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土钉式桩间护水平加固技术在复杂深基坑设计中的研究 被引量:1
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作者 刘兴旺 李虹 张治华 《岩土锚固工程》 2008年第3期7-11,共5页
土钉式桩间护水平加固技术作为新兴的水平加固技术在工程中应用较少,适用于城区内周边条件复杂的支护结构设计。其对土体的加固使土体的力学参数得到大幅提高,有利于水平支护结构的安全和稳定。但其计算理论仍有待于提高,本丈主要介... 土钉式桩间护水平加固技术作为新兴的水平加固技术在工程中应用较少,适用于城区内周边条件复杂的支护结构设计。其对土体的加固使土体的力学参数得到大幅提高,有利于水平支护结构的安全和稳定。但其计算理论仍有待于提高,本丈主要介绍了土钉式桩间护水平加固技术与桩锚支护结合的分段计算的设计方法和在实际工程中的应用。 展开更多
关键词 钉式桩间护水平加固技术 土条荷载 悬臂式护坡桩 基坑位移观测
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Analysis of granular assembly deformation using discrete element method
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作者 赵学亮 《Journal of Southeast University(English Edition)》 EI CAS 2010年第4期608-613,共6页
The discrete element method is used to simulate specimens under three different loading conditions(conventional triaxial compression,plane strain,and direct shear)with different initial conditions to explore the und... The discrete element method is used to simulate specimens under three different loading conditions(conventional triaxial compression,plane strain,and direct shear)with different initial conditions to explore the underlying mechanics of the specimen deformation from a microscale perspective.Deformations of specimens with different initial void ratios at different confining stresses under different loading conditions are studied.Results show that the discrete element models successfully capture the specimen deformation and the strain localization.Particle behaviors including particle rotation and displacement and the mesoscale void ratio distributions are used to explain the strain localization and specimen deformation.It is found that the loading condition is one of the most important factors controlling the specimen deformation mode.Microscale behavior of the granular soil is the driving mechanics of the macroscale deformation of the granular assembly. 展开更多
关键词 granular soil loading condition deformation mode numerical simulation strain localization
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