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在吹填土区域已有集群桩加固条件下的钻孔灌注桩施工技术 被引量:1
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作者 包晓达 罗玲丽 +1 位作者 叶国平 曹宇牧 《建筑施工》 2008年第11期942-944,共3页
某厂房在软弱地基吹填土场地上施工密集的PHC管桩(地坪加固)和钻孔灌注桩(独立承台),为减小群桩施工引起的挤土效应和超孔隙水压力对后续桩的影响,除采用应力释放孔外,通过试桩,测得不同成桩工艺及钻孔桩与PHC桩施工距离,时间间隔的桩... 某厂房在软弱地基吹填土场地上施工密集的PHC管桩(地坪加固)和钻孔灌注桩(独立承台),为减小群桩施工引起的挤土效应和超孔隙水压力对后续桩的影响,除采用应力释放孔外,通过试桩,测得不同成桩工艺及钻孔桩与PHC桩施工距离,时间间隔的桩质量检测数据,确定各项施工参数。得出地坪桩和钻孔桩施工距离不小于50m,间隔不小于10d,成孔须膨润土泥浆护壁,成孔后6h内下放钢筋笼和浇筑混凝土。满足了工期紧的要求,确保了钻孔灌注桩的质量。 展开更多
关键词 施工参数 吹填土 密集群桩 挤土效应 超静压水 应力释放孔 钻孔桩试成孔
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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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