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Thermal performance of cast-in-place piles with artificial ground freezing in permafrost regions
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作者 WANG Xinbin CHEN Kun +3 位作者 YU Qihao GUO Lei YOU Yanhui JIN Mingyang 《Journal of Mountain Science》 SCIE CSCD 2024年第4期1307-1328,共22页
During the construction of cast-in-place piles in warm permafrost,the heat carried by concrete and the cement hydration reaction can cause strong thermal disturbance to the surrounding permafrost.Since the bearing cap... During the construction of cast-in-place piles in warm permafrost,the heat carried by concrete and the cement hydration reaction can cause strong thermal disturbance to the surrounding permafrost.Since the bearing capacity of the pile is quite small before the full freeze-back,the quick refreezing of the native soils surrounding the cast-in-place pile has become the focus of the infrastructure construction in permafrost.To solve this problem,this paper innovatively puts forward the application of the artificial ground freezing(AGF)method at the end of the curing period of cast-in-place piles in permafrost.A field test on the AGF was conducted at the Beiluhe Observation and Research Station of Frozen Soil Engineering and Environment(34°51.2'N,92°56.4'E)in the Qinghai Tibet Plateau(QTP),and then a 3-D numerical model was established to investigate the thermal performance of piles using AGF under different engineering conditions.Additionally,the long-term thermal performance of piles after the completion of AGF under different conditions was estimated.Field experiment results demonstrate that AGF is an effective method to reduce the refreezing time of the soil surrounding the piles constructed in permafrost terrain,with the ability to reduce the pile-soil interface temperatures to below the natural ground temperature within 3 days.Numerical results further prove that AGF still has a good cooling effect even under unfavorable engineering conditions such as high pouring temperature,large pile diameter,and large pile length.Consequently,the application of this method is meaningful to save the subsequent latency time and solve the problem of thermal disturbance in pile construction in permafrost.The research results are highly relevant for the spread of AGF technology and the rapid building of pile foundations in permafrost. 展开更多
关键词 Permafrost engineering cast-in-place pile Artificial ground freezing Thermal performance.
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Refreezing of cast-in-place piles under various engineering conditions 被引量:9
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作者 Lei Guo QiHao Yu +2 位作者 XiaoNing Li XinBin Wang YongYu Yue 《Research in Cold and Arid Regions》 CSCD 2015年第4期376-383,共8页
In the construction of the Qinghai-Tibet Power Transmission Line (QTPTL), cast-in-place piles (CIPPs) are widely applied in areas with unfavorable geological conditions. The thermal regime around piles in permafro... In the construction of the Qinghai-Tibet Power Transmission Line (QTPTL), cast-in-place piles (CIPPs) are widely applied in areas with unfavorable geological conditions. The thermal regime around piles in permafrost regions greatly affects the stability of the towers as well as the operation of the QTPTL. The casting of piles will