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Longitudinal vibration of pile in layered soil based on Rayleigh-Love rod theory and fictitious soil-pile model 被引量:6
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作者 吕述晖 王奎华 +1 位作者 吴文兵 C.J.LEO 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第5期1909-1918,共10页
The dynamic response of pile in layered soil is theoretically investigated when considering the transverse inertia effect.Firstly, the fictitious soil-pile model is employed to simulate the dynamic interaction between... The dynamic response of pile in layered soil is theoretically investigated when considering the transverse inertia effect.Firstly, the fictitious soil-pile model is employed to simulate the dynamic interaction between the pile and the soil layers beneath pile toe. The dynamic interactions of adjacent soil layers along the vertical direction are simplified as distributed Voigt models.Meanwhile, the pile and fictitious soil-pile are assumed to be viscoelastic Rayleigh-Love rods, and both the radial and vertical displacement continuity conditions at the soil-pile interface are taken into consideration. On this basis, the analytical solution for dynamic response at the pile head is derived in the frequency domain and the corresponding quasi-analytical solution in the time domain is then obtained by means of the convolution theorem. Following this, the accuracy and parameter value of the hypothetical boundaries for soil-layer interfaces are discussed. Comparisons with published solution and measured data are carried out to verify the rationality of the present solution. Parametric analyses are further conducted by using the present solution to investigate the relationships between the transverse inertia effects and soil-pile parameters. 展开更多
关键词 viscoelastic pile layered soil longitudinal vibration fictitious soil-pile transverse inertia effect
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Shake table test of soil-pile groups-bridge structure interaction in liquefiable ground 被引量:15
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作者 Tang Liang Ling Xianzhang +2 位作者 Xu Pengju Gao Xia Wang Dongsheng 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2010年第1期39-50,共12页
This paper describes a shake table test study on the seismic response of low-cap pile groups and a bridge structure in liquefiable ground. The soil profile, contained in a large-scale laminar shear box, consisted of a... This paper describes a shake table test study on the seismic response of low-cap pile groups and a bridge structure in liquefiable ground. The soil profile, contained in a large-scale laminar shear box, consisted of a horizontally saturated sand layer overlaid with a silty clay layer, with the simulated low-cap pile groups embedded. The container was excited in three E1 Centro earthquake events of different levels. Test results indicate