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Structural dynamics of a dowelled-joist timber floor in the low-frequency range modelled using finite element simulation

机译:用有限元模拟法模拟低频下的竖井木地板的结构动力学

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This paper concerns the development and validation of Finite Element Methods (FEM) to simulate the dynamic response of a dowelled-joist timber floor. This is a solid floor comprised of timber joists connected using timber dowels with individual assemblies connected using inclined metal screws. The focus is on the structural dynamics in the low-frequency range up to 200 Hz which is the relevant range for impact sound insulation and vibration serviceability. Dowel connections between the joists that formed each assembly were modelled using either rigid or spring connectors in the FEM models. The validation against experimental modal analysis showed that both approaches were valid in terms of the eigenfrequencies, Modal Assurance Criterion (MAC) and the spatial-average velocity with point excitation. Whilst the FEM model with spring connectors had a higher number of correlated modes in the MAC analysis, this required removal of many spurious modes before predicting the response. The validated models were used to demonstrate the potential in predicting assessment parameters for vibration serviceability that are contained in EN 1995-1-1 (Eurocode 5). This predictive approach to the evaluation of vibration serviceability has the advantage in that it can be used for non-standard timber floors with non-standard boundary conditions or floor plans. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文涉及有限元方法(FEM)的开发和验证,以模拟木托梁木地板的动力响应。这是一个坚固的地板,由木托梁组成,这些托梁通过木销钉连接,单个组件通过倾斜金属螺钉连接。重点是在高达200 Hz的低频范围内的结构动力学,这是冲击隔音和振动适用性的相关范围。在FEM模型中,使用刚性或弹簧连接器对形成每个组件的托梁之间的销连接进行建模。针对实验模态分析的验证表明,两种方法在本征频率,模态保证标准(MAC)和点激励的空间平均速度方面均有效。尽管具有弹簧连接器的FEM模型在MAC分析中具有较高数量的相关模式,但这需要在预测响应之前除去许多杂散模式。经过验证的模型被用来证明预测EN 1995-1-1(欧洲规范5)中所包含的振动适用性评估参数的潜力。这种评估振动可使用性的预测方法的优势在于,它可以用于具有非标准边界条件或平面图的非标准木地板。 (C)2017 Elsevier Ltd.保留所有权利。

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