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PREDICTION OF LOW-FREQUENCY RADIATION EFFICIENCIES USING THE NORMAL MODE APPROACH AND FINITE ELEMENT METHODS

机译:使用正常模式方法和有限元方法预测低频辐射效率

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For homogeneous, isotropic plates at low-frequencies and non-homogeneous, anisotropic plates, estimates for the radiation efficiency that assume high modal density are not always sufficiently accurate for use in prediction models. This paper considers two different plates under point force excitation, a concrete floor with low modal density and a dowelled-joist timber floor which represents a complex inhomogeneous, anisotropic plate. Both the normal mode model and Finite Element Methods (FEM) are used to predict the radiation efficiency for a concrete floor into a specific room. The results for the concrete floor provide more evidence that a reasonable approximation for masonry/concrete walls and floors is to limit Leppington's predicted radiation efficiency values to unity. For the dowelled-joist timber floor, an experimentally validated FEM model for the dynamic structural response is used with a transfer plate to account for the non-continuous nature of the FEM model that would not normally be suitable for FEM modeling of fluid-structure interaction. The models for both floors demonstrate the potential to use coupled room-plate models to determine radiation efficiencies which are specific to the form of excitation and the modal response of the plate and the room.
机译:在低频率和非均匀,各向异性板均匀的,各向同性的板,用于辐射效率估计假定高模态密度并不总是在预测模型使用足够准确的。本文考虑下点力激发,混凝土地板具有低模态密度和代表复杂的不均匀,各向异性板dowelled托梁木地板的两个不同的板。两个正常模式模型与有限元方法(FEM)被用于预测混凝土地板辐射效率成特定房间。为混凝土地面的结果提供了更多的证据表明,砌体/混凝土墙壁和地板的合理近似值是Leppington的预测辐射效率值限制了统一。对于dowelled托梁木地板,一个实验验证有限元模型的动态结构响应用于与传递板以考虑有限元模型的非连续性质通常不会适合于流体 - 结构交互的有限元建模。两种地板模型表明潜在使用耦合室板的模型,以确定哪些特定于激励的形式,并且所述板和所述室的模态响应辐射效率。

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