that excessive pore pressure (EPP) during slight shaking only slightly accumulated, and the accumulation mainly occurred during strong shaking. The EPP was gradually enhanced as the amplitude and duration of the input acceleration increased. The acceleration response of the sand was remarkably influenced by soil liquefaction. As soil liquefaction occurred, the peak sand displacement gradually lagged behind the input acceleration; meanwhile, the sand displacement exhibited an increasing effect on the bending moment of the pile, and acceleration responses of the pile and the sand layer gradually changed from decreasing to increasing in the vertical direction from the bottom to the top. A jump variation of the bending moment on the pile was observed near the soil interface in all three input earthquake events. It is thought that the shake table tests could provide the groundwork for further seismic performance studies of low-cap pile groups used in bridges located on liquefiable groun. 展开更多
关键词 liquefiable ground seismic soil-pile-structure interaction pile groups of bridge shake table test
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Study of vibrating foundations considering soil-pile-structure interaction for practical applications 被引量:4
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作者 Han Yingcai 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2008年第3期321-327,共7页
An investigation of soil-pile-structure interaction is carried out, based on a large reciprocating compressor installed on an elevated concrete foundation (table top structure). A practical method is described for t... An investigation of soil-pile-structure interaction is carried out, based on a large reciprocating compressor installed on an elevated concrete foundation (table top structure). A practical method is described for the dynamic analysis, and compared with a 3D finite element (FE) model. Two commercial software packages are used for dynamic analysis considering the soilpile-structure interaction (SPSI). Stiffness and damping of the pile foundation are generated from a computer program, and then input into the FE model. To examine the SPSI thoroughly, three cases for the soil, piles and superstructure are considered and compared. In the first case, the interaction is fully taken into account, that is, both the superstructure and soil-pile system are flexible. In the second case, the superstructure is flexible but fixed to a rigid base, with no deformation in the base (no SSI). In the third case, the dynamic soil-pile interaction is taken into account, but the table top structure is assumed to be rigid. From the comparison beteen the results of these three cases some conclusions are made, which could be helpful for engineering practice. 展开更多
关键词 soil-pile-structure interaction soil dynamics structural dynamics vibrating foundation
