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地震作用下可液化土层水平受荷桩基力学响应分析 被引量:5
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作者 高新文 《地震工程与工程振动》 CSCD 北大核心 2016年第3期102-110,共9页
地震作用下可液化场地桩土相互作用研究是解决可液化场地桩基抗震问题的有效途径。本文基于p-y曲线方法,通过Cu因子法建立地震过程中可液化地层的典型p-y曲线模型。结合有限差分原理,建立了水平受荷单桩在地震作用下的水平附加响应计算... 地震作用下可液化场地桩土相互作用研究是解决可液化场地桩基抗震问题的有效途径。本文基于p-y曲线方法,通过Cu因子法建立地震过程中可液化地层的典型p-y曲线模型。结合有限差分原理,建立了水平受荷单桩在地震作用下的水平附加响应计算方法,通过实例验证了该计算方法的合理性。最后控制变量,利用该方法进行了一系列的参数分析。研究结果表明:可液化地层厚度、桩基受荷水平和液化程度对于地震液化引起的受荷桩基水平附加响应的影响都较为显著;桩身附加挠度和附加弯矩均随着受荷载水平或液化程度的增大而呈非线性形式增大,且受荷水平或液化程度越高,增长速率越大。 展开更多
关键词 地震 可液化地层 桩土互相作用 P-Y曲线 附加响应
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论现行“桥规”中的桩基理论误区和如何设计超长大直径桩基问题
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作者 殷万寿 《桥梁建设》 EI CSCD 北大核心 2010年第4期11-22,56,共13页
结合几座大桥钻孔桩基础承载力出现不足的实例,对现行"桥规"中有关桩基承载力计算方法进行剖析,揭示现有设计与施工技术方面的错误观点与理念,指出现行"桥规"中单桩承载力计算基本理论存在不足,建议修改现行"... 结合几座大桥钻孔桩基础承载力出现不足的实例,对现行"桥规"中有关桩基承载力计算方法进行剖析,揭示现有设计与施工技术方面的错误观点与理念,指出现行"桥规"中单桩承载力计算基本理论存在不足,建议修改现行"桥规"。在对桩-土相互作用和桩在土中的荷载传递原理进行详细分析的基础上,提出要重视临界深度与有效桩长的概念、摩阻力与端阻力相互影响、地基土的抗剪强度并不是桩的承载力、桩上表皮摩阻力沿桩长分布不是矩形分布等观点;提出可用于计算超长大直径桩单桩承载力的"混合荷载传递法"和"公式直接计算法",供工程实践中试用。 展开更多
关键词 桥梁基础 钻孔灌注 超长 桩土互相作用 荷载传递 摩阻力 端阻力 沉降量 设计
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3D finite element analysis on pile-soil interaction of passive pile group 被引量:6
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作者 赵明华 刘敦平 +1 位作者 张玲 蒋冲 《Journal of Central South University of Technology》 EI 2008年第1期75-80,共6页
The interaction between pile and soft soil of the passive pile group subjected to soil movement was analyzed with three-dimensional finite element model by using ANSYS software. The soil was assumed to be elastic-plas... The interaction between pile and soft soil of the passive pile group subjected to soil movement was analyzed with three-dimensional finite element model by using ANSYS software. The soil was assumed to be elastic-plastic complying with the Drucker-Prager yield criterion in the analysis. The large displacement of soil was considered and contact elements were used to evaluate the interaction between pile and soil. The influences of soil depth of layer and number of piles on the lateral pressure of the pile were investigated, and the lateral pressure distributions on the (2×1) pile group and on the (2×2) pile group were compared. The results show that the adjacent surcharge may result in significant lateral movement of the soft soil and considerable pressure on the pile. The pressure acting on the row near the surcharge is higher than that on the other row, due to the "barrier" and arching effects in pile groups. The passive load and its distribution should be taken into account in the design of the passive piles. 展开更多
关键词 pile-soil interaction passive pile group soft soil lateral pressure DEFORMATION 3D finite element analysis
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A simplified approach for negative skin friction calculation of special-shaped pile considering pile-soil interaction under surcharge 被引量:4
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作者 孔纲强 周航 +2 位作者 刘汉龙 丁选明 LIANG Robert 《Journal of Central South University》 SCIE EI CAS 2014年第9期3648-3655,共8页
A simplified approach was proposed to analyze the negative skin friction calculation of special-shaped pile considering pile-soil interaction under surcharge. Based on the concentric cylinder shearing theory, consider... A simplified approach was proposed to analyze the negative skin friction calculation of special-shaped pile considering pile-soil interaction under surcharge. Based on the concentric cylinder shearing theory, considering the changes of pile shape(such as, taper angle and diameters of pile base, etc.), the load-transfer of special-shaped pile was built. The accuracy of the developed simplified approach was verified by numerical simulation model with the same condition. Then, the influence factors, such as, taper angles, the diameter of pile base, surcharge, and pile-soil interface parameters were analyzed and discussed. The results show that the developed simplified approach can calculate NSF of special-shaped pile under surcharge effectively. A limited parametric study indicates that in many practical situations special-shaped piles(such as belled wedge pile shown in this work) offer a design option that is more economical than traditional uniform cross-section piles. 展开更多
关键词 negative skin friction special-shaped pile pile-soil interaction dragload downdrag SURCHARGE
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Coupled pile soil interaction analysis in undrained condition 被引量:1
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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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Natural frequency of tapered high pier considering pile-soil interaction
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作者 赵明华 杨晶 杨明辉 《Journal of Central South University》 SCIE EI CAS 2010年第3期635-641,共7页
In seismic design of tapered high pier, the analysis of natural vibration frequency is of great importance. According to the engineering features of tapered high pier in mountainous area, a vibration calculation model... In seismic design of tapered high pier, the analysis of natural vibration frequency is of great importance. According to the engineering features of tapered high pier in mountainous area, a vibration calculation model was set up considering the tapered pier characteristics and pile-soil interaction. Based on Southwell frequency composition theory, it consists of elastic deformation of bridge pier and the rigid deformation of group piles, which are respectively solved by the finite-element method and energy method, and then the natural frequency is derived. The comparison between the measured and calculated results shows that the calculation errors with and without considering pile-soil interaction are 4.9% and 14.7%, respectively. Additionally, the main parameters (pier height, section variation coefficient and lateral foundation horizontal proportional coefficient) affecting natural frequency were investigated. The result shows that natural frequency ascends with the increase of the lateral foundation horizontal proportional coefficient; and it is quite necessary to consider the pile-soil interaction in natural frequency calculation of tapered high pier. 展开更多
关键词 tapered pier natural frequency energy method finite-element method Southwell frequency composition theory
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