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Advanced Sheet Pile Curtain Design: Case Study of Cotonou East Corniche
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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38-64,共27页
This paper delves into the critical aspects of sheet pile walls in civil engineering, highlighting their versatility in soil protection, retention, and waterproofing, all while emphasizing sustainability and efficient... This paper delves into the critical aspects of sheet pile walls in civil engineering, highlighting their versatility in soil protection, retention, and waterproofing, all while emphasizing sustainability and efficient construction practices. The paper explores two fundamental approaches to sheet pile design: limit equilibrium methods and numerical techniques, with a particular focus on finite element analysis. Utilizing the robust PLAXIS 2016 calculation code based on the finite element method and employing a simplified elastoplastic model (Mohr-Coulomb), this study meticulously models the interaction between sheet pile walls and surrounding soil. The research offers valuable insights into settlement and deformation patterns that adjacent buildings may experience during various construction phases. The central objective of this paper is to present the study’s findings and recommend potential mitigation measures for settlement effects on nearby structures. By unraveling the intricate interplay between sheet pile wall construction and neighboring buildings, the paper equips engineers and practitioners to make informed decisions that ensure the safety and integrity of the built environment. In the context of the Cotonou East Corniche development, the study addresses the limitations of existing software, such as RIDO, in predicting settlements and deformations affecting nearby buildings due to the substantial load supported by sheet pile walls. This information gap necessitates a comprehensive study to assess potential impacts on adjacent structures and propose suitable mitigation measures. The research underscores the intricate dynamics between sheet pile wall construction and its influence on the local environment. It emphasizes the critical importance of proactive engineering and vigilant monitoring in managing and mitigating potential hazards to nearby buildings. To mitigate these risks, the paper recommends measures such as deep foundations, ground improvement techniques, and retrofitting. The findings presented in this study contribute significantly to the field of civil engineering and offer invaluable insights into the multifaceted dynamics of construction-induced settlement. The study underscores the importance of continuous evaluation and coordination between construction teams and building owners to effectively manage the impacts of sheet pile wall construction on adjacent structures. 展开更多
关键词 sheet pile Walls and Structural Analysis Soil-Structure Interaction Modeling Structural Sustainability Cotonou East Corniche Sustainable Construction Plaxis Calculation Code Settlement Mitigation
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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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The Influence of Water-Jet Modification of Soil Conditions on Reduction of Vibrations during Sheet Pile Driving in the Subsoil 被引量:1
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作者 Artur Jaron Malgorzata Jastrzebska Marian Lupiezowiec 《World Journal of Engineering and Technology》 2018年第1期17-49,共33页
Vibratory driving is the most efficient method of sheet pile installation. The elimination or at least reduction of harmful consequences of sheet pile vibratory driving becomes an increasingly important and often the ... Vibratory driving is the most efficient method of sheet pile installation. The elimination or at least reduction of harmful consequences of sheet pile vibratory driving becomes an increasingly important and often the decisive factor in the selection of the excavation protection technology. In difficult soil conditions with strength soil parameters, pressure water jetting precedes sheet pile driving. This technique changes the soil properties, destroying its existing structure near the installed sheet pile. Unfortunately, the results and achievements of contractors using this technique are very often held confidential or simply remain in the records and it is difficult to find papers on this subject. This article features a detailed description of jet-assisted sheet pile driving, including a prefabrication description for the sheet pile toe used to jet water through, water pressure and quantity data and the results with regard to reduce vibrations and noise, as well as to the increase in sheet pile vibratory driving performance. 展开更多
