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Numerical calculation and experimental research on sound loudness in sound field of structural-acoustic coupling cavity

机译:结构声耦合腔声场中响度的数值计算与实验研究

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The influence of sound loudness in an enclosed cavity caused by thickness variation of plastic plate, which is simply supported on an enclosed cavity with five rigid walls and excited by a harmonic force, is studied in this article by using numerical algorithms. Based on Finite Element Method (FEM) and Zwicker’s Loudness Model, loudness in a structural-acoustic coupled cavity can be obtained by numerical algorithms. An experiment is designed to verify the numerical model. The value of loudness in a cavity with one plastic plate simply supported with its thickness variation is measured by using B&K PULSE 3560C data analysis system. The numerical calculation model is accurate after comparison between numerical calculation result and the experimental result.
机译:本文利用数值算法研究了塑料板厚度变化对封闭腔内声音响度的影响,塑料板厚度变化简单地支撑在具有五个刚性壁并受谐波激励的封闭腔内。基于有限元方法(FEM)和Zwicker的响度模型,可以通过数值算法获得结构声耦合腔中的响度。设计了一个实验来验证数值模型。使用B&K PULSE 3560C数据分析系统,可以测量仅用一块塑料板支撑其厚度变化的空腔的响度值。数值计算结果与实验结果进行比较后,数值计算模型准确。

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