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Seismic response of tall building considering soil-pile-structure interaction 被引量:5
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作者 Han Yingcai Fluor Canada Ltd.,Calgary,AB,Canada Ph.D.,Principal Engineering Specialist 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2002年第1期57-64,共8页
The seismic behavior of tall buildings can he greatly affected by non-linear soil-pile interaction during strong earthquakes.In this study a 20-storey building is examined as a typical structure supported on a pile fo... The seismic behavior of tall buildings can he greatly affected by non-linear soil-pile interaction during strong earthquakes.In this study a 20-storey building is examined as a typical structure supported on a pile foundation for different conditions:(1) rigid base,i.e.no deformation in the foundation:(2) linear soil-pile system;and (3) nonlinear soil-pile system. The effects of pile foundation displacements on the behavior of tall building are investigated,and compared with the behavior of buildings supported on shallow foundation.With a model of non-reflective boundary between the near field and far field, Novak's method of soil-pile interaction is improved.The computation method for vibration of pile foundations and DYNAN computer program are introduced comprehensively.A series of dynamic experiments have been done on full-scale piles, including single pile and group,linear vibration and nonlinear vibration,to verify the validity of boundary zone model. 展开更多
关键词 dynamic soil-pile-structure interaction soil dynamics structural dynamics nonlinear vibration seismic response of tall building
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Study on soil-pile-structure-TMD interaction system by shaking table model test 被引量:3
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作者 楼梦麟 王文剑 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2004年第1期127-137,共11页
The success of the tuned mass damper (TMD) in reducing wind-induced structural vibrations has been well established. However, from most of the recent numerical studies, it appears that for a structure situated on very... The success of the tuned mass damper (TMD) in reducing wind-induced structural vibrations has been well established. However, from most of the recent numerical studies, it appears that for a structure situated on very soft soil, soil-structure interaction (SSI) could render a damper on the structure totally ineffective. In order to experimentally verify the SSI effect on the seismic performance of TMD, a series of shaking table model tests have been conducted and the results are presented in this paper. It has been shown that the TMD is not as effective in controlling the seismic responses of structures built on soft soil sites due to the SSI effect. Some test results also show that a TMD device might have a negative impact if the SSI effect is neglected and the structure is built on a soft soil site. For structures constructed on a soil foundation, this research verifies that the SSI effect must be carefully understood before a TMD control system is designed to determine if the control is necessary and if the SSI effect must be considered when choosing the optimal parameters of the TMD device. 展开更多
