首页> 外文会议>GeoShanghai International Conference; 20060606-08; Shanghai(CN) >The Transient Ground Surface Displacements due to a Point Sink/Heat Source in an Elastic Half-Space
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The Transient Ground Surface Displacements due to a Point Sink/Heat Source in an Elastic Half-Space

机译:弹性半空间中由于点汇/热源而引起的瞬态地面位移

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Thermoelastic deformation due to a point heat source is the analog of poroelastic response caused by a point sink. In this paper, Biot's three-dimensional consolidation theory is introduced to derive the analytical solutions of the transient consolidation deformation with a point sink in saturated isotropic porous elastic half-space. The transient ground surface displacement produced by a point heat source is described through analog quantities between poroelasticity and thermoelasticity. Closed-form solutions of the horizontal and vertical displacements are obtained by using Laplace and Hankel integral transforms. Attention is focused on the maximum surface horizontal displacement compared to the maximum surface settlement. Results show that the horizontal displacement is about 30% of the maximum ground surface settlement. The study concludes that horizontal displacement is significant and should be considered in prediction of the transient settlement induced by groundwater withdrawal.
机译:点热源引起的热弹性变形类似于点吸收引起的孔隙弹性响应。本文采用Biot的三维固结理论,导出了各向同性多孔弹性半空间中具有点汇的瞬态固结变形的解析解。由点热源产生的瞬态地表位移通过孔隙弹性和热弹性之间的模拟量来描述。通过使用Laplace和Hankel积分变换可以获得水平和垂直位移的闭合形式的解。与最大表面沉降相比,注意力集中在最大表面水平位移上。结果表明,水平位移约为最大地面沉降量的30%。研究得出结论,水平位移很重要,在预测由地下水抽取引起的瞬态沉降时应考虑到这一点。

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