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直排式真空预压法加固高黏性超软吹填土室内模型试验研究 被引量:10
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作者 陈允进 夏玉斌 +2 位作者 刘健 刘永胜 王翠 《水运工程》 北大核心 2011年第10期125-131,共7页
大连某港区高黏性超软吹填土采用常规真空预压和堆载预压处理效果不佳,为寻求解决方案,采用直排式真空预压法进行了室内模型试验,通过不同排水体、不同排水间距的室内对比试验和综合分析,得出采用直排式真空预压法加固高黏性超软吹填土... 大连某港区高黏性超软吹填土采用常规真空预压和堆载预压处理效果不佳,为寻求解决方案,采用直排式真空预压法进行了室内模型试验,通过不同排水体、不同排水间距的室内对比试验和综合分析,得出采用直排式真空预压法加固高黏性超软吹填土时排水体间距起主导作用的结论。 展开更多
关键词 模型箱试验 吹填软土 直排式真空预压 固结 加固效果
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箱梁预应力管道内空洞探地雷达有限元正演模拟 被引量:3
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作者 舒志乐 赵柳 +2 位作者 黄柳婷 吴林龙 李亨 《科学技术与工程》 北大核心 2020年第7期2870-2875,共6页
箱梁预应力管道注浆不密实导致梁体预压应力瞬间失效,从而造成梁体突然断裂坍塌的危害。为了更准确地检测箱梁预应力管道内注浆不密实缺陷,建立箱梁预应力管道内空洞物理模型,分析在探地雷达二维及三维探测下钢筋、管道部分注浆及管道... 箱梁预应力管道注浆不密实导致梁体预压应力瞬间失效,从而造成梁体突然断裂坍塌的危害。为了更准确地检测箱梁预应力管道内注浆不密实缺陷,建立箱梁预应力管道内空洞物理模型,分析在探地雷达二维及三维探测下钢筋、管道部分注浆及管道充水条件下反射波信号的成像特点。基于改进Sarma吸收边界的有限元法计算公式,编制MATLAB程序对箱梁预应力管道内不同大小的空洞进行正演模拟。通过模型试验和数值模拟对比分析,结果表明:探地雷达三维探测能识别钢筋和空洞的分布,更全面地反映不同病害的形态特征;有限元模拟分析表明回波信号出现的时间、回波强度、双曲线的曲率及延长度均与空洞几何尺寸有关。空洞在模拟和试验探测的结果均为“弧形”,验证了数值模拟方法的可行性,为实际工作提供指导依据。 展开更多
关键词 模型试验 探地雷达 有限元法 改进Sarma吸收边界 正演模拟
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不同埋深砂土盾构隧道掘进开挖面前方土拱效应研究 被引量:13
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作者 孙潇昊 缪林昌 林海山 《岩土力学》 EI CAS CSCD 北大核心 2017年第10期2980-2988,共9页
盾构施工过程中,开挖面前方土拱效应与掌子面盾构机推力大小和埋深密切相关。通过室内模型试验,研究不同砂土密度和不同隧道埋深条件下,盾构开挖面前方土拱效应,分析了砂土颗粒位移变化模式和土拱发展的时变特征,并揭示了不同埋深下土... 盾构施工过程中,开挖面前方土拱效应与掌子面盾构机推力大小和埋深密切相关。通过室内模型试验,研究不同砂土密度和不同隧道埋深条件下,盾构开挖面前方土拱效应,分析了砂土颗粒位移变化模式和土拱发展的时变特征,并揭示了不同埋深下土拱的发展规律和对失稳破坏机制的影响;同时基于室内模型试验,采用颗粒流程序进行模拟,从细观角度进一步研究了土拱效应。结果表明:不同埋深条件下,土拱发展规律一致且与支护力大小,地表沉降密切相关;低密度时土体破坏模式呈漏斗状,高密度为条带状,且土拱范围随埋深比增大而增大;颗粒流模拟得到不同埋深条件下,颗粒接触力、孔隙率和平均土压力变化规律一致。最后得出室内试验和PFC^(2D)颗粒流模拟得到的土拱效应相似的结论。 展开更多
关键词 土拱效应 不同埋深 砂土 隧道掘进 模型箱试验 颗粒流
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对类似双排桩桩间土土体主动土压力计算的建议 被引量:1
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作者 杨永新 杨旭光 +2 位作者 李佳骏 王英浩 汪俊 《建筑技术》 2019年第3期305-308,共4页
在借鉴前人研究成果及查阅相关规范的基础上,通过自制的模型箱试验,研究不同宽度下类似双排桩桩间土土体的土压力分布,给出经典的朗肯土压力理论的适用范围及土体宽深比b/h在不同条件下主动土压力计算的参考公式。
关键词 主动土压力 模型箱试验 宽深比
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Research on Partial Coefficients for Design of Quarter-circular Caisson Breakwater 被引量:4
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作者 Luwen Qie Xiang Zhang +1 位作者 Xuelian Jiang Yinan Qin 《Journal of Marine Science and Application》 2013年第1期65-71,共7页
The quarter-circular caisson breakwater (QCB) is a new type of breakwater, and it can be applied in deepwater. The stability of QCB under wave force action can be enhanced, and the rubble mound engineering can be le... The quarter-circular caisson breakwater (QCB) is a new type of breakwater, and it can be applied in deepwater. The stability of QCB under wave force action can be enhanced, and the rubble mound engineering can be less than that of semi-circular breakwaters