NUMERICAL ANALYSIS OF BURIED VIBRATION PROTECTION DEVICES USING THE METHOD OF FUNDAMENTAL SOLUTIONS

C. Albino, L. Godinho, D. Dias‐da‐Costa, P. Amado-Mendes
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Abstract

Buried structures may be used to control elastic wave propagation in soils and help to reduce vibrations in sensitive structures. The analysis of these structures using numerical tools is of high importance and is usually a demanding computational task. In the present work, the authors explore the possibility of using a meshless method for such simulations, namely the method of fundamental solutions (MFS). In many applications, the MFS has proved to be a worthy and more efficient alternative to classic methods, such as the FEM or even the BEM. Here, the authors present a study on the application of the MFS to simulate the propagation of elastic waves in a soil with multiple buried inclusions. Application examples are also presented, in which the vibration reduction provided by different sets of buried inclusions is analysed and discussed.
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用基本解法对埋地防振装置进行数值分析
埋地结构可以用来控制弹性波在土壤中的传播,并有助于减少敏感结构的振动。使用数值工具对这些结构进行分析是非常重要的,并且通常是一项要求很高的计算任务。在目前的工作中,作者探索了使用无网格方法进行此类模拟的可能性,即基本解方法(MFS)。在许多应用中,MFS已被证明是一种有价值和更有效的替代经典方法,如FEM甚至边界元法。在此,作者研究了用MFS模拟弹性波在含有多个埋藏包裹体的土壤中的传播。并给出了应用实例,对不同埋置包体的减振效果进行了分析和讨论。
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