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复合荷载作用下斜桩群桩响应简化计算方法
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作者 孔令刚 刘维 +2 位作者 夏海波 郑振华 陈云敏 《中南大学学报(自然科学版)》 北大核心 2025年第5期1900-1910,共11页
基于半无限弹性地基假设建立适于快速计算推、压、弯、扭等荷载联合作用大型斜桩群桩响应的简化分析模型,分析三维空间中任意倾斜方向和角度的两相邻斜桩间不同种类桩-土-桩相互作用影响。首先,将两斜桩中多种类型的桩头变形间相互作用... 基于半无限弹性地基假设建立适于快速计算推、压、弯、扭等荷载联合作用大型斜桩群桩响应的简化分析模型,分析三维空间中任意倾斜方向和角度的两相邻斜桩间不同种类桩-土-桩相互作用影响。首先,将两斜桩中多种类型的桩头变形间相互作用简化为桩头轴向、侧向位移和扭转角,分析其对邻桩三类桩头变形量的影响;然后,引入自由场地位移衰减系数,量化分析土面上竖向、水平和扭转3种位移随水平距离的变化规律;最后,基于虚拟桩假设和坐标变换,推导出计算三维空间中任意倾斜方向和角度的两桩间相互作用的矩阵表达式,基于该分析模型开发了群桩分析程序PIGEAN。研究结果表明:斜桩桩头的轴向、侧向和扭转响应可近似采用相应荷载下的直桩解析解或近似解计算。3组不同荷载组合的多组斜桩群桩模型试验结果证明了斜桩的桩-土-桩相互作用三维分析方法能有效计算斜桩间相互作用的影响,提高计算准确性;证明了本模型在计算复合荷载下大规模群桩的高效性。 展开更多
关键词 --相互作用 荷载组合 三维空间
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桩-土相互作用影响的模型试验研究 被引量:15
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作者 王涛 《岩土力学》 EI CAS CSCD 北大核心 2008年第6期1589-1592,共4页
通过将模型试验、现场实测的结果与弹性理论解进行对比,指出弹性理论解夸大了桩-桩、桩-土、土-土相互作用影响,造成沉降计算值偏大和过高估计桩顶反力的不均匀性(或筏底地基土反力的不均匀性),并提出对弹性理论解进行修正的途径和方法。
关键词 桩-桩 - - 相互作用影响系数 弹性理论
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PCC桩Q-S曲线Bolztmann模型拟合及承载力计算 被引量:5
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作者 蒋建平 高广运 章杨松 《煤炭学报》 EI CAS CSCD 北大核心 2009年第4期531-536,共6页
基于3个场地共13根桩的现场试验资料,对现浇混凝土薄壁筒桩进行了桩顶荷载-桩顶沉降曲线的数学拟合和承载力计算.结果表明,和抛物线模型、指数模型相比,本文建议的玻耳兹曼模型是描述薄壁筒桩桩顶荷载-桩顶沉降曲线的较好模型,它... 基于3个场地共13根桩的现场试验资料,对现浇混凝土薄壁筒桩进行了桩顶荷载-桩顶沉降曲线的数学拟合和承载力计算.结果表明,和抛物线模型、指数模型相比,本文建议的玻耳兹曼模型是描述薄壁筒桩桩顶荷载-桩顶沉降曲线的较好模型,它对直线型、缓变型、陡变型曲线都能进行较好的拟合;用玻耳兹曼模型拟合13根薄壁筒桩的桩顶荷载-桩项沉降曲线的效果很好,相关系数都达到0.9806以上,平均0.9926;对桩顶沉降已超过30mm的8根桩,Q30计算值与实测值误差百分比的绝对值在0.1100%~8.4400%,平均值为2.8975%,对桩顶沉降未达到30mm的5根桩,利用拟合方程式可对桩顶荷载Q30进行预测. 展开更多
关键词 顶荷载-顶沉降曲线 薄壁筒 玻耳兹曼模型
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CFG桩桩-网结构地基抗液化性能数值分析 被引量:4
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作者 詹永祥 蒋关鲁 《中国铁道科学》 EI CAS CSCD 北大核心 2008年第5期1-6,共6页
以京沪高速铁路液化土地基加固为背景,采用数值分析方法,通过各级加载情况下地基路基加固前后液化区域分布及超静孔隙水压力变化规律的分析,对水泥粉煤灰碎石桩(CFG桩)桩-网结构地基加固饱和粉土地基进行抗液化性能研究。研究表明,未加... 以京沪高速铁路液化土地基加固为背景,采用数值分析方法,通过各级加载情况下地基路基加固前后液化区域分布及超静孔隙水压力变化规律的分析,对水泥粉煤灰碎石桩(CFG桩)桩-网结构地基加固饱和粉土地基进行抗液化性能研究。研究表明,未加固饱和粉土地基在加载加速度大于0.2g时,几乎全部液化;加固后饱和粉土地基在加速度幅值为0.1g时,加固区以外的饱和粉土地基面附近有小面积的液化,随着加载加速度的增大,加固区以外的饱和粉土地基面积液化进一步加大,并逐渐向桩间土发展,当加速度幅值达到0.4g时,路基发生完全液化;超静孔隙水压力随加载加速度幅值的增加而增大。CFG桩桩-网结构地基能够有效地抑制超静孔隙水压力的上升,从而提高地基的抗液化能力。 展开更多
关键词 地基 饱和粉土 液化 CFG-网结构地基 数值分析
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层状地基中刚性承台群桩竖向力学分析 被引量:14
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作者 李早 黄茂松 戴兵 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2007年第4期446-450,共5页
基于Winkler地基模型,建立分层土中单桩的荷载传递矩阵,并考虑被动桩与桩周土的相互作用,建立被动桩的位移控制方程,得到两根桩的相互影响系数α.提出了刚性承台下受荷群桩的位移内力计算的解析方法,并和有限元计算的结果进行了比较,得... 基于Winkler地基模型,建立分层土中单桩的荷载传递矩阵,并考虑被动桩与桩周土的相互作用,建立被动桩的位移控制方程,得到两根桩的相互影响系数α.提出了刚性承台下受荷群桩的位移内力计算的解析方法,并和有限元计算的结果进行了比较,得到了较好的一致性. 展开更多
关键词 桩-桩相互作用 荷载传递矩阵 成层土
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Pasternak层状地基中群桩水平动力响应解析解答 被引量:7
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作者 崔春义 辛宇 +2 位作者 许成顺 梁志孟 王本龙 《岩土工程学报》 EI CAS CSCD 北大核心 2023年第5期893-902,共10页