markedly affect the thermal regime of the surrounding permafrost because of the casting temperature and the hydration heat of cement. Based on the typical geological and engineering conditions along the QTPTL, thermal disturbance ofa CIPP to surrounding permafrost under different casting seasons, pile depths, and casting temperatures were simulated. The results show that the casting season (summer versus winter) can influence the refreezing process of CIPPs, within the first 6 m of pile depth. Sixty days after being cast, CIPPs greater than 6 m in depth can be frozen regardless of which season they were cast, and the foundation could be reffozen after a cold season. Comparing the refreezing characteristics of CIPPs cast in different seasons also showed that, without considering the ground surface conditions, warm seasons are more suitable for casting piles. With the increase of pile depth, the thermal effect of a CIPP on the surrounding soil mainly expands vertically, while the lateral heat disturbance changes little. Deeper, longer CIPPs have better stability. The casting temperature clearly affects the thermal disturbance, and the radius of the melting circle increases with rising casting temperature. The optimal casting temperature is between 2 ℃ and 9 ℃. 展开更多
关键词 cast-in-place pile hydration heat REFREEZING engineering factor PERMAFROST
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Field observation of the thermal disturbance and freezeback processes of cast-in-place pile foundations in warm permafrost regions
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作者 Xin Hou Ji Chen +4 位作者 YouQian Liu PengFei Rui JingYi Zhao ShouHong Zhang HaiMing Dang 《Research in Cold and Arid Regions》 CSCD 2023年第1期18-26,共9页
The bearing capacity of pile foundations is affected by the temperature of the frozen soil around pile foundations.The construction process and the hydration heat of cast-in-place(CIP)pile foundations affect the therm... The bearing capacity of pile foundations is affected by the temperature of the frozen soil around pile foundations.The construction process and the hydration heat of cast-in-place(CIP)pile foundations affect the thermal stability of permafrost.In this paper,temperature data from inside multiple CIP piles,borehole observations of ground thermal status adjacent to the foundations and local weather stations were monitored in warm permafrost regions to study the thermal influence process of CIP pile foundations.The following conclusions are drawn from the field observation data.(1)The early temperature change process of different CIP piles is different,and the differences gradually diminish over time.(2)The initial concrete temperature is linearly related with the air temperature,net radiation and wind speed within 1 h before the completion of concrete pouring;the contributions of the air temperature,net radiation,and wind speed to the initial concrete temperature are 51.9%,20.3%and 27.9%,respectively.(3)The outer boundary of the thermal disturbance annulus is approximately 2 m away from the pile center.It took more than 224 days for the soil around the CIP piles to return to the natural permafrost temperature at the study site. 展开更多
关键词 PERMAFROST cast-in-place pile foundations Thermal disturbance Freezeback process Initial concrete temperature
