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变荷载作用下未打穿竖井地基固结分析
引用本文:刘加才,施建勇,赵维炳,Ali H Mahfouz. 变荷载作用下未打穿竖井地基固结分析[J]. 岩石力学与工程学报, 2005, 24(6): 1041-1046
作者姓名:刘加才  施建勇  赵维炳  Ali H Mahfouz
作者单位:1. 河海大学,岩土工程研究所,江苏,南京,210098
2. 南京水利科学研究院,岩土工程研究所,江苏,南京,210024
摘    要:利用已有瞬时荷载作用下未打穿竖井地基固结模型,根据线性偏微分方程的叠加原理,将变荷载作用问题分解为瞬时荷载作用问题,给出了变荷载作用下未打穿竖井地基固结解答。利用该求解方法,对一未打穿竖井地基在单级线性加载和多级加载情况下的孔压消散进行了分析。分析表明,受加载历时影响,竖井打设区平均固结度减小幅度大于下卧层,但下卧层受影响时间要长得多。另外,在粗略设计中,可以将多级加载简化为单级线性加载,这样对后期平均固结度的影响不大。

关 键 词:土力学  变荷载  竖井地基  固结  瞬时加载
文章编号:1000-6915(2005)06-1041-06
收稿时间:2003-10-14
修稿时间:2003-12-01

CONSOLIDATION OF GROUND WITH PARTIALLY PENETRATED VERTICAL DRAINS UNDER TIME-DEPENDENT LOADING
LIU Jia-cai,SHI Jian-yong,ZHAO Wei-bing,Ali H Mahfouz. CONSOLIDATION OF GROUND WITH PARTIALLY PENETRATED VERTICAL DRAINS UNDER TIME-DEPENDENT LOADING[J]. Chinese Journal of Rock Mechanics and Engineering, 2005, 24(6): 1041-1046
Authors:LIU Jia-cai  SHI Jian-yong  ZHAO Wei-bing  Ali H Mahfouz
Affiliation:LIU Jia-cai1,SHI Jian-yong1,ZHAO Wei-bing2,ALI H Mahfouz1
Abstract:Existing consolidation model of ground with partially penetrated vertical drains under instantaneous loading is extended for time-dependent loading. Based on the principle of superposition in linear partial differential equations,the solutions for the consolidation of ground with partially penetrated vertical drains under time-dependent loading are developed by decomposing time-dependent loading into instantaneous loading. Using the solution method mentioned above,pore pressure dissipation of a soft ground with partially penetrated vertical drains under single ramp loading and multi-ramp loading is analyzed. It is shown that,under the effect of loading time,the scope of average consolidation degree of the section with vertical drain is greater than that of the section without it,but the latter lasts much longer. It also shows that multi-ramp loading can be replaced by a single ramp loading in preliminary design,which has less effect on average consolidation degree when time is comparatively long.
Keywords:soil mechanics  time-dependent loading  ground withvertical drains  consolidation  instantaneous loading
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