关键词 soil-pile-structure interaction TMD’s performance structural control shaking table model test
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A new approach for time effect analysis of settlement for single pile based on virtual soil-pile model 被引量:9
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作者 吴文兵 王奎华 +1 位作者 张智卿 CHIN Jian Leo 《Journal of Central South University》 SCIE EI CAS 2012年第9期2656-2662,共7页
A new approach is proposed to analyze the settlement behavior for single pile embedded in layered soils.Firstly,soil layers surrounding pile shaft are simulated by using distributed Voigt model,and finite soil layers ... A new approach is proposed to analyze the settlement behavior for single pile embedded in layered soils.Firstly,soil layers surrounding pile shaft are simulated by using distributed Voigt model,and finite soil layers under the pile end are assumed to be virtual soil-pile whose cross-section area is the same as that of the pile shaft.Then,by means of Laplace transform and impedance function transfer method to solve the static equilibrium equation of pile,the analytical solution of the displacement impedance function at the pile head is derived.Furthermore,the analytical solution of the settlement at the head of single pile is theoretically derived by virtue of convolution theorem.Based on these solutions,the influences of parameters of soil-pile system on the settlement behavior for single pile are analyzed.Also,comparison of the load-settlement response for two well-instrumented field tests in multilayered soils is given to demonstrate the effectiveness and accuracy of the proposed approach.It can be noted that the presented solution can be used to calculate the settlement of single pile for the preliminary design of pile foundation. 展开更多
关键词 单桩沉降 桩基础 时间效应 虚拟 土模型 静力平衡方程 拉普拉斯变换 沉降特性
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Numerical simulations of shake-table experiment for dynamic soil-pile-structure interaction in liquefi able soils 被引量:15
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作者 Tang Liang Baydaa Hussain Maula +1 位作者 Ling Xianzhang Su Lei 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第1期171-180,共10页
