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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Application of a second-order paraxial boundary condition to problems of dynamics of circular foundations on a porous layered half-space
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Application of a second-order paraxial boundary condition to problems of dynamics of circular foundations on a porous layered half-space

机译:二阶近轴边界条件在多孔层状半空间上圆形基础动力问题中的应用

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摘要

A half-space finite element and a consistent transmitting boundary in a cylindrical coordinate system are developed for analysis of rigid circular (or cylindrical) foundations in a water-saturated porous layered half-space. By means of second-order paraxial approximations of the exact dynamic stiffness for a half-space in plane-strain and antiplane-shear conditions, the corresponding approximation for general three-dimensional wave motion in a Cartesian coordinate system is obtained and transformed in terms of cylindrical coordinates. Using the paraxial approximations, the half-space finite element and consistent transmitting boundary are formulated in a cylindrical coordinate system. The development is verified by comparison of dynamic compliances of rigid circular foundations with available published results. Examination of the advantage of the paraxial condition vis-a-vis the fixed condition shows that the former achieves substantial gain in computational effort. The developed half-space finite element and transmitting boundary can be employed for accurate and effective analysis of foundation dynamics and soil-structure interaction in a porous layered half-space.
机译:开发了一种半空间有限元和圆柱坐标系中一致的透射边界,用于分析水饱和多孔分层半空间中的刚性圆形(或圆柱)基础。通过在平面应变和反平面剪切条件下半空间的精确动态刚度的二阶近轴近似,可以得到笛卡尔坐标系中一般三维波运动的相应近似,并将其转换为圆柱坐标。使用近轴近似,在圆柱坐标系中制定了半空间有限元和一致的透射边界。通过比较刚性圆形基础的动态柔度和可用的公开结果来验证该开发。对近轴条件相对于固定条件的优点的检验表明,前者在计算工作量上获得了可观的收益。所开发的半空间有限元和传递边界可用于对多孔分层半空间中的地基动力学和土-结构相互作用进行准确有效的分析。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2011年第3期|p.291-305|共15页
  • 作者单位

    Department of Civil Architectural and Environmental Engineering The University of Texas at Austin Austin 78712-0273 TX USA;

    School of Civil and Environmental Engineering Seoul National University Seoul 151-744 Republic of Korea;

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  • 正文语种 eng
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