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Dynamic Response of a Rigid Cylinder Foundation in a Poroviscoelastic Soil Layer Resting on Rigid Bedrock under a Vertical Time-Harmonic Load

机译:在垂直时谐波载荷下刚性基岩上静脉内砂土层刚性圆筒基础的动态响应

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摘要

This article presents an analytical investigation of the dynamic response of a rigid cylinder foundation embedded in a poroviscoelastic soil layer overlaying a rigid bedrock and subjected to vertical time-harmonic loading. First, this soil layer is treated as a liquid-saturated porous continuum and described by Boer's poroelastic model. Second, based on a technique for the separation of variables, the analytical solution for the amplification factor of displacement of the foundation to this load is derived. This solution is then validated by comparing its reduced results with the reported results of saturated half-space cases. Finally, numerical examples obtained from the present solution are performed to show the effects of the thickness of the soil under the foundation bottom, the liquid-solid coupling coefficient of the soil, and the mass ratio of the foundation on the vibration characteristics of the foundation in the soil. The corresponding analysis results are also included, which can provide theoretical reference for engineering practice. (c) 2019 American Society of Civil Engineers.
机译:本文介绍了嵌入在覆盖刚性基岩中的悬垂底座的刚性气缸基础的动态响应的分析研究,并进行垂直时谐载荷。首先,将该土壤层被视为液态饱和多孔连续体,并由Boer的孔弹性模型描述。其次,基于用于分离变量的技术,推导了对该负荷基础的放大因子的分析解决方案。然后通过将其降低的结果与报告的饱和半空间病例的结果进行比较来验证该解决方案。最后,进行从本溶液中获得的数值实例,以显示土壤在基础底部,土壤的液体固体耦合系数下的厚度的影响,以及基础振动特性的基础的质量比在土壤中。还包括相应的分析结果,这可以为工程实践提供理论参考。 (c)2019年美国土木工程学会。

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