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Numerical Prediction Tools for Low-Frequency Sound Insulation in Lightweight Buildings

机译:轻量级建筑低频隔音材料的数值预测工具

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Lightweight wooden-framed constructions have steadily increased their market share in Sweden during the last two decades. Achieving acoustic and vibration comfort in wooden-based buildings is, however, still a challenging task. Wood is high in both strength and stiffness in relation to its weight, but its variability has repercussions on how sound propagates, this triggering sound insulation problems. Even if buildings comply with present-to-day regulations, complaints amid residents often arise due to low frequency noise, as it is outside the scope of the standards (where no analyses are performed below 50 Hz). In this investigation, laboratory acoustic sound insulation measurements carried out on a facade element according to the current standards, are intended to be reproduced and calibrated by means of the finite element method. In doing so, the first steps of a numerical predictive tool mimicking the real specimen, from 0 to 100 Hz, are presented. This will enable further research about phenomena occurring in the far low end of the frequency range, which is believed to be the cause of most nuisances reported by residents. Reliable predictive tools for addressing acoustic issues during the design phase avoid additional costs of building test prototypes and ensure a better acoustic performance.
机译:在过去的二十年中,轻量级木制框架建筑在瑞典稳步增加了他们的市场份额。然而,在木制的建筑中实现声学和振动舒适性,仍然是一个具有挑战性的任务。与其重量相比,木材在强度和刚度方面都很高,但其变异性对声音传播的变化具有影响,这是如何触发隔音问题。即使建筑物遵守本日法规,居民的投诉通常由于低频噪声而产生,因为它超出标准的范围(如果在50 Hz以下进行分析,则没有进行分析)。在该研究中,根据当前标准的立面元件在外部元件上进行的实验室声隔音测量,旨在通过有限元方法再现和校准。在这样做时,呈现了模仿真实标本的数值预测工具的第一步,从0到100 Hz呈现。这将能够进一步研究频率范围远低端发生的现象,这被认为是居民报告的大多数滋扰的原因。在设计阶段期间寻求声学问题的可靠预测工具避免了建筑测试原型的额外成本,并确保了更好的声学性能。

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