基于Pasternak地基和Euler梁振动理论,提出了一种能考虑轴向荷载影响的单桩水平振动简化分析力学模型,建立了层状地基中桩-土耦合作用下单桩水平振动控制方程;采用微分变换的方法对方程解耦,进一步结合桩-土边界连续条件求出单桩水平位... 基于Pasternak地基和Euler梁振动理论,提出了一种能考虑轴向荷载影响的单桩水平振动简化分析力学模型,建立了层状地基中桩-土耦合作用下单桩水平振动控制方程;采用微分变换的方法对方程解耦,进一步结合桩-土边界连续条件求出单桩水平位移、转角及内力解析解答。然后,考虑主动桩Ⅰ振动引起被动桩Ⅱ的动态位移,建立被动桩Ⅱ的水平振动控制方程,求解得到被动桩Ⅱ的响应解析解答,依据动力相互作用因子定义进一步求得桩-桩水平动力相互作用因子。最后,利用叠加原理求得群桩水平动力阻抗,并与已有相关解析解进行退化对比验证其合理性。在此基础上,通过参数化分析探讨了地基剪切系数、布桩类型、桩距径比、轴向特征参数对群桩水平阻抗以及桩顶反力分布、桩身内力分布的影响规律,可为实际工程群桩桩基设计提供理论指导和参考作用。 展开更多
关键词 动力阻抗 水平振动 桩-桩动力相互作用 PASTERNAK地基
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非均质地基中群桩竖向荷载沉降关系分析 被引量:17
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作者 江杰 黄茂松 顾倩燕 《岩土力学》 EI CAS CSCD 北大核心 2008年第8期2092-2096,共5页
运用剪切位移法计算了桩轴向荷载传递因子。对于桩端采用线性的荷载传递函数,推导了基于弹塑性模型的单桩竖向荷载沉降的解析解。分析过程中考虑了土体强度沿深度线性变化的特性和桩土间的滑移现象,因此更符合大部分土体的实际性状。在... 运用剪切位移法计算了桩轴向荷载传递因子。对于桩端采用线性的荷载传递函数,推导了基于弹塑性模型的单桩竖向荷载沉降的解析解。分析过程中考虑了土体强度沿深度线性变化的特性和桩土间的滑移现象,因此更符合大部分土体的实际性状。在此基础上,建立了考虑桩土滑移的桩-桩相互作用系数的计算公式,并将上述方法应用于群桩的分析,获得了群桩的荷载沉降特性。该分析方法克服了目前应用较多的弹性理论方法夸大桩土相互作用的缺点,单桩和群桩的荷载沉降曲线的分析结果和实测数据吻合,证明了该方法的合理性。 展开更多
关键词 滑移 非均质土 弹塑性模型 桩-桩相互作用
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大规模群桩基础相互作用近似解耦方法 被引量:2
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作者 杨威 梁发云 陈海兵 《岩土力学》 EI CAS CSCD 北大核心 2015年第S1期137-141,共5页
针对传统弹性理论法过高地估计了桩-桩相互作用效应,基于杆件有限单元法建立了半无限土体中群桩基础的桩侧剪应力求解方程,通过简化桩-桩的相互作用效应,将群桩基础桩侧摩阻力的求解方程近似解耦,实现了群桩基础桩身剪应力和位移的快速... 针对传统弹性理论法过高地估计了桩-桩相互作用效应,基于杆件有限单元法建立了半无限土体中群桩基础的桩侧剪应力求解方程,通过简化桩-桩的相互作用效应,将群桩基础桩侧摩阻力的求解方程近似解耦,实现了群桩基础桩身剪应力和位移的快速求解目标。通过两桩相互作用系数以及柔性承台下群桩基础差异沉降的对比分析,验证了该简化方法的合理性。参数分析结果表明,该简化方法计算得到的相互作用系数与严格的边界积分方程法解答较为接近,稍小于Poulos弹性理论法的计算结果;柔性承台下群桩的差异沉降在桩间距较小时与经典解答较为接近,而在桩间距较大时则存在一定的差别。该简化方法大幅减少了群桩计算工作量,适用于大规模群桩基础的快速计算要求。 展开更多
关键词 大规模群 弹性理论 解耦 桩-桩相互作用 快速求解
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自升式平台插桩对邻近平台桩基础的影响研究 被引量:10
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作者 张海洋 刘润 贾沼霖 《岩土工程学报》 EI CAS CSCD 北大核心 2021年第5期867-876,共10页
自升式钻井平台可以往返于不同油气田实施钻修井作业,其作业地点常常紧邻导管架等固定平台,桩靴插桩导致的挤土效应会使邻近固定平台的桩基础受到附加水平荷载,这一荷载在桩基设计中并未考虑,因此成为平台稳定性的安全隐患。为此开展了... 自升式钻井平台可以往返于不同油气田实施钻修井作业,其作业地点常常紧邻导管架等固定平台,桩靴插桩导致的挤土效应会使邻近固定平台的桩基础受到附加水平荷载,这一荷载在桩基设计中并未考虑,因此成为平台稳定性的安全隐患。为此开展了离心模型试验,研究黏性土中不同桩靴插桩深度对不同距离桩基的水平变形影响;分别建立了基于球孔扩张理论及非线性地基梁模型的两阶段理论算法和基于三维CEL模型的大变形有限元分析法,求解了桩靴插桩导致的邻近桩基桩身附加弯矩及位移。对比离心试验结果,两种方法预测的桩身附加弯矩及水平位移均与实测值较为吻合,证明了分析方法的可靠性。同时发现桩靴插桩导致的桩身附加应力达到51 MPa,表明自升式平台插桩作业对邻近平台桩基础的影响不容忽视,最后给出了理论算法与大变形法在实际工程使用中的一些建议。 展开更多
关键词 平台插 -相互作用 离心模型试验 弯矩 位移
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群桩扭转非线性模型 被引量:11
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作者 孔令刚 张利民 《岩土力学》 EI CAS CSCD 北大核心 2009年第8期2231-2236,共6页
建立了一个非线性数学模型来分析群桩扭转问题。该模型利用非线性荷载传递曲线来模拟桩的非线性响应,采用Mindlin解计算各桩水平力间的相互作用,用Randolph解析解分析得到各桩间扭矩对水平力的影响。在各单桩中引入经验性的耦合系数,分... 建立了一个非线性数学模型来分析群桩扭转问题。该模型利用非线性荷载传递曲线来模拟桩的非线性响应,采用Mindlin解计算各桩水平力间的相互作用,用Randolph解析解分析得到各桩间扭矩对水平力的影响。在各单桩中引入经验性的耦合系数,分析桩身水平变形引起的土体反力对该桩扭转承载力的影响。对比计算结果与离心机模型试验数据,表明该模型能够模拟群桩扭转中主要的桩-土-桩相互作用和荷载耦合作用,较好地反映了实际情况。 展开更多
关键词 扭转 非线性模型 --相互作用 离心机试验
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桩基础的动力群桩效应 被引量:2
