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悬浮能量桩-筏基础的热-力学特性数值模拟 被引量:1
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作者 杨涛 陈洋 孔纲强 《深圳大学学报(理工版)》 CAS CSCD 北大核心 2022年第1期67-74,共8页
针对温度荷载与力学荷载共同作用下砂土地基中的悬浮能量桩-筏基础,建立热-力学响应分析的三维非线性有限元数值模型,研究能量群桩效应、桩间土的温度变化以及能量桩数量和布设方式对桩身附加轴向应力和桩头差异沉降的影响.结果表明,升... 针对温度荷载与力学荷载共同作用下砂土地基中的悬浮能量桩-筏基础,建立热-力学响应分析的三维非线性有限元数值模型,研究能量群桩效应、桩间土的温度变化以及能量桩数量和布设方式对桩身附加轴向应力和桩头差异沉降的影响.结果表明,升温荷载作用下,能量群桩内部任意一个桩的桩身附加轴向压应力比单桩作为能量桩时要小得多;在部分能量桩-筏基础中,能量桩的附加压应力沿桩长呈抛物线分布,数值随能量桩数量的增加而减小;非能量桩的附加轴向应力沿桩长呈S形分布,非能量角桩和边桩的上部出现附加拉应力,数值随能量桩数量的增加而增大;能量桩的布设方式对能量桩附加轴向应力有较大影响,但对非能量桩附加轴向应力的影响较小;能量桩非对称布设时桩头间的差异沉降较大,桩周围土的温度取决于其周围能量桩的数量. 展开更多
关键词 岩土工程 能量 桩-筏基础 效应 -力学特性 数值模拟
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不规则平面桩-筏基础优化的一种简化方法
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作者 党星海 杜永峰 +3 位作者 狄生奎 李文娟 赵世伟 李华文 《甘肃工业大学学报》 北大核心 2002年第3期94-97,共4页
基于桩 筏基础荷载传递的局部化特性 ,提出了一种简化分析方法 ,即采用悬臂梁比拟筏板与柱周围各桩之间的联系 ,进行桩顶沉降计算 ,再用差分法计算筏板弯矩 .建立了同时考虑桩的弹性支承性质和桩间土参与共同工作的不规则桩 筏基础优... 基于桩 筏基础荷载传递的局部化特性 ,提出了一种简化分析方法 ,即采用悬臂梁比拟筏板与柱周围各桩之间的联系 ,进行桩顶沉降计算 ,再用差分法计算筏板弯矩 .建立了同时考虑桩的弹性支承性质和桩间土参与共同工作的不规则桩 筏基础优化设计数学模型 ,并采用变容差主动约束可行方向法对一实际工程进行优化设计 . 展开更多
关键词 不规则平面桩-筏基础 优化设计 基础 基础 相互作用 数学模型 高层建筑
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流速对桩-筏基础中能量桩换热效率与热力耦合特性影响研究 被引量:3
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作者 李任融 孔纲强 +1 位作者 杨庆 孙广超 《岩土力学》 EI CAS CSCD 北大核心 2020年第S01期264-270,298,共8页
能量桩是一种承担上部建筑荷载并传递浅层地温能的新型桩基技术,其换热效率和附加温度应力是该技术的两个关键性科学问题。已有的研究主要针对单根能量桩的热力耦合特性,对于桩-筏基础中能量桩的研究相对较少。基于桩-筏基础,开展不同... 能量桩是一种承担上部建筑荷载并传递浅层地温能的新型桩基技术,其换热效率和附加温度应力是该技术的两个关键性科学问题。已有的研究主要针对单根能量桩的热力耦合特性,对于桩-筏基础中能量桩的研究相对较少。基于桩-筏基础,开展不同换热液流速下单根3U型埋管能量桩换热效率和热力耦合特性现场试验,在实测制冷工况下研究能量桩桩体温度与应力、筏板温度与变形的变化规律,探讨入口流速的影响规律。研究结果表明,文中试验条件和制冷工况下能量桩在0.8、0.4、0.2 m/s三种流速下的换热效率分别为75.0、82.5、63.8 W/m;能量桩受筏板约束影响,在桩顶处产生最大约束拉应力,约为38.9 kPa,筏板下侧产生的最大约束拉应力约为47.2 kPa;随着流速逐渐降低,桩体温度小幅回升,桩身约束拉应力值减小;短期制冷工况对筏板温度的影响可忽略不计。 展开更多
关键词 桩-筏基础 能量 流速 换热效率 热力耦合 现场试验
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桩-筏基础中能量桩热-力耦合特性现场试验 被引量:4
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作者 陆晨凯 孔纲强 +2 位作者 孙广超 陈斌 殷高翔 《岩土力学》 EI CAS CSCD 北大核心 2019年第9期3569-3575,共7页
能量桩兼具承担上部荷载和传递浅层地温能双重功能,能量桩的换热与承载特性逐渐成为广大工程技术人员关注的重点问题。然而,针对桩-筏基础中能量桩的热-力耦合特性的现场实测资料仍相对较少。提出将桩基完整性检测中的声测管底端连接贯... 能量桩兼具承担上部荷载和传递浅层地温能双重功能,能量桩的换热与承载特性逐渐成为广大工程技术人员关注的重点问题。然而,针对桩-筏基础中能量桩的热-力耦合特性的现场实测资料仍相对较少。提出将桩基完整性检测中的声测管底端连接贯通,作为能量桩的换热管,形成新型能量桩埋管形式;在桩-筏基础中能量桩运行状态下,开展桩-筏基础热力响应特性、能量桩对筏板应力影响的现场试验,实测获得桩身温度、桩身应力及筏板应力变化规律。研究结果表明,该试验条件下,能量桩(1U埋管、有效深度为12.8 m、桩顶埋深为5.5 m)的换热效率约为80~90 W/m;无上部荷载、能量桩加热状态下,筏板上边缘呈现出一定的拉应力,值得工程技术人员关注。 展开更多
关键词 桩-筏基础 能量 热力耦合 换热效率 现场试验
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桩-筏复合基础的非线性分析与设计
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作者 李丽 韩江水 《西安科技学院学报》 北大核心 2003年第4期394-396,403,共4页
在当前的工程实践中,对复合桩基的处理是按上部荷载全部由桩传到地基中去来对待的,认为承台只起连接桩顶和传递上部荷载的作用。但实际上,上部荷载是由桩、承台和地基三者共同承担的。因此,应用有限元和无限元相结合的方法,对桩筏复合... 在当前的工程实践中,对复合桩基的处理是按上部荷载全部由桩传到地基中去来对待的,认为承台只起连接桩顶和传递上部荷载的作用。但实际上,上部荷载是由桩、承台和地基三者共同承担的。因此,应用有限元和无限元相结合的方法,对桩筏复合基础进行非线性分析,进一步揭示复合桩基的工作原理具有实际意义和理论价值。将按单桩极限承载力设计复合桩基的新方法运用于工程实例的结果表明,复合桩设计新方法具有明显的优越性。 展开更多