A shake-table experiment on pile foundations in liquefi able soils composed of liquefi able sand and overlying soft clay is studied. A three-dimensional(3D) effective stress fi nite element(FE) analysis is employed to... A shake-table experiment on pile foundations in liquefi able soils composed of liquefi able sand and overlying soft clay is studied. A three-dimensional(3D) effective stress fi nite element(FE) analysis is employed to simulate the experiment. A recently developed multi-surface elasto-plastic constitutive model and a fully coupled dynamic inelastic FE formulation(u-p) are used to model the liquefaction behavior of the sand. The soil domains are discretized using a solid-fl uid fully coupled(u-p) 20-8 noded brick element. The pile is simulated using beam-column elements. Upon careful calibration, very good agreement is obtained between the computed and the measured dynamic behavior of the ground and the pile. A parametric analysis is also conducted on the model to investigate the effect of pile-pinning, pile diameter, pile stiffness, ground inclination angle, superstructure mass and pile head restraints on the ground improvement. It is found that the pile foundation has a noticeable pinning effect that reduces the lateral soil displacement. It is observed that a larger pile diameter and fi xed pile head restraints contribute to decreasing the lateral pile deformation; however, a higher ground inclination angle tends to increase the lateral pile head displacements and pile stiffness, and superstructure mass seems to effectively infl uence the lateral pile displacements. 展开更多
关键词 LIQUEFACTION pile pinning soil improvement pile deformation EARTHQUAKE nonlinear fi nite element method shake-table experiment
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Influence of dynamic soil-pile raft-structure interaction:an experimental approach 被引量:4
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作者 Rajib Saha Sumanta Haldar Sekhar Chandra Dutta 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2015年第4期625-645,共21页
Traditionally seismic design of structures supported on piled raft foundation is performed by considering fixed base conditions, while the pile head is also considered to be fixed for the design of the pile foundation... Traditionally seismic design of structures supported on piled raft foundation is performed by considering fixed base conditions, while the pile head is also considered to be fixed for the design of the pile foundation. Major drawback of this assumption is that it cannot capture soil-foundation-structure interaction due to flexibility of soil or the inertial interaction involving heavy foundation masses. Previous studies on this subject addressed mainly the intricacy in modelling of dynamic soil structure interaction (DSSI) but not the implication of such interaction on the distribution of forces at various elements of the pile foundation and supported structure. A recent numerical study by the authors showed significant change in response at different elements of the piled raft supported structure when DSSI effects are considered. The present study is a limited attempt in this direction, and it examines such observations through shake table tests. The effect of DSSI is examined by comparing dynamic responses from fixed base scaled down model structures and the overall systems. This study indicates the possibility of significant underestimation in design forces for both the column and pile if designed under fixed base assumption. Such underestimation in the design forces may have serious implication in the design of a foundation or structural element. 展开更多
