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考虑位移的土压力模型在横向承载桩分析中的应用 被引量:9
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作者 宋林辉 梅国雄 宰金珉 《岩土力学》 EI CAS CSCD 北大核心 2007年第5期1035-1039,共5页
桩与地基土之间的相互作用是横向承载桩研究的重要组成部分,相互作用的土反力是挠度和深度的非线性函数,即桩的变形和受力之间呈非线性变化,这种非线性导致了横向承载桩的分析计算十分繁杂。针对问题研究的复杂性,从考虑位移的朗肯土压... 桩与地基土之间的相互作用是横向承载桩研究的重要组成部分,相互作用的土反力是挠度和深度的非线性函数,即桩的变形和受力之间呈非线性变化,这种非线性导致了横向承载桩的分析计算十分繁杂。针对问题研究的复杂性,从考虑位移的朗肯土压力理论入手,根据桩出现挠度后引起周边土体的位移量,推导出桩周土反力表达式,在不引入任何地基模型的条件下计算桩身任意深度处基于桩体位移的土反力,简化了问题的分析过程。通过设定算例进行分析,所得出的结果与p-y曲线结果以及实际情况一致,证明了该计算方法的合理性。 展开更多
关键词 横向承载桩 土压力模型 应力 位移
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Coulomb模型下考虑墙体侧向位移的土压力计算 被引量:8
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作者 谢涛 罗强 +2 位作者 张良 蒋良潍 连继峰 《岩土工程学报》 EI CAS CSCD 北大核心 2018年第1期194-200,共7页
墙体侧向位移对土压力有显著影响。基于墙体位移–土压力关系是墙后土体应力应变特征的宏观体现这一基本认识,通过构建Coulomb土压力模型下的几何与平衡方程,将直剪试验中微观的土体单位长度剪切位移ε同剪应力τ关系转化成宏观上的墙... 墙体侧向位移对土压力有显著影响。基于墙体位移–土压力关系是墙后土体应力应变特征的宏观体现这一基本认识,通过构建Coulomb土压力模型下的几何与平衡方程,将直剪试验中微观的土体单位长度剪切位移ε同剪应力τ关系转化成宏观上的墙体位移与土压力曲线,推导了极限位移可求、涵盖主动至被动状态全过程的墙体位移–土压力计算模型。分析表明:滑移区范围、初始应力状态及土体的ε–τ关系是影响墙体位移–土压力曲线的核心要素;相对于主动区,被动区范围对墙土摩擦作用更加敏感,导致静止与被动状态之间的位移–土压力关系受墙土摩擦影响更加显著;墙后土体初始应力状态对墙体位移的影响主要体现为静止土压力系数K_0,随着K_0的增大主动与被动状态下的墙体位移相应增加和减小;极限状态下墙体位移与工程经验吻合,理论模型能基本反映土压力随位移的变化规律。 展开更多
关键词 墙体位移–压力曲线 Coulomb土压力模型 剪切位移–剪应力 滑移区范围 初始应力状态
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加固护岸板桩土压力计算模型研究 被引量:3
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作者 许春虎 陈永辉 石刚传 《水电能源科学》 北大核心 2016年第9期157-160,130,共5页
为解决目前考虑位移土压力计算方法中参数不易准确取值的不足,在传统的双曲线土压力计算模型和邓肯-张本构模型推导方法的基础上,建立了加固护岸板桩土压力计算模型,提出了基于弹性半空间的Mindlin位移解的土体横向基床系数解析解法。... 为解决目前考虑位移土压力计算方法中参数不易准确取值的不足,在传统的双曲线土压力计算模型和邓肯-张本构模型推导方法的基础上,建立了加固护岸板桩土压力计算模型,提出了基于弹性半空间的Mindlin位移解的土体横向基床系数解析解法。算例分析结果表明,理论计算值与数值模拟值基本吻合,最大仅相差7.6%,从而验证了双曲线土压力计算模型及土体横向基床系数的解析解法合理、可行。 展开更多
关键词 板桩 土压力模型 MINDLIN位移解 横向基床系数
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各向异性砂土K_0试验研究 被引量:21
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作者 宋飞 张建民 刘超 《岩土力学》 EI CAS CSCD 北大核心 2010年第12期3727-3732,3740,共7页
静止土压力系数K0是岩土工程分析计算中的重要力学参数之一。实际工程中墙后填土由于碾压都具有不同程度的各向异性。制备了不同沉积方向的砂土试样,通过三轴排水剪切试验研究了砂土的各向异性。在研制应变路径试验设备的基础上给出了... 静止土压力系数K0是岩土工程分析计算中的重要力学参数之一。实际工程中墙后填土由于碾压都具有不同程度的各向异性。制备了不同沉积方向的砂土试样,通过三轴排水剪切试验研究了砂土的各向异性。在研制应变路径试验设备的基础上给出了静止土压力系数的测量方法,研究了不同沉积方向对于K0的影响,并将试验测得的静止土压力系数与Jaky公式以及土压力离心模型试验结果进行了对比,离心模型试验结果与材料单元试验结果一致,证明了测量方法的有效性及结果的正确性。研究结果表明,各向异性条件下的K0值比各向同性时明显偏大。 展开更多
关键词 静止压力系数 各向异性 K0固结试验 压力离心模型试验
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An analytical p-y curve method based on compressive soil pressure model in sand soil 被引量:1
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作者 JIANG Jie FU Chen-zhi +2 位作者 WANG Shun-wei CHEN Chao-qi OU Xiao-duo 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1987-2004,共18页
With the high-quality development of urban buildings,higher requirements are come up with for lateral bearing capacity of laterally loaded piles.Consequently,a more accurate analysis to predict the lateral response of... With the high-quality development of urban buildings,higher requirements are come up with for lateral bearing capacity of laterally loaded piles.Consequently,a more accurate analysis to predict the lateral response of the pile within an allowable displacement is an important issue.However,the current p-y curve methods cannot fully take into account the pile-soil interaction,which will lead to a large calculation difference.In this paper,a new analytical p-y curve is established and a finite difference method for determining the lateral response of pile is proposed,which can consider the separation effect of pile-soil interface and the coefficient of circumferential friction resistance.In particular,an analytical expression is developed to determine the compressive soil pressure by dividing the compressive soil pressure into two parts:initial compressive soil pressure and increment of compressive soil pressure.In addition,the relationship between compressive soil pressure and horizontal displacement of the pile is established based on the reasonable assumption.The correctness of the proposed method is verified through four examples.Based on the verified method,a parametric analysis is also conducted to investigate the influences of factors on lateral response of the pile,including internal friction angle,pile length and elastic modulus of pile. 展开更多
关键词 laterally loaded piles compressive soil pressure model separation effect of pile-soil interface coefficient of circumferential friction resistance analytical p-y curve finite difference method
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Centrifuge modeling of dynamic behavior of pile-reinforced slopes during earthquakes 被引量:5
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作者 于玉贞 邓丽军 +1 位作者 孙逊 吕禾 《Journal of Central South University》 SCIE EI CAS 2010年第5期1070-1078,共9页
