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Energy dissipation by nonlinear soil strains during soil-structure interaction excited by SH pulse

机译:SH脉冲激发的土-结构相互作用中非线性土应变的能量耗散

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摘要

Three variants of a two-dimensional (2-D) model of a building supported by a rectangular, flexible foundation embedded in nonlinear soil are analyzed. The building, the foundation, and soil have different physical properties. The building is assumed to be linear, but the foundation and the soil can experience nonlinear deformations. It is shown that the work spent for the development of nonlinear strains in the soil can consume a significant part of the input wave energy, and thus less energy is available for excitation of the building. The results help explain why the damage, during the 1994 Northridge earthquake in California, to residential buildings in the areas that experienced large strains in the soil was absent or reduced.
机译:分析了二维(2-D)模型的三种变体,该模型由嵌入非线性土壤中的矩形柔性基础支撑。建筑物,地基和土壤具有不同的物理属性。假定建筑物是线性的,但基础和土壤会经历非线性变形。结果表明,在土壤中发展非线性应变所花费的工作会消耗大部分输入波能量,因此可用于激发建筑物的能量更少。结果有助于解释为什么在1994年加利福尼亚州Northridge地震期间,没有或减少了对土壤承受大应变的区域中的住宅建筑物的破坏。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2012年第2012期|p.261-270|共10页
  • 作者单位

    University of Goce Delcev Department of Computer Science Toso Arsov 14 2000 Stip Republic of Macedonia;

    University of Southern California Department of Civil Engineering Los Angeles CA 90089-2531 USA;

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