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Physical modeling of behaviors of cast-in-place concrete piled raft compared to free-standing pile group in sand 被引量:1
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作者 Mehdi Sharafkhah Issa Shooshpasha 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2018年第4期703-716,共14页
Similar to free-standing pile groups, piled raft foundations are conventionally designed in which the piles carry the total load of structure and the raft bearing capacity is not taken into account. Numerous studies i... Similar to free-standing pile groups, piled raft foundations are conventionally designed in which the piles carry the total load of structure and the raft bearing capacity is not taken into account. Numerous studies indicated that this method is too conservative. Only when the pile cap is elevated from the ground level,the raft bearing contribution can be neglected. In a piled raft foundation, pileesoileraft interaction is complicated. Although several numerical studies have been carried out to analyze the behaviors of piled raft foundations, very few experimental studies are reported in the literature. The available laboratory studies mainly focused on steel piles. The present study aims to compare the behaviors of piled raft foundations with free-standing pile groups in sand, using laboratory physical models. Cast-in-place concrete piles and concrete raft are used for the tests. The tests are conducted on single pile, single pile in pile group, unpiled raft, free-standing pile group and piled raft foundation. We examine the effects of the number of piles, the pile installation method and the interaction between different components of foundation. The results indicate that the ultimate bearing capacity of the piled raft foundation is considerably higher than that of the free-standing pile group with the same number of piles. With installation of the single pile in the group, the pile bearing capacity and stiffness increase. Installation of the piles beneath the raft decreases the bearing capacity of the raft. When the raft bearing capacity is not included in the design process, the allowable bearing capacity of the piled raft is underestimated by more than 200%. This deviation intensifies with increasing spacing of the piles. 展开更多
关键词 Free-standing pile group piled raft pileesoileraft interaction Physical modeling cast-in-place concrete piles
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Construction Technology of Deep Foundation Pit Support in Municipal Civil Engineering Foundation Construction
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作者 Jun Huang 《Journal of Architectural Research and Development》 2023年第5期20-26,共7页
Municipal civil engineering is the key content of municipal construction,and the construction scale is usually large.The quality of the project plays an important role in the development of urban economy.Due to the ra... Municipal civil engineering is the key content of municipal construction,and the construction scale is usually large.The quality of the project plays an important role in the development of urban economy.Due to the rapid increase of high-rise buildings,skyscrapers and underground buildings,the construction technology of deep foundation pit support has gradually become an indispensable construction technology.Therefore,the selection of foundation pit support construction technology is crucial in ensuring that whether the foundation is firm and stable,and whether the subsequent construction activities can be carried out smoothly.In view of this,the article discusses the application of deep foundation pit support construction technology in municipal civil engineering,aiming to provide reference for subsequent projects. 展开更多
