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ANALYSIS OF LOW FREQUENCY SOUND AND SOUND INDUCED VIBRATION IN A NORWEGIAN WOODEN BUILDING

机译:挪威木结构建筑的低频声音和振动分析

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摘要

The results of a study of low frequency sound and its generation of building vibration and induced indoor sound is presented. The study is conducted by combining both full scale field tests and numerical simulations. It is shown that the low frequency sound interaction with the fundamental frequencies of the building components combined with air leaks in the building envelope are the main factors that govern transmission of sound into the building. Radiation from vibrating ceiling and walls seems to be the dominant source of the low frequency indoor sound, and floor vibration is acoustically driven by the indoor sound pressure in the room. Due to the low frequencies in question, tools to predict sound and vibration, and design mitigation measures at low frequencies noise and vibration in building structures are virtually non-existent. To this end, a finite element model combining acoustic wave propagation and structural dynamics presented in this paper provides a first step. Using this model, a number of countermeasures has been tested and some proven effective in this low frequency range.
机译:介绍了低频声音及其产生的建筑物振动和室内声音产生的研究结果。这项研究是通过结合全面的现场测试和数值模拟来进行的。结果表明,低频声音与建筑物组件基频的相互作用以及建筑物围护结构中的漏气是决定声音向建筑物内传播的主要因素。振动的天花板和墙壁的辐射似乎是低频室内声音的主要来源,而地板振动是由室内的室内声压驱动的。由于所考虑的低频,实际上不存在用于预测声音和振动的工具,以及在低频下设计缓解措施的建筑结构中的噪声和振动。为此,本文提出的结合声波传播和结构动力学的有限元模型提供了第一步。使用此模型,已测试了许多对策,并已证明在此低频范围内有效。

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