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Rocking vibrations of a rigid circular foundation on poroelastic half-space to elastic waves

机译:多孔弹性半空间上刚性圆形基础的摇摆振动到弹性波

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摘要

A study is carefully conducted for the rocking response of a rigid circular foundation resting on a poroelastic half-space when subjected to seismic waves under the framework of Biot's theory. The free-field waves, rigid-body scattering field waves and radiation scattering field waves are introduced to consider the complex behavior of the soil owing to the scattering phenomena caused by the existence of the foundation. The contact surface between the soil and the foundation is supposed to be perfectly bonded and fully permeable. Combining with the divided wave fields, two sets of dual integral equations elaborating the mixed boundary-value conditions are established, and then reduced to Fredholm integral equations. Therefore, with a semi-analytical method, the expressions of the rocking displacements are obtained. The numerical results of the rocking vibration of the foundation for incident P, SV and Rayleigh waves are presented. The influences of certain parameters, such as the permeability of the soil, the incident angle, Poisson's ratio and the mass of the foundation, on the rocking vibration of the foundation are explored and studied. Different reactions are found when the foundation is excited by different waves.
机译:在毕奥特理论的框架下,针对在地震作用下位于多孔弹性半空间上的刚性圆形基础的摇摆响应进行了仔细研究。引入了自由场波,刚体散射场波和辐射散射场波,以考虑由于基础的存在引起的散射现象而引起的土壤的复杂行为。假定土壤和地基之间的接触面是完美结合的,并且是完全可渗透的。结合划分的波场,建立了阐述混合边界值条件的两组对偶积分方程,然后将其简化为Fredholm积分方程。因此,使用半解析法,可以得到摇摆位移的表达式。给出了入射P,SV和瑞利波的地基摇摆振动的数值结果。探索并研究了土壤渗透率,入射角,泊松比和地基质量等参数对地基摇摆振动的影响。当基础被不同的波浪激发时,会发现不同的反应。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2011年第4期|p.708-715|共8页
  • 作者单位

    MOE Key Laboratory of Soft Soils and Geoenviromental Engineering Zhejiang University Hangzhou 310058 PR China;

    MOE Key Laboratory of Soft Soils and Geoenviromental Engineering Zhejiang University Hangzhou 310058 PR China College of Architecture and Civil Engineering Wenzhou University. Wenzhou 325035 PR China;

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