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粉细砂中敞口PHC管桩群桩锤击施工效应 被引量:13
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作者 雷国辉 艾英钵 +1 位作者 何振兴 施建勇 《岩土工程学报》 EI CAS CSCD 北大核心 2012年第2期294-302,共9页
管桩的施工效应对其可打性和承载性能有着重要的影响,然而,管桩群桩施工效应的工程实录却并不多见。为此,结合某电厂粉细砂地基中敞口预应力高强混凝土(PHC)管桩群桩基础工程,通过土体水平位移、孔隙水压力和土塞长度的现场测试,开展了... 管桩的施工效应对其可打性和承载性能有着重要的影响,然而,管桩群桩施工效应的工程实录却并不多见。为此,结合某电厂粉细砂地基中敞口预应力高强混凝土(PHC)管桩群桩基础工程,通过土体水平位移、孔隙水压力和土塞长度的现场测试,开展了锤击施工挤土效应和土塞效应研究。考虑了群桩施工引起土体水平位移的不定向性,采用由摆式测斜仪工作原理建立的数据处理方法,分析了土体合成水平位移和运动方位角的变化规律。同时,考虑了锤击过程中孔隙水压力动态变化的实时性,采用采样时间间隔为28 s的自动化监测系统,对全过程孔隙水压力的变化进行了测试和分析。结果表明:在松散逐渐过渡到密实的粉细砂地基中,管桩的挤土效应和土塞的闭塞效应随入土深度的增加逐渐减弱;管桩群桩的挤土效应受到前期管桩施工引起土体的挤密作用而减弱,群桩内部的挤土效应比群桩外部的挤土效应更显著;管桩施工只引起桩头贯入位置附近土体孔压的短暂上升,而群桩的施工并不引起孔压的积聚。 展开更多
关键词 群桩 挤土效应 土塞效应 水平位移 孔隙水压力
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盾构任意衬砌变形边界条件下复变函数弹性解 被引量:11
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作者 童磊 谢康和 +1 位作者 卢萌盟 王坤 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2010年第9期1825-1830,共6页
在Verruijt基本解法的基础上,假定Sagaseta通用变形模式为隧洞周边边界条件,推导了任意衬砌变形边界条件下复变函数弹性解答.利用复变函数解决孔口问题的基本方法,采用Mobius共形映射变换,将带孔口半无限空间映射为复平面下圆环域,该域... 在Verruijt基本解法的基础上,假定Sagaseta通用变形模式为隧洞周边边界条件,推导了任意衬砌变形边界条件下复变函数弹性解答.利用复变函数解决孔口问题的基本方法,采用Mobius共形映射变换,将带孔口半无限空间映射为复平面下圆环域,该域下解析函数以Laurent级数展开,根据Muskhelishvili解法和给定边界条件,求得应力场和位移场.在此基础上分析了各分量对竖向位移和水平位移的影响,结果表明:衬砌椭圆化变形对位移场的影响远大于衬砌竖向沉降对位移场的影响. 展开更多
关键词 复变函数 沉降 水平位移 任意衬砌变形 弹性解
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Effects of liquefaction-induced large lateral ground deformation on pile foundations 被引量:5
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作者 王艳丽 程展林 王勇 《Journal of Central South University》 SCIE EI CAS 2013年第9期2510-2518,共9页
The pile-soil system interaction computational model in liquefaction-induced lateral spreading ground was established by the finite difference numerical method.Considering an elastic-plastic subgrade reaction method,n... The pile-soil system interaction computational model in liquefaction-induced lateral spreading ground was established by the finite difference numerical method.Considering an elastic-plastic subgrade reaction method,numerical methods involving finite difference approach of pile in liquefaction-induced lateral spreading ground were derived and implemented into a finite difference program.Based on the monotonic loading tests on saturated sand after liquefaction,the liquefaction lateral deformation of the site where group piles are located was predicted.The effects of lateral ground deformation after liquefaction on a group of pile foundations were studied using the fmite difference program mentioned above,and the failure mechanism of group piles in liquefaction-induced lateral spreading ground was obtained.The applicability of the program was preliminarily verified.The results show that the bending moments at the interfaces between liquefied and non-liquefied soil layers are larger than those at the pile's top when the pile's top is embedded.The value of the additional static bending moment is larger than the peak dynamic bending moment during the earthquake,so in the pile foundation design,more than the superstructure's dynamics should be considered and the effect of lateral ground deformation on pile foundations cannot be neglected. 展开更多
关键词 liquefaction-induced lateral spreading ground pile foundation large post-liquefaction deformation finite difference method
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Simplifi ed dynamic analysis to evaluate liquefaction-inducedlateral deformation of earth slopes: a computational fluid dynamics approach 被引量:2
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作者 Yaser Jafarian Ali Ghorbani Omid Ahmadi 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第3期555-568,共14页
Lateral deformation of liquefiable soil is a cause of much damage during earthquakes, reportedly more than other forms of liquefaction-induced ground failures. Researchers have presented studies in which the liquefied... Lateral deformation of liquefiable soil is a cause of much damage during earthquakes, reportedly more than other forms of liquefaction-induced ground failures. Researchers have presented studies in which the liquefied soil is considered as viscous fluid. In this manner, the liquefied soil behaves as non-Newtonian fluid, whose viscosity decreases as the shear strain rate increases. The current study incorporates computational fluid dynamics to propose a simplified dynamic analysis for the liquefaction-induced lateral deformation of earth slopes. The numerical procedure involves a quasi-linear elastic model for small to moderate strains and a Bingham fluid model for large strain states during liquefaction. An iterative procedure is considered to estimate the strain-compatible shear stiffness of soil. The post-liquefaction residual strength of soil is considered as the initial Bingham viscosity. Performance of the numerical procedure is examined by using the results of centrifuge model and shaking table tests together with some field observations of lateral ground deformation. The results demonstrate that the proposed procedure predicts the time history of lateral ground deformation with a reasonable degree of precision. 展开更多
关键词 LIQUEFACTION lateral ground deformation simplified dynamic analysis computational fluid dynamics
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红土地区地质灾害成因分析 被引量:15
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作者 符必昌 黄英 方丽萍 《中国地质灾害与防治学报》 CSCD 1998年第4期13-18,共6页
引起红土地区地质灾害的根本原因是红土化作用。本文在对形成红土至关重要的红土化作用最新研究成果的基础上,对红土分布地区日益严重的水土流失、建筑地基开裂变形等地质灾害的形成原因进行全面。
关键词 红土化作用 地质灾害 水土流失 地基变形
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