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Unified Analytical Solution for Cylindrical Cavity Expansion of Saturated Soil Based on Large Deformation and Non-drainage Condition

机译:基于大变形和非排水条件的饱和土圆柱形腔膨胀的统一分析解决方案

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摘要

Soil around the cylindrical pore is divided into elastic and plastic regions. In the elastic region, the small deformation theory is applied while in the plastic region, the large deformation theory and unified strength criterion are applied. According to the stress equilibrium equation and the boundary condition of continuous stress and deformation, the theoretical solution to plastic region radius, limit expansion pore pressure excess pore pressure and excess pore water pressure of the cylindrical cavity expansion can be derived when considering large deformation and non-drainage problems. Compared to the theoretical results of Cao L.F., the theoretical calculation results are closer to the field test results which show that the theory has a certain value in engineering application. Through calculations and analysis, it is also derived that expansion pore pressure increase is non-linear with the increase of b value, while the excess pore water pressure is just the opposite.
机译:圆柱形孔周围的土壤分为弹性和塑料区域。在弹性区域中,在塑料区域的同时施加小变形理论,施加大变形理论和统一的强度标准。根据应力平衡方程和连续应力和变形的边界条件,在考虑大变形和非变形时,可以推导出塑料区半径的理论溶液,限制膨胀孔隙压力过剩孔隙压力和过量孔隙水压力 - rainage问题。与CaO L.F的理论结果相比,理论计算结果更接近现场测试结果,表明该理论在工程应用中具有一定的价值。通过计算和分析,还导出,随着B值的增加,膨胀孔隙压力增加是非线性的,而过量的孔隙水压力恰恰相反。

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