木地板低频冲击声:基于概念设计的有限元研究

IF 1.4 Q3 ACOUSTICS
J. Olsson, Andreas Linderholt
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引用次数: 1

摘要

传统上,建筑行业的声学产品开发是以测量为导向的。对于轻质地板,频率低于重型混凝土地板的频率范围是一个问题。从50赫兹到20赫兹的频率范围会影响人们对多层公寓楼中轻质地板结构(例如木地板)的冲击声的感知。众所周知,较低的兴趣频率范围使有限元模拟更可行。减少撞击声的策略对于木地板来说往往不那么直接,因为与混凝土地板相比,木地板的设计有更大的变化。这意味着可靠的撞击声有限元模拟可以为建筑行业节省时间和金钱。本文对轻质木地板的冲击声传递进行了研究。计算了从激励点上的力到下面接收腔内的声压的频率响应函数。通过在模型中使用与地板下无反射边界单元连接的流体单元,可以在不涉及混响的情况下研究传输和绝缘。坚硬的地面比柔软的地面有更大的冲击力,尽管这个问题在最低频率下似乎不那么明显。为了表征地板表面,还计算并给出了冲击点的点流动性。振动和声音传播的水平取决于激励点的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-frequency impact sound of timber floors: A finite element–based study of conceptual designs
Traditionally, product development concerning acoustics in the building industry is measurement oriented. For lightweight floors, frequencies that are lower than the frequency range for heavy concrete floors are an issue. The frequency range of from 50 Hz down to 20 Hz influences the human perception of impact sound in multi-story apartment buildings with lightweight floor constructions, such as timber floors, for example. It is well known that a lower frequency range of interest makes finite element simulations more feasible. Strategies for reducing impact sound tend to be less straightforward for timber floors because they have a larger variation of designs when compared to concrete floors. This implies that reliable finite element simulations of impact sound can save time and money for the building industry. This study researches the impact sound transmission of lightweight timber floors. Frequency response functions, from forces on excitation points to sound pressure in the receiving cavity below, are calculated. By using fluid elements connected to reflection-free boundary elements under the floors in the models, the transmission and insulation can be studied without involving reverberation. A floor model with a hard screed surface will have a larger impact force than a softer floor, although this issue seems less pronounced at the lowest frequencies. To characterize floor surfaces, the point mobilities of the impact points are also calculated and presented. The vibration and sound transmission levels are dependent on the selection of the excitation points.
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来源期刊
BUILDING ACOUSTICS
BUILDING ACOUSTICS ACOUSTICS-
CiteScore
4.10
自引率
11.80%
发文量
22
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