关键词 soil-foundation-structure interaction piled raft foundation base shear pile head shear model test
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玛多7.4级地震野马滩大桥桥台纵桥向破坏机理分析
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作者 周成 叶爱君 +2 位作者 王晓伟 庞于涛 包绍伦 《土木工程学报》 EI CSCD 北大核心 2024年第5期53-64,共12页
针对2021年青海玛多7.4级地震中野马滩大桥的桥台震害,开展基于Pushover分析的桥台纵桥向破坏机理研究。提出土-桩-桥台精细化有限元模拟方法,以及基于地勘资料的模型土体参数确定实用方法,建模方法和加载模式要点为:(1)适用于土-桥台... 针对2021年青海玛多7.4级地震中野马滩大桥的桥台震害,开展基于Pushover分析的桥台纵桥向破坏机理研究。提出土-桩-桥台精细化有限元模拟方法,以及基于地勘资料的模型土体参数确定实用方法,建模方法和加载模式要点为:(1)适用于土-桥台相互作用的分布式p-y弹簧修正模型;(2)可识别背墙弯曲、剪切或弯-剪多种破坏模式的背墙非线性梁柱单元-墙底非线性剪切单元串联模型;(3)土-搭板和土-翼墙摩擦弹簧;(4)基于分布式间隙单元的可捕捉地震中主梁与背墙接触位置变化的Pushover加载模式,从而实现了桥台纵桥向地震损伤破坏全过程模拟。结果表明:野马滩桥台在水平地震作用下,背墙底截面先发生屈服,随后背墙剪力达到抗剪能力峰值,桥台整体水平承载力开始退化,直至背墙底完全剪断,而桩基础并不发生明显损伤。总体而言,桥台破坏模式为背墙弯-剪破坏,数值分析结果与桥台实际震害相符。 展开更多
关键词 玛多地震 桥台纵桥向破坏机理 土-桩-桥台精细化有限元模型 PUSHOVER分析 地勘资料
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温度影响下能量桩-土接触面剪切特性试验研究
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作者 陈志雄 甘丰嘉 +2 位作者 王成龙 彭宸 丁选明 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第3期16-23,共8页
能量桩工作过程中,桩体受温度变化影响会产生热变形,进而引起桩周土体的循环剪切作用,弱化地基承载力,给桩基的正常使用带来风险。由于传统直剪仪无法模拟能量桩工作过程中的温度变化,因此对桩-土接触面力学特性受温度影响的变化规律研... 能量桩工作过程中,桩体受温度变化影响会产生热变形,进而引起桩周土体的循环剪切作用,弱化地基承载力,给桩基的正常使用带来风险。由于传统直剪仪无法模拟能量桩工作过程中的温度变化,因此对桩-土接触面力学特性受温度影响的变化规律研究较少。对传统直剪仪进行改造,使其可以改变剪切试样温度;所用土体从重庆某施工现场取样,开展不同温度变化下桩-土接触面的室内土工直剪试验,分析单次温度变化和循环温度变化对桩-土接触面力学性能的影响,并对温度影响下桩-土接触面力学特性与土体力学特性的差异进行比较。结果表明,能量桩-土接触面的抗剪强度受温度影响较大;随着温度的升高,能量桩-土界面摩擦角和黏聚力先减小后增大;低法向应力下温度循环对桩-土接触面力学特性影响较大,而高法向应力下温度循环对桩-土接触面力学特性影响不显著;土体的抗剪强度、黏聚力和摩擦角随温度变化规律与桩-土界面类似。 展开更多
关键词 能量桩 剪切特性 桩-土接触面 温度变化
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基于桩-土界面剪切特性的单桩沉降和承载问题研究
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作者 叶帅华 辛亮亮 《岩土力学》 EI CAS CSCD 北大核心 2024年第5期1457-1471,共15页
近年来,西北地区出现了许多高填方场地,为减小建筑物基础的不均匀沉降,基础类型广泛使用桩基础。与一般场地不同,黄土填方场地中的单桩桩周土受力后仍会产生较大的变形,该类场地单桩沉降机制复杂。桩顶总沉降计算是桩基设计的重要依据,... 近年来,西北地区出现了许多高填方场地,为减小建筑物基础的不均匀沉降,基础类型广泛使用桩基础。与一般场地不同,黄土填方场地中的单桩桩周土受力后仍会产生较大的变形,该类场地单桩沉降机制复杂。桩顶总沉降计算是桩基设计的重要依据,为此,建立了高填方黄土场地单桩桩顶总沉降计算模型。基于传统的荷载传递法和剪切位移法,分别考虑桩-土界面的桩-土相互作用和桩-土界面外剪切带土体的剪切变形。依据桩端边界,将单桩类型分为摩擦桩和端承摩擦桩,分别建立桩周土弹性阶段和塑性阶段的桩身位移控制微分方程,结合边界条件进行求解,得到桩身位移、轴力、侧摩阻力,并通过弹塑性理论求解了桩周土剪切带土体剪切变形,进而通过叠加原理求得桩顶总沉降。用桩长与桩周土塑性发展深度的比值,定义了桩基承载力安全系数K。通过算例分析与现场试验数据对比分析,研究结果表明:使用新的模型计算得到的桩顶总沉降与现场试验结果相近;当桩顶荷载较小、桩周土处于弹性阶段时,桩端边界对桩身轴力、位移和侧摩阻力影响很小,但桩周土进入塑性滑移阶段后,桩端边界的影响开始变大,考虑桩端土的承载能力会极大提高单桩极限承载力;建立了将荷载传递法和剪切位移法综合起来的计算模型,不仅可以考虑桩-土界面的相对滑移,还可以计算桩-土界面外土体剪切带的剪切变形,使得桩顶总沉降计算更加精确,可为类似场地中单桩沉降的分析与控制提供一定的参考。 展开更多