in deepwater. In order to study the wave force distribution acting on the QCB, to find wave force formula for this type of breakwater, firstly in this paper, the distribution characteristics of the horizontal force, the downward vertical force and the uplift force on the breakwater were gotten based on physical model wave flume experiments and on the analysis of the wave pressure experimental data. Based on a series of physical model tests acted by irregular waves, a kind of calculation method, which was modified by Goda formula, was proposed to carry out the wave force on the QCB. Secondly, the reliability method with correlated variables was adopted to analyze the QCB, considering the high correlation between wave forces or moments. Utilizing the observed wave data in engineering field, the reliability index and failure probability of QCB were obtained. Finally, a factor Q=0.9 is given to modify the zero pressure height above SWL of QCB, and wave force partial coefficient 1.34 to the design expressions of QCB for anti-sliding, as well as 1.67 for anti-overturning, were presented. 展开更多
关键词 quarter-circular caisson breakwater (QCB) wave force modified Goda formula reliability index partial coefficient
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Full-scale model tests and nonlinear analysis of prestressed concrete simply supported box girders
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作者 Fang Zhi Tang Shenghua He Xin 《Engineering Sciences》 EI 2014年第1期67-76,共10页
Full-scale model tests were carried out on a 30 m span prestressed concrete box girder and a 20 m span prestressed concrete hollow slab. Failure models were prestressed reinforcement tensile failure and crashing of ro... Full-scale model tests were carried out on a 30 m span prestressed concrete box girder and a 20 m span prestressed concrete hollow slab. Failure models were prestressed reinforcement tensile failure and crashing of roof concrete, respectively. The ductility indexes of the box girder and hollow slab were 1.99 and 1.23, respectively, according to the energy viewpoint. Based on the horizontal section hypothesis, the nonlinear computation procedure was established using the limited banding law, and it could carry out the entire performance analysis including the unloading, mainly focusing on the ways to achieve the unloading curves computation through stress-strain, moment-curvature and load-displacement curves. Through the procedure, parameters that influence on the bearing capacity, deformation performance and ductility of the structures were analyzed. Those parameters were quantity of prestressed reinforcement and tension coefficients of prestressed reinforcement. From the analysis, some useful conclusions can be obtained. 展开更多
关键词 prestressed concrete box girder full-scale model test nonlinear analysis bearing capacity DUCTILITY
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