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作者 孙剑平 朱晞 倪永军 《北方交通大学学报》 CSCD 北大核心 2001年第4期44-49,50,共7页
分析桩—土—桩相互作用的机理 ,依据弹性Winkler地基梁理论 ,采用相互作用系数的概念考虑群桩效应 ,提出层状场地中 ,考虑动力群桩效应的结构等效动力刚度矩阵的计算方法 .以两个代表性的实例 ,分析动力群桩效应的特点 ,并比较两个实... 分析桩—土—桩相互作用的机理 ,依据弹性Winkler地基梁理论 ,采用相互作用系数的概念考虑群桩效应 ,提出层状场地中 ,考虑动力群桩效应的结构等效动力刚度矩阵的计算方法 .以两个代表性的实例 ,分析动力群桩效应的特点 ,并比较两个实例的差异 . 展开更多
关键词 --相互作用 动力群效应 等效动力刚度矩阵 基础 静力荷载 群位移
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对桩承结构上下部水平抗震理解的联合预估
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作者 熊辉 吕西林 邹银生 《岩土工程学报》 EI CAS CSCD 北大核心 2005年第10期1166-1170,共5页
结合平面动力有限元与简化三维集中质量法(S-R模型)对水平地震作用下的群桩-土-结构体系的动力性能进行了理论预测,可用来计算不同构型、桩数、土层属性下的结构系统动力反应。算例分析表明,由于土与基础的参与,考虑相互作用后结构位移... 结合平面动力有限元与简化三维集中质量法(S-R模型)对水平地震作用下的群桩-土-结构体系的动力性能进行了理论预测,可用来计算不同构型、桩数、土层属性下的结构系统动力反应。算例分析表明,由于土与基础的参与,考虑相互作用后结构位移及层间位移反应增大;受结构、桩基础及土层属性等多因素影响,结构内力在某些地震频谱作用下反而会有所增加,而固基情形下的加速度反应谱曲线对相互作用的反应结果并不一定形成包络,两种方法在对相互作用结构进行动力反应的量化数值分析和定性评价上均有良好的一致性。 展开更多
关键词 --结构相互作用 平面动力有限元 层间模型 --效应 动力反应谱
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Model test on vertical bearing capacity of X-section concrete pile raft foundation in silica sand 被引量:3
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作者 XU Lai PENG Yu +1 位作者 DING Xuan-ming LIU Jia-yi 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第6期1861-1869,共9页
To reveal the bearing capacity of the X-section concrete piles pile raft foundation in silica sand,a series of vertical load tests are carried out.The X-section concrete piles are compared with circular section pile w... To reveal the bearing capacity of the X-section concrete piles pile raft foundation in silica sand,a series of vertical load tests are carried out.The X-section concrete piles are compared with circular section pile with the same section area.The load−settlement curves,axial force and skin friction,strain on concave and convex edge of the pile,pile-sand stress ratio,distributions of side and tip resistance are presented.The results show that bearing capacity of the X section concrete pile raft foundation is much larger than that of the circular pile raft foundation.Besides,compared with the circular pile,the peak axial force of X-section piles under raft is deeper and smaller while the neutral point of X-section concrete pile is deeper.Moreover,the strain on the concave edge is much larger than that on the convex edge of the pile,and the convex edge has more potential in bearing capacity as the vertical load increases.The X-section pile has higher pile-sand stress ratios and load-sharing between side resistance and tip resistance.Above all,the X-section concrete pile can significantly increase the bearing capacity of pile-raft foundations in silica sand. 展开更多
关键词 X-section pile pile raft foundation model test neutral point pile-soil stress ratio
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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 laye... 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 fimction 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 SETTLEMENT time effect single pile virtual soil-pile model layered soil VISCOELASTICITY distributed Voigt model