关键词 Deep foundation pit support Civil engineering Foundation construction Concrete pouring pile technology Row pile support technology
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Field study of plastic tube cast-in-place concrete pile
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作者 陈永辉 曹德洪 +2 位作者 王新泉 杜海伟 张霆 《Journal of Central South University》 SCIE EI CAS 2008年第S2期195-202,共8页
The compositions, technical principles and construction equipments of a new piling method used for ground improvement plastic tube cast-in-place concrete pile were introduced. The results from static load tests on sin... The compositions, technical principles and construction equipments of a new piling method used for ground improvement plastic tube cast-in-place concrete pile were introduced. The results from static load tests on single piles with different forms of pile shoes and on their composite foundations were analyzed. The distribution patterns of axial force, shaft friction and toe resistance were studied based on the measurements taken from buried strain gauges. From the point of engineering application, the pile has merits in convenient quality control, high bearing capacity and reliable quality, showing higher reasonability, advancement and suitability than other ground improvement methods. The pile can be adopted properly to take place of ordinary ground improvement method, achieving greater economical and social benefits. 展开更多
关键词 PLASTIC tube cast-in-place concrete pile SOFT ground improvement pile-supported type reinforced EMBANKMENT CONSTRUCTION equipment CONSTRUCTION workmanship
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Innovative Techniques Unveiled in Advanced Sheet Pile Curtain Design
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作者 Peace Sèna Hounkpe Guy Oyéniran Adéoti +1 位作者 Patrick Oniakitan Mondoté Éric Adéchina Alamou 《Open Journal of Civil Engineering》 2024年第1期1-37,共37页
This thorough review explores the complexities of geotechnical engineering, emphasizing soil-structure interaction (SSI). The investigation centers on sheet pile design, examining two primary methodologies: Limit Equi... This thorough review explores the complexities of geotechnical engineering, emphasizing soil-structure interaction (SSI). The investigation centers on sheet pile design, examining two primary methodologies: Limit Equilibrium Methods (LEM) and Soil-Structure Interaction Methods (SSIM). While LEM methods, grounded in classical principles, provide valuable insights for preliminary design considerations, they may encounter limitations in addressing real-world complexities. In contrast, SSIM methods, including the SSI-SR approach, introduce precision and depth to the field. By employing numerical techniques such as Finite Element (FE) and Finite Difference (FD) analyses, these methods enable engineers to navigate the dynamics of soil-structure interaction. The exploration extends to SSI-FE, highlighting