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Effect of sediment on vertical dynamic impedance of rock-socketed pile with large diameter 被引量:6
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作者 俞缙 蔡燕燕 吴文兵 《Journal of Central South University》 SCIE EI CAS 2013年第10期2856-2862,共7页
Based on the fictitious soil pile model, the effect of sediment on the vertical dynamic impedance of rock-socketed pile with large diameter was theoretically studied by means of Laplace transform technique and impedan... Based on the fictitious soil pile model, the effect of sediment on the vertical dynamic impedance of rock-socketed pile with large diameter was theoretically studied by means of Laplace transform technique and impedance function transfer method. Firstly, the sediment under rock-socketed pile was assumed to be fictitious soil pile with the same sectional area. The Rayleigh-Love rode model was used to simulate the rock-socketed pile and the fictitious soil pile with the consideration of the lateral inertial effect of large-diameter pile. The layered surrounding soils and bedrock were modeled by the plane strain model. Then, by virtue of the initial conditions and boundary conditions of the soil pile system, the analytical solution of the vertical dynamic impedance at the head of rock-socketed pile was derived for the arbitrary excitation acting on the pile head. Lastly, based on the presented analytical solution, the effect of sediment properties, bedrock property and lateral inertial effect on the vertical dynamic impedance at rock-socketed pile head were investigated in detail. It is shown that the sediment properties have significant effect on the vertical dynamic impedance at the rock-socketed pile head. The ability of soil-pile system to resist dynamic vertical deformation is weakened with the increase of sediment thickness, but amplified with the increase of shear wave velocity of sediment. The ability of soil pile system to resist dynamic vertical deformation is amplified with the bedrock property improving, but the ability of soil-pile system to resist vertical vibration is weakened with the improvement of bedrock property. 展开更多
关键词 rock-socketed pile SEDIMENT dynamic impedance fictitious soil pile MODEL large diameter Rayleigh-Love rode MODEL
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RSP组合桩生态护岸在河道整治工程中的应用 被引量:1
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作者 樊佳男 包璐华 +3 位作者 孙峰 王强 马天鸣 秦乃卿 《江苏水利》 2023年第6期5-10,共6页
RSP组合桩生态护岸属于生态护岸技术,以新孟河延伸拓浚工程武进区太滆运河工程为例,论述了RSP组合桩生态护岸特点、护岸材料及断面设计、施工工艺、质量控制及工程效益等内容,工程实践效果表明,采用RSP组合桩生态护岸技术,不仅降低了消... RSP组合桩生态护岸属于生态护岸技术,以新孟河延伸拓浚工程武进区太滆运河工程为例,论述了RSP组合桩生态护岸特点、护岸材料及断面设计、施工工艺、质量控制及工程效益等内容,工程实践效果表明,采用RSP组合桩生态护岸技术,不仅降低了消耗、节约了资源,而且经济效益和社会效益明显。 展开更多
关键词 生态护岸 rsp组合桩 生态护岸技术 河道整治
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海上风电机组嵌岩桩与砂土桩承载力对比分析 被引量:1
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作者 张浦阳 熊粒超 +2 位作者 乐丛欢 董宏季 丁红岩 《Journal of Southeast University(English Edition)》 EI 2023年第4期384-392,共9页
通过室内缩尺模型试验,比较和分析了嵌岩桩(RSP)和砂土桩在水平荷载下的承载能力.试验使用磷石膏来模拟底部岩石,采用夯实法制作上层砂土.试验前进行了颗粒分析试验以确认土壤的均匀程度.采用圆锥负荷试验(CPT)评估土壤,确认所有试验分... 通过室内缩尺模型试验,比较和分析了嵌岩桩(RSP)和砂土桩在水平荷载下的承载能力.试验使用磷石膏来模拟底部岩石,采用夯实法制作上层砂土.试验前进行了颗粒分析试验以确认土壤的均匀程度.采用圆锥负荷试验(CPT)评估土壤,确认所有试验分组的土壤条件相似,即土体性质引起的误差可以忽略不计.通过有限元模拟对嵌岩桩的承载能力进行了验证,数值模拟结果与试验结果吻合良好.研究表明:嵌岩桩和砂土桩的弯矩分布一致,桩身最大弯矩的位置在2~3倍桩径深度处,但嵌岩桩的最大弯矩位置比砂土桩深约1倍桩径(5 cm);当上层覆土较浅时,嵌岩桩的承载效果更显著,承载力相对于砂土桩增加约41%;由于岩石的挤压效应,嵌岩桩的横截面变形明显小于砂土桩. 展开更多
关键词 海上风电 嵌岩桩 室内试验 承载力
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