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Created cavity expansion solution in anisotropic and drained condition based on Cam-Clay model

机译:基于CAM-CLAY模型的各向异性和排水条件的产生腔扩展解决方案

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摘要

A novel theoretical solution is presented for created (zero initial radius) cavity expansion problem based on Cam-Clay model and considers the effect of initial anisotropic in-situ stress and drained conditions. Here the strain of this theoretical solution is small deformation in elastic region and large deformation in plastic region. The works for cylindrical and spherical cavities expanding in drained condition from zero initial radius are investigated. Most of the conventional solutions were based on the isotropic and undrained condition, however, the initial stress state of natural soil mass is anisotropy by soil deposition history, and drained cavity expansion calculation is closer to actual engineering in permeable soil mass. Finally, the parametric study is presented in order to the engineering significance of this work.
机译:基于CAM-CLAY模型的创建(零初始半径)腔扩展问题提出了一种新颖的理论解,并考虑了初始各向异性原位应力和排水条件的影响。这里,这种理论溶液的应变在弹性区域中的小变形和塑性区域的大变形。研究了从零初始半径的排出条件下扩展的圆柱形和球形空腔的作品。大多数常规溶液基于各向同性和不推介的病症,然而,土壤沉积历史的各向异性初始应力状态是各向异性,并且排出的腔膨胀计算更接近渗透性土壤质量的实际工程。最后,提出了参数研究以使这项工作的工程意义。

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