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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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Analysis of ground vibrations induced by high-speed train moving on pile-supported subgrade using three-dimensional FEM 被引量:9
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作者 GAO Guang-yun BI Jun-wei +1 位作者 CHEN Qing-sheng CHEN Run-min 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第8期2455-2464,共10页
The pile-supported subgrade has been widely used in high-speed railway construction in China.To investigate the ground vibrations of such composite foundation subjected to moving loads induced by high-speed trains(HST... The pile-supported subgrade has been widely used in high-speed railway construction in China.To investigate the ground vibrations of such composite foundation subjected to moving loads induced by high-speed trains(HSTs),three-dimensional(3D)finite element method(FEM)models involving the pile,pile cap and cushion are established.Validation of the proposed model is conducted through comparison of model predictions with the field measurements.On this basis,ground vibrations generated by HSTs under different train speeds as well as the ground vibration attenuation with the distance away from the track centerline are investigated.In addition,the effects of piles and pile elastic modulus on ground vibrations are well studied.Results show that the pile-reinforcement of the subgrade could significantly contribute to the reduction of ground vibrations.In particular,the increase of elastic modulus of pile could lead to consistent reduction of ground vibrations.However,when the pile elastic modulus is beyond 10 GPa,this benefit of pile-reinforcement on vibration isolation can hardly be increased further. 展开更多
关键词 high-speed railway ground vibrations 3D FEM pile-supported subgrade pile elastic modulus
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Ultimate end bearing capacity of rock-socketed pile based on generalized nonlinear unified strength criterion 被引量:7
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作者 章敏 王星华 汪优 《Journal of Central South University》 SCIE EI CAS 2011年第1期208-215,共8页
In order to study the mechanism of bearing behavior at the tip of a pile embedded in rock, the generalized nonlinear unified strength criterion and slip line principle for resolving the differential equation systems w... In order to study the mechanism of bearing behavior at the tip of a pile embedded in rock, the generalized nonlinear unified strength criterion and slip line principle for resolving the differential equation systems which govern the stress field were applied to derive the ultimate end beating capacity based on some reasonable hypothesis and failure plane model. Both numerical simulation and test results were compared with the theoretic solution. The results show good consistency