关键词 sheet piles Vibratory sheet pile Driving Reduction of Vibrations
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Seismic Response Analysis of Portal Water Injection Sheet Pile
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作者 WANG Yuanbin GUO Haiyan ZHANG Chunhui 《Journal of Ocean University of China》 SCIE CAS 2007年第1期90-94,共5页
To further the study on the newly developed portal water injection sheet pile under static loads, in this paper, by adopting the nonlinear calculation module of FEM software ANSYS, a model for the interaction between ... To further the study on the newly developed portal water injection sheet pile under static loads, in this paper, by adopting the nonlinear calculation module of FEM software ANSYS, a model for the interaction between the soil and the sheet piles is set up, and the seismic response analysis for this type of space-retaining structure is performed. The effects of the embedded depth and the distance between the front pile and the back pile on the dynamic characteristics of the portal water injection sheet pile are studied. 展开更多
关键词 portal water injection sheet pile ANSYS software nonlinear finite element analysis dynamic interaction seismic response
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FEM for Stability Analysis Against Overturning of Portal Water Injection Sheet Pile 被引量:1
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作者 LIU Lingyun GUO Haiyan SUN Qi 《Journal of Ocean University of China》 SCIE CAS 2006年第3期269-272,共4页
Portal water injection sheet pile (PWISP), as a retaining wall, appeared in seashore engineering in 2000. Although there have been many systematic methods addressing the issue, there are very few focusing on the new s... Portal water injection sheet pile (PWISP), as a retaining wall, appeared in seashore engineering in 2000. Although there have been many systematic methods addressing the issue, there are very few focusing on the new structure because of the difficulties in defining the earth pressure between the two piles. A new method is proposed in this paper to obtain the earth pressure between the PWISPs. Stability analysis against overturning follows as a consequence. Using Finite Element Analysis (FEA) software ANSYS, both the nonlinear characteristics of the soil and those of the contact elements are taken into account to obtain the earth pressure distribution on the contact surface. Based on the results of the FEA, Rankin’s theory and the slip plane theory, the formula of the earth pressure on the inner surfaces between the piles is given. Assuming the PWISP as the analysis object and the earth pressure as an outside force acting upon it, the equation of stability against overturning of the PWISP is presented. Finally, some parameters are discussed about the stability of the PWISP against overturning, such as the embedded depth of the front pile, the distance between the two rows of piles, the internal friction angle and the cohesion of the earth. The results show that the increase of the cohesion and the internal friction angle will decrease the distance and the embedded depth, and therefore enhance the stability against overturning. Specifically, when the distance is 1/3-2/3 of the maximal excavation depth, the two rows of piles give the best performance in stability. 展开更多
关键词 稳定性 交互作用 压力 海水 有限元分析
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Evaluation of Unsaturated Layer Effect on Seismic Analysis of Unbraced Sheet Pile Wall
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作者 Mohammad Hossein Jahangir Hadis Soleymani Saeideh Sadeghi 《Open Journal of Marine Science》 2017年第2期300-316,共17页
This paper is built upon the previous developments on lateral earth pressure by providing a series of analytical expressions that may be used to evaluate vertical profiles of the effective stress and the corresponding... This paper is built upon the previous developments on lateral earth pressure by providing a series of analytical expressions that may be used to evaluate vertical profiles of the effective stress and the corresponding suction stress under steady-state flow conditions. Suction stress profile is modeled for one layer sand near the ground above the water level under hydrostatic conditions. By definition, the absolute magnitude of suction stress depends on both the magnitude of the effective stress parameter and matric suction itself. Thus, by developing the Rankine’s relations in seismic state, the composing method of active and passive surfaces in sides of unbraced sheet pile is examinated and the effects of soil parameter on those surfaces are evaluated by a similar process. The relations described the quantitative evaluation of lateral earth pressure on sheet pile and the effects of unsaturated layer on bending moment and embedded depth of sheet pile in soil. 展开更多