its essential role in civil engineering. By integrating Finite Element analysis with considerations for soil-structure interaction, the SSI-FE method offers a holistic understanding of how structures dynamically interact with their geotechnical environment. Throughout this exploration, the study dissects critical components governing SSIM methods, providing engineers with tools to navigate the intricate landscape of geotechnical design. The study acknowledges the significance of the Mohr-Coulomb constitutive model while recognizing its limitations, and guiding practitioners toward informed decision-making in geotechnical analyses. As the article concludes, it underscores the importance of continuous learning and innovation for the future of geotechnical engineering. With advancing technology and an evolving understanding of soil-structure interaction, the study remains committed to ensuring the safety, stability, and efficiency of geotechnical structures through cutting-edge design and analysis techniques. 展开更多
关键词 Sheet pile Curtain Design Soil-Structure Interaction Geotechnical engineering Advanced Design Techniques Finite Element Analysis Innovative Geotechnical Methods
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Influence of the penetration of adjacent X-section cast-in-place concrete(XCC)pile on the existing XCC pile in sand
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作者 Peng ZHOU Jianhui XU +3 位作者 Changjie XU Guangwei CAO Jie CUP Xuanming DING 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2024年第7期557-572,共16页
A series of small-scale 1g X-section cast-in-place concrete(XCC)pile-penetration model tests were conducted to study the effects of soil density and pile geometry on the lateral responses of an existing pile and the v... A series of small-scale 1g X-section cast-in-place concrete(XCC)pile-penetration model tests were conducted to study the effects of soil density and pile geometry on the lateral responses of an existing pile and the variations in surrounding soil stress.The results showed that the bending patterns of existing XCC piles varied with penetration depth.The lateral response of the existing pile was sensitive to the change in relative density and pile geometry.For example,the bending moment of the existing pile increased along with these parameters.The development of the radial stressσ′r/σ′v0 of the soil around an existing pile showed different trends at various depths during the penetration of the adjacent pile.Moreover,the change in radial stress during the penetration of the XCC pile did not exhibit the“h/R effect”that was observed in the free-field soil,due to the shielding effect of the existing piles.The peak value of radial stressσ′r_max/σ′v0 decreased exponentially as the radial distance r/R increased.The attenuation ofσ′r_max/σ′v0 with r/R in the loose sand was faster than in the medium-dense or dense sands.Theσ′r_max/σ′v0 at the same soil location increased with the cross-section geometry parameter. 展开更多
关键词 X-section cast-in-place concrete(XCC)pile Test PENETRATION SAND Lateral response Radial stress
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Application of dynamic analysis of strength reduction in the slope engineering under earthquake 被引量:2
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作者 Ye Hailin Zheng yingren +2 位作者 Huang Runqiu Li Anhong Du Xiuli 《Engineering Sciences》 EI 2010年第3期41-48,80,共9页
