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考虑水-桩-土相互作用的单桩式海上风机结构系统自振频率解析解 被引量:3
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作者 赵密 常逸夫 +1 位作者 王丕光 杜修力 《震灾防御技术》 CSCD 北大核心 2020年第4期659-669,共11页
海上风机结构系统频率是海上风机结构和基础设计考虑的关键因素之一,桩-土相互作用对海上风机结构系统频率影响显著。基于欧拉-伯努利梁理论和传递矩阵方法,考虑水-桩-土相互作用及塔筒变截面特性,建立单桩式海上风机结构系统横向振动... 海上风机结构系统频率是海上风机结构和基础设计考虑的关键因素之一,桩-土相互作用对海上风机结构系统频率影响显著。基于欧拉-伯努利梁理论和传递矩阵方法,考虑水-桩-土相互作用及塔筒变截面特性,建立单桩式海上风机结构系统横向振动自振频率特征方程;将桩-水相互作用等效为附加质量、桩-土相互作用等效为线性弹簧,变截面塔筒等效为多段均匀梁,利用MATLAB中fsolve函数求解固有频率。通过与有限元分析结果进行对比,验证本文方法精度与有效性,并将本文方法应用于实际工程中,研究桩基础埋深、上部质量、转动惯量和桩-水相互作用对单桩式海上风机结构系统自振频率的影响。 展开更多
关键词 海上风机 基础 自振频率 水-桩-土相互作用 解析解
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饱和软土地基中PHC管桩承载性状分析
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作者 刘镇 周翠英 黄炜 《建筑监督检测与造价》 2010年第9期19-21,26,共4页
针对饱和软土地基中高预应力管桩(PHC管桩)的承载性状问题,考虑桩-土-水相互作用,基于小孔扩张理论,分析了PHC管桩受力状态;结合剪切位移法与位移协调法,提出了桩-土-水相互作用下单桩极限承载力解析式,并推导得到桩周土应力状态求解公... 针对饱和软土地基中高预应力管桩(PHC管桩)的承载性状问题,考虑桩-土-水相互作用,基于小孔扩张理论,分析了PHC管桩受力状态;结合剪切位移法与位移协调法,提出了桩-土-水相互作用下单桩极限承载力解析式,并推导得到桩周土应力状态求解公式。将上述成果应用于某工程PHC管桩承载性状分析,并与规范法进行对比,验证了其合理可靠性,为饱和软基中PHC管桩稳定性分析及检测提供参考。 展开更多
关键词 饱和软地基 PHC管 承载性状 --相互作用
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Coupled pile soil interaction analysis in undrained condition
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作者 M.Y.Fattah F.A.Salman +1 位作者 Y.J.Al-Shakarchi A.M.Raheem 《Journal of Central South University》 SCIE EI CAS 2013年第5期1376-1383,共8页
The effective stress method is developed to predict the axial capacity of piles in clay. The effective stress state changes due to the resulting pore pressure change and therefore, the strength and stiffness of the so... The effective stress method is developed to predict the axial capacity of piles in clay. The effective stress state changes due to the resulting pore pressure change and therefore, the strength and stiffness of the soil will change. In this work, the finite element method is utilized as a tool for the analysis of pile-soil systems in undrained condition. The computer program CRISP was developed to suit the problem requirements. CRISP uses the finite element technique and allows predictions to be made of ground deformation using critical state theories. Eight-node isoparametric element was added to the program in addition to the slip element. A pile loading problem was solved in which the pile-soil system is analyzed in undrained condition. The pile is modelled as elastic-plastic material, while the soil is assumed to follow the modified Cam clay model. During undrained loading condition, the settlement values increase by 22% when slip elements are used. The surface settlement increases by about three times when the load is doubled and the surface settlement at all points increases when using slip elements due to the mode of motion which allows smooth movement of the adjacent soil with respect to the pile. The vertical displacement increases as the distance decreases from the pile and negligible values are obtained beyond 10D (where D is the pile diameter) from the center of the pile and these values are slightly increased when slip elements are used. The vertical effective stress along a section at a distance D from the pile center is approximately the same for all load increments and lower values of effective vertical stress can be obtained when slip elements are used. 展开更多
关键词 PILE finite element coupled analysis undrained condition
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