关键词 -复合基础 有限元 无限元 非线性分析 设计 复合
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桩-土-筏片体系的数值与半数值三维非线性分析模型 被引量:2
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作者 王文 顾晓鲁 《土木工程学报》 EI CSCD 北大核心 1998年第3期30-40,共11页
本文首次建立了一个分析桩-土-筏片体系共同作用的三维非线性有限元、棱柱元综合计算模型.主要特点是:1.引入“广义位移”概念以减少基本未知量的数目;2.由实验e-p曲线直接反映土壤的非线性性质;3.对分层分片的复杂地质条件,任意布柱形... 本文首次建立了一个分析桩-土-筏片体系共同作用的三维非线性有限元、棱柱元综合计算模型.主要特点是:1.引入“广义位移”概念以减少基本未知量的数目;2.由实验e-p曲线直接反映土壤的非线性性质;3.对分层分片的复杂地质条件,任意布柱形式均方便适用;4.建立无界元以考虑远场土的影响;5.用中厚板、深梁理论建立筏片刚度矩阵;6.利用分块迭代法对Winkler地基板的解进行逐步修正,以逼近桩-土地基板的真解;7.可在指定位移条件下求解,以研究与邻近建筑沉降差的影响. 展开更多
关键词 --基础 共同作用 三维非线性 弹性力学
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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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Settlement calculation for long-short composite piled raft foundation 被引量:4
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作者 赵明华 张玲 杨明辉 《Journal of Central South University of Technology》 EI 2006年第6期749-754,共6页
The mechanism of long-short composite piled raft foundation was discussed. Assuming the relationship between shear stress and shear strain of the surrounding soil was elasto-plastic, shear displacement method was empl... The mechanism of long-short composite piled raft foundation was discussed. Assuming the relationship between shear stress and shear strain of the surrounding soil was elasto-plastic, shear displacement method was employed to establish the different explicit relational equations between the load and the displacement at the top of pile in either elastic or elasto-plastic period. Then Mylonakis & Gazetas model was introduced to simulate the interaction between two piles or between piles and soil. Considering the effect of cushion, the flexible coefficients of interaction were provided, With the addition of a relevant program, the settlement calculation for long-short composite piled raft foundation was developed which could be used to account for the interaction of piles, soil and cushion. Finally, the calculation method was used to analyze an engineering example. The calculated value of settlement is 10.2 ram, which is close to the observed value 8.8 mm. 展开更多
关键词 long-short composite oiled raft foundation shear displacement method SETTLEMENT Mylonakis Gazetas model
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3D finite elements analysis of vertically loaded composite piled raft 被引量:9
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作者 Reza Ziaie Moayed Ehsan Izadi Mehrad Mirsepahi 《Journal of Central South University》 SCIE EI CAS 2013年第6期1713-1723,共11页
