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首页> 外文期刊>Journal of Sound and Vibration >An efficient wave based approach for the time-harmonic vibration analysis of 3D plate assemblies
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An efficient wave based approach for the time-harmonic vibration analysis of 3D plate assemblies

机译:基于波浪的高效方法对3D板组件进行时谐振动分析

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For the analysis of the vibrational behaviour of mechanical structures the Finite Element Method (FEM) and the Statistical Energy Analysis (SEA) are most commonly used. The use of the FEM is limited to low frequency applications, since finer meshes are required at higher frequencies to preserve the same accuracy, hence increasing the computational load. The use of SEA is mostly limited to high frequency applications, due to its underlying assumptions. This paper discusses the principles of the Wave Based Method (WBM) for the steady-state dynamic analysis of thin, flat plates coupled at an arbitrary angle, including both out-of-plane and in-plane plate behaviour. Two numerical examples illustrate the beneficial convergence rate of the WBM and show the importance that in-plane displacements can have in the simulation of non-coplanar plate assemblies. As a result of its higher efficiency, the WBM is able to relax the existing frequency limit of the FEM and in this way can reduce the mid-frequency gap which exists between the low and the high frequency techniques. Furthermore, it can be used to provide more accurate input parameters for SEA-calculations in order to lower the frequency range of SEA.
机译:为了分析机械结构的振动行为,最常使用有限元方法(FEM)和统计能量分析(SEA)。 FEM的使用仅限于低频应用,因为在更高的频率下需要更细的网格以保持相同的精度,从而增加了计算量。由于其基本假设,SEA的使用主要限于高频应用。本文讨论了基于波浪的方法(WBM)的原理,该方法用于以任意角度耦合的薄平板的稳态动态分析,包括平面外和平面内的行为。两个数值示例说明了WBM的有益收敛速度,并表明了平面内位移在非共面板组件的仿真中的重要性。由于其更高的效率,WBM能够放宽FEM的现有频率限制,并以此方式减少低频技术和高频技术之间存在的中频间隙。此外,它可以用于为SEA计算提供更准确的输入参数,以降低SEA的频率范围。

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