At present,the methods of analyzing the stability of slope under earthquake are not accurate and reasonable because of some limitations. Based on the real dynamic tensile-shear failure mechanism of slope,the paper pro... At present,the methods of analyzing the stability of slope under earthquake are not accurate and reasonable because of some limitations. Based on the real dynamic tensile-shear failure mechanism of slope,the paper proposes dynamic analysis of strength reduction FEM (finite element method) and takes the reduction of shear strength parameters and tensile strength parameters into consideration. And it comprehensively takes the transfixion of the failure surface,the non-convergence of calculation and mutation of displacement as the criterion of dynamic instability and failure of the slope. The strength reduction factor under limit state is regarded as the dynamic safety factor of the slope under earthquake effect and its advantages are introduced. Finally,the method is applied in the seismic design of anchors supporting and anti-slide pile supporting of the slope. Calculation examples show that the application of dynamic analysis of strength reduction is feasible in the seismic design of slope engineering,which can consider dynamic interaction of supporting structure and rock-soil mass. Owing to its preciseness and great advantages,it is a new method in the seismic design of slope supporting. 展开更多
关键词 边坡工程 地震作用 应用 强度折减系数 抗震设计规范 有限元方法 拉伸剪切 动力相互作用
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Applications of Ultrasonic Detection Technology in Bridge Concrete Pile Foundation Detection
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作者 Wei Fu 《Journal of World Architecture》 2023年第6期45-50,共6页
In this paper,the application strategy of ultrasonic detection technology in the detection of concrete foundation piles is analyzed using a construction project as an example.It includes a basic overview of the projec... In this paper,the application strategy of ultrasonic detection technology in the detection of concrete foundation piles is analyzed using a construction project as an example.It includes a basic overview of the project,an overview of ultrasonic testing technology in bridge concrete pile foundation testing,and an analysis of its practical application in the concrete pile foundation testing of this project.The objective of this analysis is to provide some reference for the application of ultrasonic testing technology and the improvement of the quality of bridge concrete pile foundation testing. 展开更多
关键词 Bridge engineering Concrete pile foundation Ultrasonic detection technology Ultrasonic detection principle
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串珠状溶洞数量影响灌注桩顶部水平受拉特性试验研究 被引量:3
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作者 周德泉 海军 +7 位作者 刘宏利 高祁 刘海龙 桂海麒 孙卫勇 谢瑞庭 朱沁 周毅 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期67-78,共12页
采用室内模型试验,对比研究串珠状溶洞数量对灌注桩顶部水平受拉特性的影响,为岩溶强发育区嵌岩桩的水平承载力设计提供试验依据.结果表明:1)桩顶水平荷载相同时,上部土层段桩身水平位移、桩身弯矩(峰值)、桩侧土抗力随溶洞数量的增多... 采用室内模型试验,对比研究串珠状溶洞数量对灌注桩顶部水平受拉特性的影响,为岩溶强发育区嵌岩桩的水平承载力设计提供试验依据.结果表明:1)桩顶水平荷载相同时,上部土层段桩身水平位移、桩身弯矩(峰值)、桩侧土抗力随溶洞数量的增多而增大,单桩水平承载力随溶洞数量增多而明显减弱.2)上部土层段桩身水平位移随桩顶水平荷载增大而增大,桩顶水平位移最大,嵌岩段很小甚至为0;弯矩M-深度z曲线整体呈抛物线形,桩身弯矩在土岩界面和上层溶洞与底板界面呈现2个峰值,弯矩的变化仅仅影响到上层溶洞及其底板,第2层溶洞及其以下的弯矩几乎为0,土岩界面弯矩最大、截面最危险;土抗力p-深度z曲线呈“凸肚”形.3)溶洞数量增加,位置越高,p-y曲线越容易收敛,可以采用p/pub=α(y/y50)β拟合土层段的桩身p-y曲线.溶洞数量对α与β值变化幅度的影响较小,α与β值变化幅度体现p-y曲线随深度变化的敏感度,两者敏感度随溶洞数量增多而增大.4)工程桩刺穿串珠状溶洞时,为了提高单桩水平抗拉能力,建议采用注浆法改善上部岩土性质,加大土岩界面处桩身配筋率,并将桩身嵌入上层溶洞底板一定深度,防止基桩在土岩界面处发生弯曲破坏. 展开更多
