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Asymmetry of nonlinear soil strains during soil-structure interaction excited by SH pulse

机译:sH脉冲激发下土 - 结构相互作用中非线性土样的非对称性

摘要

A two-dimensional (2D) model of a building supported by a rectangular, flexible foundation embedded in nonlinear soil is analyzed. The model is excited by a half-sine SH wave pulse, which travels towards the foundation. The results show that the spatial distribution of permanent, nonlinear strain in the soil depends upon the incident angle, the amplitude, and the duration of the pulse. If the wave has large amplitude and short duration, the nonlinear zone in the soil appears immediately or after the reflection from the half-space, in which case it is located close to the free surface. This results from interference of the reflected pulse from the free surface and the incoming part of the pulse that still has not reached the free surface. 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.udKey words: soil-structure interaction: nonlinear waves in the soil; distribution of wave energy.
机译:分析了由非线性弹性土壤中嵌入的矩形柔性基础支撑的建筑物的二维(2D)模型。该模型由半正弦SH波脉冲激励,该脉冲向基础传播。结果表明,土壤中永久的非线性应变的空间分布取决于入射角,振幅和脉冲持续时间。如果波振幅大且持续时间短,则土壤中的非线性区域会立即出现或在半空间反射之后出现,在这种情况下,它位于自由表面附近。这是由于来自自由表面的反射脉冲与仍未到达自由表面的脉冲入射部分之间的干扰引起的。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,因此可用于建筑激发的能量更少。波能的分布。

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