关键词 荷载传递法 剪切位移法 桩-土界面 桩-土剪切带 桩顶沉降 承载特性分析
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寒区冻土桩基承载特性研究现状与展望
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作者 唐丽云 丁冰 +2 位作者 郑建国 许培智 邱培勇 《岩土工程技术》 2024年第3期253-262,共10页
冻土地区季节性的温度变化、大气升温以及人类工程活动加剧,常引起桩基冻胀融沉、倾斜、混凝土开裂等灾害,造成桩基的承载力降低,给寒区冻土桩基带来新的更大挑战。通过回顾国内外相关文献,对冻土桩基的承载性能目前的研究现状进行了总... 冻土地区季节性的温度变化、大气升温以及人类工程活动加剧,常引起桩基冻胀融沉、倾斜、混凝土开裂等灾害,造成桩基的承载力降低,给寒区冻土桩基带来新的更大挑战。通过回顾国内外相关文献,对冻土桩基的承载性能目前的研究现状进行了总结。从特殊的冻土性质出发,描述了冻土桩基体系主要的受力形式及其作用特征;从桩–冻土界面力学特性试验及荷载传递机制两个方面,阐述了冻土区桩–土界面力学特性变化机制;从试验研究、理论分析以及数值模拟三个方面,阐明了冻土桩基承载性能变化规律及分析、预测方法;归纳了冻土区桩–土体系温度、水分、应力应变等方面的监测技术。对寒区冻土桩基承载特性未来的研究提出了展望。 展开更多
关键词 冻土 桩基承载性能 桩–土界面 监测
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湿陷性黄土地基中桩基负摩阻力计算新方法
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作者 赵敏 曹卫平 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第2期1-10,共10页
负摩阻力对湿陷性黄土地基中桩基的承载变形性状具有重要影响,现行桩基规范及黄土规范推荐的负摩阻力计算方法不能反映黄土桩基负摩阻力的实际性状。对近30年来在黄土地区开展的钢筋混凝土灌注桩现场浸水试验实测数据进行统计,分析黄土... 负摩阻力对湿陷性黄土地基中桩基的承载变形性状具有重要影响,现行桩基规范及黄土规范推荐的负摩阻力计算方法不能反映黄土桩基负摩阻力的实际性状。对近30年来在黄土地区开展的钢筋混凝土灌注桩现场浸水试验实测数据进行统计,分析黄土浸水完成后桩身中性点深度、桩身最大负摩阻力深度及负摩阻力系数与桩长径比的关系,通过线性拟合得到了中性点深度比、最大负摩阻力深度比及负摩阻力系数与桩长径比的经验表达式,提出湿陷性黄土地基中桩基负摩阻力计算的新方法。新方法用三角形表示负摩阻力沿深度的分布,能反映负摩阻力从桩顶向下先逐渐增大、达到最大值后随深度增加逐渐减小、最终在中性点处减小为零的分布特征。将提出的方法、桩基规范及黄土规范方法的计算结果与实测结果进行对比,结果表明,桩基规范预测的中性点深度比优于黄土规范,黄土规范预测的最大下拉荷载优于桩基规范,而用新方法计算的负摩阻力最接近实测结果。 展开更多
关键词 湿陷性黄土 钢筋混凝土桩 负摩阻力 计算方法
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桩顶荷载及温度循环对黄土地基中能量桩承载性状影响研究
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作者 曹卫平 张作鹏 +2 位作者 赵敏 李清源 何展朋 《中国安全生产科学技术》 CAS CSCD 北大核心 2024年第8期165-172,共8页
为对比分析未经过温度循环的普通桩与能量桩竖向承载变形性状,开展黄土地基中能量桩温度循环试验。模型桩为现浇钢筋混凝土灌注桩,黄土为人工配制重塑黄土。研究结果表明:温度循环弱化黄土地基中能量桩桩身侧阻、增强能量桩桩底端阻,温... 为对比分析未经过温度循环的普通桩与能量桩竖向承载变形性状,开展黄土地基中能量桩温度循环试验。模型桩为现浇钢筋混凝土灌注桩,黄土为人工配制重塑黄土。研究结果表明:温度循环弱化黄土地基中能量桩桩身侧阻、增强能量桩桩底端阻,温度循环过程中桩顶工作荷载越大,桩侧阻的弱化作用及桩端阻的增强作用越大,这导致能量桩的竖向抗压承载力比普通桩有明显的提高。另外,根据模型试验结果,通过数据拟合建立桩土界面摩阻力-桩土相对位移及桩端土反力-桩端沉降双曲线函数模型,并确定模型参数,其函数计算结果与试验结果对比表明本文模型能合理反映温度循环及桩顶工作荷载大小对桩基承载力的影响。研究结果可为黄土地区能量桩的安全设计提供一定参考。 展开更多
关键词 能量桩 黄土 模型试验 温度循环 桩土荷载传递函数
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杂填土地基中螺杆桩竖向承载特性研究
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作者 孔德志 于洋 +1 位作者 原华 王鑫 《中国科技论文》 CAS 2024年第3期300-304,312,共6页
为了研究杂填土地基中螺杆桩竖向承载特性,基于极限平衡理论分析了桩-土咬合机理,结合桩-土之间的相互作用得到螺纹段等效侧阻力增大系数,在此基础上建立了单桩竖向承载力计算公式,并对杂填土地基中螺杆桩单桩进行缩尺模型试验。结果表... 为了研究杂填土地基中螺杆桩竖向承载特性,基于极限平衡理论分析了桩-土咬合机理,结合桩-土之间的相互作用得到螺纹段等效侧阻力增大系数,在此基础上建立了单桩竖向承载力计算公式,并对杂填土地基中螺杆桩单桩进行缩尺模型试验。结果表明,螺杆桩在竖向荷载作用下,荷载-沉降曲线经历了弹性、弹塑性、塑性破坏3个阶段。根据模型试验所得桩身轴力和桩侧等效侧阻力沿深度的分布规律,总体上螺纹段等效侧阻力高于直杆段。当桩体达到极限承载力时,试验所得等效侧阻力扩大系数与理论分析结果基本一致。 展开更多
关键词 杂填土 螺杆桩 等效摩阻力 桩-土咬合
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考虑竖向荷载作用时液化土中群桩基础水平动力响应
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作者 胡安峰 陈奕扬 +1 位作者 肖志荣 陈正 《上海交通大学学报》 EI CAS CSCD 北大核心 2024年第7期1075-1085,共11页
