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首页> 外文期刊>The Journal of the Acoustical Society of America >Modeling low-frequency vibration in light-weight timber floor/ceiling systems
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Modeling low-frequency vibration in light-weight timber floor/ceiling systems

机译:轻型木材落地/天花板系统模型低频振动

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Producing practical designs for light-weight timber-framed structures that achieve high sound isolation remains a challenging task, in part because of the lack of models that can accurately predict the sound transmission through proposed designs. This work develops detailed modeling of structural vibration in timber floor/ceiling systems, from which sound transmission in the low-frequency regime (10-150 Hz) can be computed, as a design tool for producing practical timber floor/ceiling details that achieve high isolation for low-frequency sound. The mathematical model uses a variational formulation that enables straightforward modeling of complex composite structures, and introduces the notion of coupling layers to model the movement between joined materials that occurs with practical bonding methods, thereby improving on existing models that assume either perfectly bonded or perfectly slipping interfaces. The composite model structure is assembled only at the computational step, giving an efficient computational scheme that also fits well into the design-development cycle. Results from a parallel experimental program are used to validate the model and to determine effective coupling and damping parameters. The influence of coupling parameters is shown for an example floor, demonstrating that finite slippage at joints is required for the model to predict low-frequency vibration in practical constructions. (C) 2019 Acoustical Society of America.
机译:为达到高音隔离的轻型木材框架结构生产实用设计仍然是一个具有挑战性的任务,部分原因是缺乏可以通过所提出的设计准确预测声音传输的模型。这项工作在木材地板/天花板系统中开发了结构振动的详细建模,可以计算低频制度(10-150 Hz)的声音传输,作为生产高度的实用木材地板/天花板细节的设计工具低频声音的隔离。数学模型使用变分制剂,其能够直接建模复合复合结构,并引入耦合层的概念,以模拟采用实用粘合方法的连接材料之间的运动,从而改善假设完全粘合或完全滑动的现有模型接口。仅在计算步骤中组装复合模型结构,提供了有效的计算方案,也适合设计开发周期。并行实验程序的结果用于验证模型并确定有效的耦合和阻尼参数。示出了耦合参数的影响,示出了示例楼层,证明了该模型需要在实际结构中预测低频振动的接头处的有限滑动。 (c)2019年声学社会。

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