with each other and verify the validity of the present approach. The depth effect with respective to embedment ratio and other influence factors like geological strength index, intermediate principal stress, overburden factor, and damage on end bearing capacity were discussed in the analytical solution. The results show that the proposed yield criterion can be much better for investigating the ultimate end bearing performance of rock-socketed pile. The end bearing capacity increases with embedment ratio and the increasing degree is influenced intensely by the above parameters. Furthermore, ignoring intermediate stress effect would underestimate the strength properties of the rock material and lead to a very conservative estimation value. 展开更多
关键词 rock-socketed pile generalized nonlinear unified strength criterion slip line principle embedment ratio damage endbearing capacity
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Destructive field tests on mobilization of end resistance of cast-in-situ bored piles 被引量:4
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作者 刘念武 张忠苗 +1 位作者 张乾青 房凯 《Journal of Central South University》 SCIE EI CAS 2013年第4期1071-1078,共8页
A series of well-designed full-scale destructive load tests were conducted on six bored piles to investigate the influence of loose debris at the pile tip on end resistance. The results show that soft debris below the... A series of well-designed full-scale destructive load tests were conducted on six bored piles to investigate the influence of loose debris at the pile tip on end resistance. The results show that soft debris below the pile tip will weaken the mobilization of end resistance. The ultimate tip resistance of post-grouted pile is 2.05 times that of the pile without post-grouting and the ultimate tip resistance in the second load cycle is 2.31 times that of pile in the first load cycle. The relationship between unit end resistance and displacement follows a linear model and a bilinear mode in the first load cycle and the second load cycle, respectively, whereas the unit end resistance-displacement response of post-grouted bored pile can be simulated using a bilinear mode. The critical end resistance ranges between 2 000 kN and 3 000 kN and the critical displacement ranges between 2.5 mm and 4.5 mm in the bilinear mode. As for piles rested on moderately-weathered peliticsiltstone, the socketed length has no effect on the end resistance because of the existence of loose debris. 展开更多
关键词 static load test SETTLEMENT POST-GROUTING end resistance socketed depth
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Nonlinear analysis of pile load-settlement behavior in layered soil
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作者 吕述晖 王奎华 +1 位作者 张鹏 C.J.LEO 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3615-3623,共9页