关键词 桩基工程 岩溶 水平受荷 P-Y曲线 模型试验
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碳化复合桩(MCP)原理与应用试验研究
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作者 刘松玉 王亮 +4 位作者 刘宜昭 杜广印 蔡光华 孙鹤 单彦贤 《岩土工程学报》 EI CAS CSCD 北大核心 2024年第7期1359-1367,共9页
介绍了一种基于MgO碳化固化软弱土技术的碳化复合桩(MCP),通过透气管桩向MgO搅拌桩注入CO_(2)气体进行碳化形成新型复合桩。进行了室内模型试验,通过对碳化过程和碳化后的温度、物理、力学等特性的分析,论证了该技术在粉土和淤泥质土中... 介绍了一种基于MgO碳化固化软弱土技术的碳化复合桩(MCP),通过透气管桩向MgO搅拌桩注入CO_(2)气体进行碳化形成新型复合桩。进行了室内模型试验,通过对碳化过程和碳化后的温度、物理、力学等特性的分析,论证了该技术在粉土和淤泥质土中的适应性,结果表明,在MgO充分水化的条件下,不同深度的碳化反应较为均匀;在透气管桩外围存在有效碳化距离和最大碳化距离,在有效碳化距离内可获取良好的碳化效果,揭示了MCP的形成机理与影响因素。在室内试验基础上开展了现场应用试验,结果表明,MCP施工工艺方便、成桩效果好且桩身强度均匀,碳化桩体标贯击数均值为39;其单桩竖向极限承载力为1920 kN,相对于PHC管桩提升37%。室内与现场试验表明,MCP复合桩兼具固碳与加固效果,对岩土工程低碳化发展具有重要意义。 展开更多
关键词 碳化复合桩 氧化镁 碳化距离 现场试验 工程特性
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考虑纵径向热应变的竖向受荷能量桩简化分析方法
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作者 江杰 陈朝棋 +1 位作者 欧孝夺 陈秋怡 《工程力学》 EI CSCD 北大核心 2024年第7期121-133,共13页
为探究温度对能量桩荷载传递机理及相关力学响应的影响,引入平面瞬态温度场方程,将温度场与应力场解耦。基于平面应力模型,将能量桩与桩周土考虑为具有协调变形的整体,计算了径向热应力。在此基础上,将其与双曲线荷载传递模型结合,对桩... 为探究温度对能量桩荷载传递机理及相关力学响应的影响,引入平面瞬态温度场方程,将温度场与应力场解耦。基于平面应力模型,将能量桩与桩周土考虑为具有协调变形的整体,计算了径向热应力。在此基础上,将其与双曲线荷载传递模型结合,对桩土界面处的极限摩阻力进行修正。将纵向热应变考虑在竖向荷载传递方程中,得到可同时衡量纵向和径向热效应的竖向受荷能量桩承载特性分析方法。利用增量法对能量桩荷载传递控制方程进行求解,得到桩身轴力、桩侧阻力、桩身位移等相关力学响应。通过与既有文献进行对比,验证了该模型的合理性。通过参数分析,研究了温度和竖向力作用下能量桩的荷载传递特性。结果表明:温度会改变能量桩的荷载传递特性,提高能量桩的运行温度可小幅增加其承载力。该文方法的计算流程清晰,可为能量桩的设计提供参考。 展开更多
关键词 桩基工程 能量桩 荷载传递法 力学响应 径向热应力
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黄土区楔形桩-网复合地基承载特性
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作者 邓友生 陈茁 +3 位作者 杨明辉 吴阿龙 庄子颖 董晨辉 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第4期775-784,共10页
[目的]针对黄土地区中楔形桩-网复合地基的承载性能进行探究.[方法]开展以几何相似常数为第一基本量、重度相似常数为第二基本量的土工模型试验,研究了不同受荷区域基桩承载能力,并通过有限元计算方法进一步分析其承载特性.比较模型试... [目的]针对黄土地区中楔形桩-网复合地基的承载性能进行探究.[方法]开展以几何相似常数为第一基本量、重度相似常数为第二基本量的土工模型试验,研究了不同受荷区域基桩承载能力,并通过有限元计算方法进一步分析其承载特性.比较模型试验结果与有限元计算结果,揭示了黄土区楔形桩-网复合地基的荷载沉降、桩身轴力、侧摩阻力、桩土应力比及荷载分担比等分布与变化规律.[结果]复合地基沉降变化总体趋于均匀,荷载-沉降曲线为缓变型;不同受荷区域基桩的桩身轴力、侧摩阻力呈现明显差异性;楔形桩-土相互作用与荷载和深度呈现正相关关系,但存在一定上限;复合地基中楔形桩随荷载增大能有效分散桩身应力,并将荷载由桩体向桩周土传递、由地基中心向外围扩散.[结论]楔形桩-网复合地基表现出良好的承载能力,直接受荷区桩能更高效地发挥楔形桩承载特性,楔形桩在复合地基中很好地实现桩-网-土协同作用. 展开更多
关键词 路基工程 楔形桩 桩网复合地基 模型试验 有限元 承载特性
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液化场地大直径变截面单桩动力响应研究
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作者 冯忠居 段久琴 +3 位作者 张聪 林立华 赵瑞欣 王逸然 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第5期56-67,共12页
为研究不同地震动强度下液化场地大直径变截面单桩的动力响应规律,基于振动台试验,选取5010波,在地震动强度0.10g~0.45g作用下,研究液化场地砂土孔压比和大直径变截面单桩桩顶水平位移、桩身弯矩、桩身加速度时程响应及桩基损伤等变化规... 为研究不同地震动强度下液化场地大直径变截面单桩的动力响应规律,基于振动台试验,选取5010波,在地震动强度0.10g~0.45g作用下,研究液化场地砂土孔压比和大直径变截面单桩桩顶水平位移、桩身弯矩、桩身加速度时程响应及桩基损伤等变化规律.试验结果表明:饱和砂土孔压比随着地震动强度的增大上升明显,地震动强度≥0.30g时,饱和砂土孔压比稳定值在0.9附近,此时砂土完全液化;在0.45g地震动强度作用下,桩身加速度、桩顶水平位移及桩身弯矩均达到最大;桩身不同位置处加速度峰值出现时刻均滞后于输入地震波加速度峰值出现时刻,且桩顶及变截面的加速度响应比桩端的响应更弱;不同地震动强度作用下,桩身弯矩最大值均出现在液化土层和非液化土层分界处,且变截面处弯矩小于土层分界面处;地震动强度达到0.30g时,大直径变截面单桩桩身发生损伤.因此,液化场地下大直径变截面桥梁单桩基础抗震设计时,应该重点考虑饱和砂土层分界处、变截面处的抗弯能力,以确保单桩桩身强度满足抗震要求. 展开更多
关键词 岩土工程 变截面单桩 液化场地 动力响应 振动台试验 抗震设计
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震陷土层变化下变截面单、群桩动力响应差异
