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Double wall barriers for the reduction of ground vibration transmission

机译:双层壁障可减少地面振动传递

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Stiff wall barriers can be effective in reducing the transmission of environmental ground vibration. Up to now, single wall barriers have mostly been studied. In building acoustics, however, double walls are used in order to realize a high level of sound insulation. In this paper, the potential of using double walls in reducing ground vibration transmission is investigated by means of numerical simulations. Two cases are studied: jet-grout walls and concrete walls in a homogeneous soil with elastic properties representative of a sandy soil. For both cases, the three-dimensional free field response due to a point load is computed using a 2.5D finite element methodology. Subsequently, the free field response is computed for a simplified train load. Double jet-grout wall barriers are found to be slightly more effective than single wall barriers, in particular when the thickness of the walls and the intermediate soil matches a quarter Rayleigh wavelength. The largest increase in vibration reduction is found for the area closest to the vibration source, where the vibration levels have the highest values. The performance of concrete wall barriers, however, is mainly determined by the stiffness of the walls, and almost no difference in performance is found for single and double walls.
机译:坚硬的壁障可有效减少环境地面振动的传播。截止目前,单壁屏障的研究最多。但是,在建筑声学中,为了实现高水平的隔音效果,使用了双层墙。在本文中,通过数值模拟研究了使用双壁降低地面振动传递的潜力。研究了两种情况:在均质土壤中的射流灌浆墙和混凝土墙,其弹性代表砂土。对于这两种情况,都使用2.5D有限元方法计算了由于点载荷引起的三维自由场响应。随后,针对简化的列车负载计算自由场响应。发现双喷射灌浆壁障比单壁障壁更有效,特别是当壁厚和中间土壤的厚度与四分之一瑞利波长匹配时。发现在最靠近振动源的区域,振动减小最大,振动水平具有最高值。但是,混凝土墙屏障的性能主要取决于墙的刚度,对于单层和双层墙,几乎没有发现性能差异。

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