A simplified approach is presented to analyze the single pile settlement in multilayered soil. First, a fictitious soil-pile model is employed to consider the effect of layered soil beneath pile toe on pile settlement... A simplified approach is presented to analyze the single pile settlement in multilayered soil. First, a fictitious soil-pile model is employed to consider the effect of layered soil beneath pile toe on pile settlement behavior. Two approximation methods are proposed to simplify the nonlinear load transfer function and simulate the nonlinear compression of fictitious soil-pile, respectively. On this basis, an efficient program is developed. The procedures for determining the main parameters of mathematical model are discussed. Comparisons with two well-documented field experimental pile loading tests are conducted to verify the rationality of the present method. Further studies are also made to evaluate the practicability of the proposed approach when a soft substratum exists, and the results suggest that the proposed method can provide a constructive means for assessing the settlement of a single pile for use in engineering design. 展开更多
关键词 PILE load-settlement behavior fictitious soil-pile layered soil soft substratum SEDIMENT
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Consolidation analysis of composite foundation with partially penetrated cement fly-ash gravel(CFG) piles under changing permeable boundary conditions 被引量:3
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作者 邹新军 赵增明 徐洞斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4019-4026,共8页
Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the ... Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the underlying untreated stratum. Due to the changing permeability property of CFG piles, the whole consolidation process of the composite ground with CFG piles was divided into two stages, i.e., the early stage(permeable CFG pile bodies) and the later stage(impermeable pile bodies). Then, the consolidation equation of the composite foundation with CFG piles was established by using the Terzaghi one-dimensional consolidation theory. Consequently, the unified formula to calculate the excess pore water pressure was derived with the specific solutions for the consolidation degree of composite ground, reinforced area and underlying stratum under instant load obtained respectively. Finally, combined with a numerical example, influencing rules by main factors(including the replacement rate m, the treatment depth h1, the permeability coefficient Ks1, Kv2 and compression modulus Es1, Es2 of reinforced area and underlying stratum) on the consolidation property of composite ground with CFG piles were discussed in detail. The result shows that the consolidation velocity of underlying stratum is slower than that of the reinforced area. However, the consolidation velocity of underlying stratum is slow at first then fast as a result of the transferring of effective stress to the underlying stratum during the dissipating process of excess pore water pressure. 展开更多
关键词 composite ground CFG piles permeability double-layered foundation consolidation degree
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