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软弱岩体中圆形隧道挤压变形临界应变研究 被引量:1
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作者 温森 张建伟 《长江科学院院报》 CSCD 北大核心 2010年第2期42-45,49,共5页
预测隧道挤压程度对设计者至关重要,因此对挤压状态临界应变的研究是很必要的。由于软弱岩体中Q或RMR岩体分类使用效果欠佳,引入GSI代替Q或RMR,并在前人的基础上推导了圆形隧道发生挤压变形的临界应变公式。采用工程实例进行了验证,计... 预测隧道挤压程度对设计者至关重要,因此对挤压状态临界应变的研究是很必要的。由于软弱岩体中Q或RMR岩体分类使用效果欠佳,引入GSI代替Q或RMR,并在前人的基础上推导了圆形隧道发生挤压变形的临界应变公式。采用工程实例进行了验证,计算结果符合实际观测结果。最后,依据Hoek-Brown强度准则推导了静水压力状态下圆形隧道挤压变形的临界应变解析表达式。对于埋深很深的隧道,侧压系数近似为1,因此可以采用推导的解析解确定隧道挤压状态。 展开更多
关键词 隧道 挤压状态 软弱岩体 临界应变 Hoek—Brown强度准则 静水压力状态
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Three-dimensional consolidation deformation analysis of porous layered soft soils considering asymmetric effects 被引量:1
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作者 张治国 黄茂松 王卫东 《Journal of Central South University》 SCIE EI CAS 2014年第9期3639-3647,共9页
Long-term settlements for underground structures, such as tunnels and pipelines, are generally observed after the completion of construction in soft clay. The soil consolidation characteristic has great influences on ... Long-term settlements for underground structures, such as tunnels and pipelines, are generally observed after the completion of construction in soft clay. The soil consolidation characteristic has great influences on the long-term deformation for underground structures. A three-dimensional consolidation analysis method under the asymmetric loads is developed for porous layered soil based on Biot's classical theory. Time-displacement effects can be fully considered in this work and the analytical solutions are obtained by the state space approach in the Cartesian coordinate. The Laplace and double Fourier integral transform are applied to the state variables in order to reduce the partial differential equations into algebraic differential equations and easily obtain the state space solution. Starting from the governing equations of saturated porous soil, the basic relationship of state space variables is established between the ground surface and the arbitrary depth in the integral transform domain. Based on the continuity conditions and boundary conditions of the multi-layered pore soil model, the multi-layered pore half-space solutions are obtained by means of the transfer matrix method and the inverse integral transforms. The accuracy of proposed method is demonstrated with existing classical solutions. The results indicate that the porous homogenous soils as well as the porous non-homogenous layered soils can be considered in this proposed method. When the consolidation time factor is 0.01, the value of immediate consolidation settlement coefficient calculated by the weighted homogenous solution is 27.4% bigger than the one calculated by the non-homogeneity solution. When the consolidation time factor is 0.05, the value of excess pore water pressure for the weighted homogenous solution is 27.2% bigger than the one for the non-homogeneity solution. It is shown that the material non-homogeneity has a great influence on the long-term settlements and the dissipation process of excess pore water pressure. 展开更多
关键词 three-dimensional consolidation deformation porous layered soils asymmetric loads long-term deformation prediction transfer matrix method
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