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Dynamic Response of the Foundations Resting on a Two-layered Soil Underlain by a Rigid Layer

机译:刚性层支撑在两层土壤上的地基动力响应

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The present experimental investigations study the effect of layering over rigid base on the dynamic behavior of foundation under vertical mode of vibration. Model block vibration tests were conducted on a rigid surface footing resting on different layered soil systems underlain by rigid base. The rigid base was used to simulate the presence of bedrock. The tests were carried out in a pit of size 2.0 m x 2.0 m × 1.9 m (deep) using a concrete footing of size 0.4 m × 0.4 m × 0.1 m. A rotating mass type mechanical oscillator was used for inducing vibration in vertical direction. Different layered soil systems were prepared within the total depth of 1,200 mm over the rigid base. Locally available gravel and fly ash were used to form different layered soil systems. In total, 132 nos. model block vibration tests in vertical mode were conducted for different layering and loading combinations. The experimentally obtained results are also compared with the results obtained from the analysis by mass-spring-dashpot and equivalent half-space theory.
机译:目前的实验研究研究了垂直振动模式下刚性基础上的分层对地基动力特性的影响。模型块的振动测试是在位于刚性底座下面的不同分层土壤系统上的刚性表面基础上进行的。刚性底座用于模拟基岩的存在。在尺寸为2.0 m x 2.0 m×1.9 m(深)的坑中,使用尺寸为0.4 m×0.4 m×0.1 m的混凝土进行测试。使用旋转质量型机械振荡器来引起垂直方向的振动。在刚性基础上的总深度为1200 mm内,准备了不同的分层土壤体系。当地可用的砾石和粉煤灰被用来形成不同的分层土壤系统。总共132个垂直模式下的模型块振动测试针对不同的分层和载荷组合进行。还将实验获得的结果与通过质量-弹簧-缓冲器和等效半空间理论的分析结果进行了比较。

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