In recent years,a new type of foundation named composite piled raft foundation (also called long short composite piled raft) has been developed.Where designing shallow foundations would mean unacceptable settlement,or... In recent years,a new type of foundation named composite piled raft foundation (also called long short composite piled raft) has been developed.Where designing shallow foundations would mean unacceptable settlement,or other environmental risks exist which could impair the structure in the future,composite piled raft foundations could be used.Finite element method was applied to study the behavior of this type of foundation subjected to vertical loading.In order to determine an optimal pile arrangement pattern which yields the minimum settlement,various pile arrangements under different vertical stress levels were investigated.Results show that with increasing the vertical stress on the raft,the effectiveness of the arrangements of short and long piles become more visible.In addition,a new factor named "composite piled raft efficiency" (CPRE) has been defined which determines the efficiency of long short piles arrangement in a composite piled raft foundation.This factor will increase when short piles take more axial stresses and long piles take less axial stresses.In addition,it is found that the changes in settlements for different long short piles arrangement are in a well agreement with changes in values of CPRE ratio.Thus,CPRE ratio can be used as a factor to determine the efficiency of piles arrangements in composite piled raft foundation from the view point of reducing raft settlements. 展开更多
关键词 composite piled raft SETTLEMENT composite piled raft efficiency long-short pile arrangement CUSHION
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Spring constitutive model of rigid pile composite foundation and application in design of raft foundation 被引量:1
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作者 韩小雷 肖成安 +1 位作者 李稼轩 冯杰强 《Journal of Central South University》 SCIE EI CAS 2013年第4期1079-1084,共6页
The simplified analysis method based on the static equilibrium is generally adopted for raft design. The secondary stress of superstructure due to the differential settlement of the foundation is neglected, which lead... The simplified analysis method based on the static equilibrium is generally adopted for raft design. The secondary stress of superstructure due to the differential settlement of the foundation is neglected, which leads to larger support moments and longitudinal bending of raft compared with real values. The spring constitutive relation of composite foundation is obtained by the flat plate loading tests in Karst region. The interaction between the spring and the raft is equivalent to the interaction between the composite foundation and the raft. The model for superstructure-raft-composite foundation interaction analysis is thus established and the raft is designed. This method not only considers the nonlinear properties of composite foundation but also analyzes the influence of superstructure on bending moment and deformation of raft. Compared with the inverted floor method, the calculated values of moment become more reasonable and uneven settlements are considered. This can be references to the design of raft foundation in similar regions. 展开更多
关键词 spring constitutive relation composite foundation RAFT INTERACTION
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