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首页> 外文期刊>The Journal of the Acoustical Society of America >Acoustic energy density distribution and sound intensity vector field inside coupled spaces
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Acoustic energy density distribution and sound intensity vector field inside coupled spaces

机译:耦合空间内的声能密度分布和声强矢量场

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In this paper, the modal expansion method supported by a computer implementation has been used to predict steady-state distributions of the potential and kinetic energy densities, and the active and reactive sound intensities inside two coupled enclosures. The numerical study was dedicated to low-frequency room responses. Calculation results have shown that the distribution of energetic quantities in coupled spaces is strongly influenced by the modal localization. Appropriate descriptors of the localization effect were introduced to identify localized modes. As was evidenced by numerical data, the characteristic objects in the active intensity field are vortices positioned irregularly inside the room. It was found that vortex centers lie exactly on the lines corresponding to zeros of the eigenfunction for a dominant mode. Finally, an impact of the wall impedance on the quantitative relationship between the active and reactive intensities was analyzed and it was concluded that for very small sound damping the behavior of the sound intensity inside the room space is essentially only oscillatory.
机译:在本文中,由计算机实现支持的模态展开方法已用于预测势能和动能密度的稳态分布,以及两个耦合外壳内的有功和无功声强。数值研究致力于低频房间响应。计算结果表明,耦合空间中高能量的分布受到模态局部化的强烈影响。引入了适当的定位效果描述符来识别定位模式。正如数值数据所证明的那样,活动强度场中的特征对象是不规则地放置在室内的涡流。已经发现,对于中心模,涡旋中心正好位于与本征函数的零相对应的线上。最后,分析了壁阻抗对有功和无功强度之间的定量关系的影响,并得出结论,对于很小的声音阻尼,室内空间内的声音强度行为基本上只是振荡的。

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