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孔隙水对土体隧洞施工的影响分析
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作者 张磊 《山西水利科技》 2018年第4期15-16,20,共3页
隧洞工程的施工使得土体中孔隙水的边界条件、原有状态等发生变化,渗流孔隙水压力、超(静)孔隙水压力、渗透水压力等的产生将土体隧洞的施工环境变得更为复杂,施工难度加大。常用的水泥灌浆措施可能进一步加大孔隙水压力,并因为空间的... 隧洞工程的施工使得土体中孔隙水的边界条件、原有状态等发生变化,渗流孔隙水压力、超(静)孔隙水压力、渗透水压力等的产生将土体隧洞的施工环境变得更为复杂,施工难度加大。常用的水泥灌浆措施可能进一步加大孔隙水压力,并因为空间的占用而直接引起土体的变形,对土体开挖及已有支护产生不利影响,因此,在选用灌浆技术加固土洞围岩时,应慎重考虑其可灌性以及对原有土体结构的破坏。 展开更多
关键词 土洞施工 孔隙水压 ()孔隙水压 渗透水压 土洞灌浆
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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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