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作者 冯忠居 王伟 +3 位作者 张聪 朱继新 王逸然 孟莹莹 《上海交通大学学报》 EI CAS CSCD 北大核心 2024年第7期1086-1096,共11页
为研究地震动作用下震陷土层厚度不同时大直径变截面单桩与群桩基础的动力响应差异,依托厦门第二东通道翔安大桥,通过振动台模型试验,开展震陷土层厚度30、40、50 cm时,单桩与群桩基础桩周土震陷量、桩顶水平位移、桩身加速度及弯矩动... 为研究地震动作用下震陷土层厚度不同时大直径变截面单桩与群桩基础的动力响应差异,依托厦门第二东通道翔安大桥,通过振动台模型试验,开展震陷土层厚度30、40、50 cm时,单桩与群桩基础桩周土震陷量、桩顶水平位移、桩身加速度及弯矩动力响应差异研究.结果表明:随着震陷层厚度增大,单桩与群桩基础桩周土震陷量、桩顶水平位移、桩身加速度及弯矩均逐渐增大,且加速度及弯矩在变截面处突变;同一震陷层厚度下,群桩基础桩周土震陷量较单桩大,但群桩基础加速度、桩顶水平位移及桩身弯矩均小于单桩.震陷场地桩基础设计时,应着重考虑变截面单桩与群桩动力响应差异,保证桩基础抗震性能. 展开更多
关键词 桥梁工程 大直径变截面桩 震陷土层 振动台试验 动力响应差异
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不同溶洞处治措施对桩基承载特性的影响研究
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作者 冯忠居 徐博熙 +2 位作者 陈慧芸 夏承明 蔡杰 《建筑科学与工程学报》 CAS 北大核心 2024年第4期151-158,共8页
为探究不同溶洞处治措施对岩溶发育区桩基承载特性的影响,通过有限元软件建立溶洞-桩-岩土体耦合作用模型,对比分析溶洞高度变化情况下,2种不同的溶洞处治措施(回填法和钢护筒跟进法)对桩基承载特性的影响。结果表明:随着溶洞高度增加,... 为探究不同溶洞处治措施对岩溶发育区桩基承载特性的影响,通过有限元软件建立溶洞-桩-岩土体耦合作用模型,对比分析溶洞高度变化情况下,2种不同的溶洞处治措施(回填法和钢护筒跟进法)对桩基承载特性的影响。结果表明:随着溶洞高度增加,2种处治措施下桩基竖向承载力都呈降低趋势;溶洞高度小于10 m时,不同处治措施对桩基竖向承载力影响可忽略,溶洞高度大于10 m则需考虑处治措施对桩基竖向承载力的影响;在回填法处治的溶洞范围内,桩身轴力降幅较大,桩侧摩阻力增加显著,在钢护筒跟进法处治的溶洞中桩身轴力与桩侧摩阻力则基本不变;与钢护筒跟进法相比,回填法更有利于发挥桩侧摩阻力;溶洞高度增加时,2种处治措施下桩侧摩阻力比重均逐渐减小,桩端阻力比重逐渐增大,达到桩基极限承载力时,回填法处治后的溶洞较钢护筒跟进法桩端阻力占整体比例更小。 展开更多
关键词 岩土工程 岩溶区 桩基 竖向承载特性 回填法 钢护筒跟进法
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西安湿陷性黄土地区狭长深基坑变形分析
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作者 梅源 张苗苗 +1 位作者 周东波 张焱 《重庆交通大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第7期17-25,共9页
为了探究西安地铁车站深基坑开挖过程中桩体侧移、地表沉降等时空演变规律,以西安地区某地铁车站深基坑为工程背景,同时收集了该地区2#、3#、4#线20个狭长基坑的实测数据,并对其进行统计分析。结果表明:地铁基坑围护结构最大侧移δhm=0.... 为了探究西安地铁车站深基坑开挖过程中桩体侧移、地表沉降等时空演变规律,以西安地区某地铁车站深基坑为工程背景,同时收集了该地区2#、3#、4#线20个狭长基坑的实测数据,并对其进行统计分析。结果表明:地铁基坑围护结构最大侧移δhm=0.04%H~0.10%H(H为开挖深度),平均值为0.06%H,最大侧移位置深度为0.7H;地表最大沉降值δvm=0.036%H~0.116%H,主要影响区在1.4H范围以内;高斯函数模型可以预测西安地区的地表沉降,其影响范围为3.5H;在特定范围内,提高支护桩的刚度和插入比可以有效控制基坑变形。研究结果可为西安市其他地铁车站基坑支护结构的设计与施工提供借鉴。 展开更多
关键词 岩土工程 铁道工程 地铁车站深基坑 桩体变形 基坑变形 沉降预测 统计分析
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就地固化联合复合地基对堆载邻近桩基的影响
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作者 丰土根 高文 +1 位作者 张箭 和宇珑 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第2期715-729,共15页
路桥并线路基修筑引起既有桥桩产生挠曲、侧向位移,严重时可能会造成重大坍塌事故的发生。结合工程现场试验,针对道路施工对邻近桥桩影响问题提出就地固化联合复合地基加固新方法,联合数值模型分析就地固化深度、固化土弹性模量和复合... 路桥并线路基修筑引起既有桥桩产生挠曲、侧向位移,严重时可能会造成重大坍塌事故的发生。结合工程现场试验,针对道路施工对邻近桥桩影响问题提出就地固化联合复合地基加固新方法,联合数值模型分析就地固化深度、固化土弹性模量和复合地基相关因素对邻近桩基的保护效果。研究结果表明:搅拌桩加固影响深度为1.5倍桩长左右,素混凝土桩施工会对被动桩在0.75倍桩长左右处产生最大水平位移。就地固化(2.0 m)+水泥搅拌桩法(1.8 m)可极大减小被动桩浅层水平位移,保护桥桩的安全。当固化土水泥掺量为5%~7%、水泥搅拌桩水泥掺量为12%~18%时,提高水泥掺量对减小被动桩水平位移有着明显的作用。同时,将普通褥垫层水泥搅拌桩替换为就地固化+水泥搅拌桩复合地基,桩身最大负弯矩减小近16.6%。 展开更多
关键词 软基处理 工程试验 数值模拟 复合地基 就地固化 被动桩
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隧道穿越岩堆体围岩剪切特性及分级
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作者 陈志敏 张赓旺 李宁 《科学技术与工程》 北大核心 2024年第20期8640-8647,共8页
为解决隧道穿越岩堆体围岩分级不准确的问题,通过相似材料直剪试验分析岩堆体的直剪特性,将含水率和填充土含量两个因素带入熵权可拓物元法,并结合地质指标进行分级研究。结果表明岩堆体的抗剪强度随着含水率、填充土含量的增大,先增大... 为解决隧道穿越岩堆体围岩分级不准确的问题,通过相似材料直剪试验分析岩堆体的直剪特性,将含水率和填充土含量两个因素带入熵权可拓物元法,并结合地质指标进行分级研究。结果表明岩堆体的抗剪强度随着含水率、填充土含量的增大,先增大后减小,最终趋于平稳,过高或过低的含水率和填充土都会“弱化”岩堆体的抗剪强度。根据岩堆体的特点,选取岩石单轴饱和抗压强度、节理裂隙密度、岩体完整性系数、含水率和填充土含量作为分级指标,结合熵权可拓物元法,将所选指标和熵权可拓物元法结合并在工程实例进行验证,分级结果比原方法准确性更好,证明研究提出的围岩分级方法是合理可行的。研究结果能够为岩堆体隧道的围岩分级提供指导,为施工设计和支护方式提供依据。 展开更多
关键词 隧道工程 围岩分级 熵权可拓物元 直剪试验 围岩稳定性 岩堆
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