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The influence of finite and infinite wall cavities on the sound insulation of double-leaf walls

机译:有限和无限壁洞对双叶墙隔声的影响

摘要

Theories used to predict the sound insulation of double-leaf cavity wall systems are usually based on the assumption that the wall is of an infinite extent. To account for the effect of the finite extent of the wall, limiting the angle of incidence, a finite radiation efficiency model or the spatial windowing method is used in order to obtain realistic predictions. However, the effects of the finite extent of the cavity are often not included. This paper presents an extension of a finite two-dimensional cavity theory to include limp panels on each side of the cavity. It is shown that the oblique incidence mass-air-mass resonance can only occur for certain frequencies and certain angles of incidence. This is the reason why the infinite extent theories under-predict the sound insulation. The results of the predicted sound insulation agree with measurements when the wall cavity is empty. To obtain agreement when the cavity is full of a porous sound absorbing material, a flow resistivity of about one-fifth of the measured value has to be used. Use of the actual flow resistivity gives sound insulation values that are 10 dB too high.
机译:用来预测双叶腔壁系统隔音的理论通常基于这种假设:该壁的范围是无限的。为了解决墙的有限范围的影响,限制入射角的问题,使用了有限的辐射效率模型或空间开窗方法以获得真实的预测。但是,通常不包括空腔有限范围的影响。本文介绍了有限二维腔体理论的扩展,以在腔体的每一侧都包括li行面板。结果表明,斜入射质量空气共振只能在某些频率和某些入射角下发生。这就是无限范围理论低估隔音效果的原因。当壁腔为空时,预测的隔音效果与测量结果一致。为了在空腔中充满多孔吸声材料时获得一致,必须使用大约五分之一测量值的流阻。使用实际的流动电阻率会导致隔音值太高10 dB。

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