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Numerical study on the active vibration isolation by wave impeding block in saturated soils under vertical loading

机译:竖向荷载作用下饱和土中波阻块主动隔振的数值研究

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摘要

Dynamic response in a saturated porous medium (i.e. two-phased medium) is significantly different from the commonly assumed single-phased elastic medium in vibration analyses. To investigate the ground vibration isolation by wave impeding block (WIB) in saturated layered soils under vertical loading, an improved three-dimensional (3D) boundary element model is established for analyzing the soil-foundation-WIB interaction problem. The equations of boundary element method (BEM) for saturated and layered soils were deduced using fundamental solution (Green's function) based on thin layer method (TLM), in order to account for the lamination characteristics of the ground. The vibration screening effectiveness of WIB with different thicknesses, equivalent diameters, shear module and embedded depths were systematically investigated and the results were compared with those in a single-phased elastic soil. The results show that the WIB can effectively reduce the vibration amplitude in the saturated ground and its effectiveness increases with increasing shear modulus, equivalent diameter, thickness, and decreasing embedded depth of the WIB. In addition, a significant amplification of the vibration is observed in the saturated soil when the dimensionless embedded depth is larger than or the dimensionless thickness is smaller than a threshold value.
机译:在振动分析中,饱和多孔介质(即两相介质)中的动态响应与通常假定的单相弹性介质显着不同。为了研究竖向荷载作用下饱和层状土中的波阻块(WIB)对地震动的隔离作用,建立了一种改进的三维(3D)边界元模型来分析地基-WIB的相互作用问题。基于薄层法(TLM),利用基本解(格林函数)推导了饱和土和层状土的边界元法(BEM)方程,以考虑地面的层合特性。系统地研究了不同厚度,当量直径,剪切模量和埋入深度的WIB的振动筛查效果,并将其与单相弹性土中的结果进行了比较。结果表明,WIB可以有效地降低饱和地基中的振动幅度,并且其有效性随着WIB的剪切模量,等效直径,厚度和埋入深度的减小而增加。另外,当无量纲的嵌入深度大于或无量纲的厚度小于阈值时,在饱和土壤中观察到振动的显着放大。

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