fields. The approach gives physical insight into the primary effects governing spatial variations in broadband sound fields.
机译:开发了一种新颖的稳态或时间依赖宽带漫射声场的分析。从使用宽带强度边界源的配方开始,这些壁源的强度在吸收参数的功率中展开,为每个功率提供单独的边界积分问题。第一问题具有与预期的吸收参数的往复式成比例的均匀内部水平。第二问题提供了平均方形压力分布,其独立于吸收参数,主要负责混响场的空间变化。这个问题取决于源的位置和吸收的空间分布,但不是整体吸收水平。额外问题在吸收参数的整数功率下进行,但对空间变化基本上是更高的顺序校正。重要的第二个问题和更高阶的问题在数量上可以在一次性地基础上在数量上求解,以便给定的吸收和给定源位置的分布。解决方案显示了对混响和整体压力场预测的准确和有效的方法。该方法对管理宽带声场的空间变化的主要效果提供了物理洞察。

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