A series of centrifuge model tests of sandy slopes were conducted to study the dynamic behavior of pile-reinforced slopes subjected to various motions.Time histories of accelerations,bending moments and pile earth pre... A series of centrifuge model tests of sandy slopes were conducted to study the dynamic behavior of pile-reinforced slopes subjected to various motions.Time histories of accelerations,bending moments and pile earth pressures were obtained during excitation of the adjusted El Centro earthquake and a cyclic motion.Under a realistic earthquake,the overall response of the pile-reinforced slope is lower than that of the non-reinforced slope.The histories of bending moments and dynamic earth pressures reach their maximums soon after shaking started and then remain roughly stable until the end of shaking.Maximum moments occur at the height of 3.5 m,which is the deeper section of the pile,indicating the interface between the active loading and passive resistance regions.The dynamic earth pressures above the slope base steadily increase with the increase of height of pile.For the model under cyclic input motion,response amplitudes at different locations in the slope are almost the same,indicating no significant response amplification.Both the bending moment and earth pressure increase gradually over a long period. 展开更多
关键词 EARTHQUAKE SLOPE stabilizing pile dynamic behavior centrifuge modeling earth pressure ACCELERATION bending moment
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Centrifugal model test and numerical simulation of vertical earth pressure on soft foundation box culvert 被引量:3
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作者 张军辉 姚永胜 +1 位作者 郑健龙 张涛 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3556-3563,共8页
To obtain the vertical earth pressure on a soft foundation box culvert and investigate the interaction of the soil-culvert-foundation system, both a centrifugal model test and a numerical simulation were conducted and... To obtain the vertical earth pressure on a soft foundation box culvert and investigate the interaction of the soil-culvert-foundation system, both a centrifugal model test and a numerical simulation were conducted and the comparisons with the current methods to determine the load on a culvert were completed. The results of the model test and numerical analysis are in satisfactory agreement, which shows that the direction of the shear stress between the culvert and the adjacent embankment depends on the differential settlement between them. A vertical earth pressure concentration appears on the culvert with a rigid piles foundation because of a downward shear stress. The ratio of the load on a soft foundation culvert and the overburden pressure above the culvert raises first and then decreases as the backfill height increases. In order to reduce the load on a culvert, it is suggested to limit the stiffness difference of the foundations under the culvert and embankment and to use a light backfill over the culvert. 展开更多
关键词 box culvert vertical earth pressure soft foundation centrifugal model test
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Uniqueness of rate-dependency, creep and stress relaxation behaviors for soft clays 被引量:1
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作者 朱启银 尹振宇 +2 位作者 徐长节 殷建华 夏小和 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期296-302,共7页
This work focuses on the uniqueness of rate-dependency, creep and stress relaxation behaviors for soft clays under one-dimensional condition. An elasto-viscoplastic model is briefly introduced based on the rate-depend... This work focuses on the uniqueness of rate-dependency, creep and stress relaxation behaviors for soft clays under one-dimensional condition. An elasto-viscoplastic model is briefly introduced based on the rate-dependency of preconsolidation pressure. By comparing the rate-dependency formulation with the creep based formulation, the relationship between rate-dependency and creep behaviors is firstly described. The rate-dependency based formulation is then extended to derive an analytical solution for the stress relaxation behavior with defining a stress relaxation coefficient. Based on this, the relationship between the rate-dependency coefficient and the stress relaxation coefficient is derived. Therefore, the uniqueness between behaviors of rate-dependency, creep and stress relaxation with their key parameters is obtained. The uniqueness is finally validated by comparing the simulated rate-dependency of preconsolidation pressure, the estimated values of secondary compression coefficient and simulations of stress relaxation tests with test results on both reconstituted Illite and Berthierville clay. 展开更多
关键词 soft clays creep rate-dependency stress relaxation oedometer test
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