基于Biot饱和多孔介质理论,考虑液化土的流动特性,建立考虑竖向荷载作用的部分埋入群桩水平振动模型,通过分离变量法、算子分解法,引入桩土耦合及位移连续条件,得到复杂条件下液化土中高桩桩间相互作用因子解和群桩水平动阻抗解.通过参... 基于Biot饱和多孔介质理论,考虑液化土的流动特性,建立考虑竖向荷载作用的部分埋入群桩水平振动模型,通过分离变量法、算子分解法,引入桩土耦合及位移连续条件,得到复杂条件下液化土中高桩桩间相互作用因子解和群桩水平动阻抗解.通过参数分析,表明液化土特性和竖向荷载对桩间水平相互作用因子、群桩动阻抗有显著影响,指出同一频率下,群桩水平动刚度随着表层液化土厚度的增加而下降,当液化厚度较大时,动刚度随频率上升显著下降,并出现负刚度;桩顶竖向荷载会降低液化土中的群桩动刚度,液化土厚度越大,削弱效果越明显. 展开更多
关键词 液化土 高桩基础 竖向荷载 桩间水平相互作用
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非饱和土地基中端承桩对SH波的水平地震响应
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作者 邹新军 杨紫健 吴文兵 《岩土工程学报》 EI CAS CSCD 北大核心 2024年第1期72-80,共9页
为探讨非饱和土地基中SH波作用下端承桩的水平地震响应,先基于一维波动理论得出SH波引起的土层自由场水平振动解,然后考虑非饱和土体动剪切模量随其饱和度的变化特性,采用三维连续介质力学和Euler梁模型建立轴向静荷载下非饱和土-端承... 为探讨非饱和土地基中SH波作用下端承桩的水平地震响应,先基于一维波动理论得出SH波引起的土层自由场水平振动解,然后考虑非饱和土体动剪切模量随其饱和度的变化特性,采用三维连续介质力学和Euler梁模型建立轴向静荷载下非饱和土-端承桩水平耦合振动模型,进而通过引入势函数和分离变量法推导出桩顶水平位移相互作用因子、桩顶水平位移放大因子和桩身曲率比的表达式,经与已有成果对比验证后再经参数分析,获得土体饱和度、桩身长径比和土体黏滞阻尼对桩身水平抗震特性的影响规律:土体饱和度和桩身长径比仅在高频范围对相互作用因子和放大因子有显著影响;土体黏滞阻尼仅在共振频率使得相互作用因子和放大因子分别逐渐增大和减小。 展开更多
关键词 端承桩 非饱和土 SH波 水平振动 Euler梁模型
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车辆载荷作用下桩后黏性土主动土压力分析
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作者 李涛 张添琦 +1 位作者 吴雨停 王文博 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2024年第1期20-29,共10页
针对现有设计规范进行桩后主动土压力计算时未考虑车辆载荷的动力效应对支护结构影响的问题,在平面滑裂面假定的基础上,结合拟动力学分析方法,考虑车辆动载荷作用下桩后土体受惯性力的影响,推导出车辆载荷作用下主动土压力的计算式,将... 针对现有设计规范进行桩后主动土压力计算时未考虑车辆载荷的动力效应对支护结构影响的问题,在平面滑裂面假定的基础上,结合拟动力学分析方法,考虑车辆动载荷作用下桩后土体受惯性力的影响,推导出车辆载荷作用下主动土压力的计算式,将主动土压力分为动土压力分量和静土压力分量。分析土体容重、桩-土外摩擦角对主动土压力的影响,以及水平振动加速度系数、内摩擦角、行车速度、车桩间距对动土压力的影响,对比分析不同黏聚力情况下的主动土压力分布规律。研究结果表明:桩后动土压力呈非线性分布;在车辆载荷作用下,一个振动周期内桩后主动土压力随滑动面倾角的增大和时间的持续先增大后减小;动土压力幅值随车桩间距的增大而减小,振动周期随车速的增大而增大。 展开更多
关键词 车辆载荷 支护桩 黏性土 非线性分布 拟动力法
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考虑剪切速率影响桩土界面力学特性模拟研究
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作者 王永洪 王鑫 +4 位作者 李世强 王军 张腾 张传通 李勇 《武汉理工大学学报(交通科学与工程版)》 2024年第1期137-140,共4页
文中通过大型直剪仪研究了黏性土与混凝土界面的界面摩擦阻力,测定了不同剪切速率和法向应力下黏性土-混凝土界面摩擦阻力以及剪切速率与剪切破坏位移的关系.结果表明:黏性土与混凝土界面的剪应力-剪切位移关系受剪切速率和法向应力的影... 文中通过大型直剪仪研究了黏性土与混凝土界面的界面摩擦阻力,测定了不同剪切速率和法向应力下黏性土-混凝土界面摩擦阻力以及剪切速率与剪切破坏位移的关系.结果表明:黏性土与混凝土界面的剪应力-剪切位移关系受剪切速率和法向应力的影响.剪切速率对界面附着力和界面摩擦角均不存在影响,界面剪切破坏位移与剪切速率之间没有明显的相关性,但剪切速率对桩-土界面剪切破坏位移有一定的影响.因此,静压桩沉桩速度范围内,剪切速率对桩土界面力学特性影响不大. 展开更多
关键词 桩土界面 剪切速率 力学特性 室内试验
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软土地区轨道交通桥梁下方灌注桩小净距施工影响
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作者 朱兆斌 《城市轨道交通研究》 北大核心 2024年第7期152-157,163,共7页
[目的]我国沿海软土地区灌注桩与运营轨道交通桥梁、桥墩间小净距的施工影响正成为制约城市轨道交通规划与建设的又一瓶颈因素,因此有必要研究小净距钻孔灌注桩施工对周围地层和桥墩的变形影响。[方法]以浙江某城市道路桩板结构形式下... [目的]我国沿海软土地区灌注桩与运营轨道交通桥梁、桥墩间小净距的施工影响正成为制约城市轨道交通规划与建设的又一瓶颈因素,因此有必要研究小净距钻孔灌注桩施工对周围地层和桥墩的变形影响。[方法]以浙江某城市道路桩板结构形式下穿轨道交通桥梁在建工程为例,通过设计土体侧向变形监测试验和搭建既有桥梁、桥墩的位移智能监测系统,分析了深厚软土区地层与测斜孔的协同变形特性,以及钻孔灌注桩施工对周围地层及桥墩变形的影响规律。[结果及结论]为使测斜孔与地层具有较好的协同变形,软土区测斜孔施工后应稳定停留6 d;淤泥层对施工加载、卸载过程的敏感性较高,由施工引发的软土地层变形量最大;在施工条件下,桥墩3个方向的变形幅值约为未施工的2~3倍;成孔开挖和混凝土浇筑工序对桥墩深度方向的扰动影响较显著,因此已运营轨道交通桥梁下部施工的监测重点应为竖向位移。 展开更多
关键词 轨道交通 软土地区 灌注桩小净距施工
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