关键词 Unbraced sheet pile SUCTION STRESS Effective STRESS Parameter LATERAL Earth Pressure Embedded Depth
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Leachate Control Technology Using H-Jointed Steel Pipe Sheet Piles with H-H Joints at Coastal Landfills
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作者 S. Inazumi M. Kimura +1 位作者 Y. Nishiyama K. Kojima 《Journal of Environmental Science and Engineering》 2010年第11期65-70,共6页
关键词 关节损伤 控制技术 渗滤液 钢管板桩 沿海 垂直防渗墙 渗透系数 利用空间
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Improvement of Technological Solutions for Sheet Piling Walls Made of U-Shape Piles
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《Journal of Civil Engineering and Architecture》 2017年第4期335-341,共7页
关键词 板桩墙 工艺方案 u形 截面几何特性 长度单位 截面模量 联合工作 挡土墙
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Monitoring of the Corrosion on a Steel Sheet-Pile Marine Breakwater by Systematic Thickness Measurements
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作者 Luis Osmel Millan Solorzano 《Journal of Civil Engineering and Architecture》 2018年第1期39-50,共12页
关键词 腐蚀率 堆积 厚度 海洋 系统 哥斯达黎加 下变换器
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Monitoring of the Corrosion on a Steel Sheet-pile Marine Breakwater by Systematic Thickness Measurements
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作者 Millan Solorzano Luis Osmel Luis Osmel 《Journal of Civil Engineering and Architecture》 2022年第10期519-530,共12页
In Quepos,Pacific of Costa Rica,it was finished on 2010 the first phase of a marina,including two mix breakwaters,with rubble mound(rocks and concrete units),and 25 circular steel sheet piles cofferdam cells,filled wi... In Quepos,Pacific of Costa Rica,it was finished on 2010 the first phase of a marina,including two mix breakwaters,with rubble mound(rocks and concrete units),and 25 circular steel sheet piles cofferdam cells,filled with sand and gravel.The maintenance plan,considers tracking sheet pile corrosion,comparing'actual'against expected rates,checking structural limits,and programming countermeasures if accelerated corrosion is identified.Specific control sections,along the breakwaters,both inside and outside the basin,were established.In each section,thicknesses were measured every meter from the top of the steel cell to seabed using an ultrasonic equipment,and an underwater transducer.Both land crew,and divers for submerged portions,were used.The measurements campaigns are for several years from 2011 to 2016.Sectors of the breakwater with varied corrosion attack levels could be differentiated.Also,corrosion rates and lifespans were estimated,both general for the structures,and specific for each section and level.In turn,this allowed to identify maintenance priorities,defining sites where measures of corrosion protection should initiate,as well,to have confidence in the structural capacity and safety of the breakwaters. 展开更多
关键词 Monitoring of structures maritime works sheet piling CORROSION ultrasonic thickness measurements
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Discussion of Construction Related to Sheet-piled Wharf
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作者 WANG Yongyi 《International English Education Research》 2016年第5期52-54,共3页
关键词 码头施工 钢板桩 打桩方法 锚固结构 板桩码头 板桩墙 导向架 导梁
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Analysis of Soil arching effect for Blind sheet-pile wharf based on ABAQUS
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作者 LIU YaWei WANG LiJuan 《International English Education Research》 2016年第4期51-54,共4页
关键词 ABAQUS 板桩码头 土拱效应 工程实例 连接结构 平面应变 土壤性质 矩形截面
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重力式码头升级改造板桩墙后土压力分布
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作者 彭志豪 陈海燕 《水运工程》 2024年第4期37-41,共5页
针对重力式码头升级改造新建板桩墙方案板桩墙后土压力分布问题,开展新建板桩墙距已有重力式墙身不同距离的土压力分布规律研究。采用有限元数值模拟和理论公式计算对比分析,得出作用在前板桩墙上的土压力小于理论主动土压力,即存在贮... 针对重力式码头升级改造新建板桩墙方案板桩墙后土压力分布问题,开展新建板桩墙距已有重力式墙身不同距离的土压力分布规律研究。采用有限元数值模拟和理论公式计算对比分析,得出作用在前板桩墙上的土压力小于理论主动土压力,即存在贮仓效应的结论。建议重力式码头改造工程设置前板桩墙时,采用公式合理选取贮仓尺寸,或根据新建板桩墙距已有码头墙身的距离采用有限元计算作用在板桩墙上的土压力,避免保守或激进设计。 展开更多
关键词 重力式码头 升级改造 新建板桩墙 贮仓压力 土压力分布
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装配式海岸工程混凝土结构研究与应用进展
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作者 江佳斐 薛伟辰 余涛 《施工技术(中英文)》 CAS 2024年第6期9-13,共5页
码头和防波堤建筑物是典型的海岸工程混凝土结构。这类结构的下部结构构件多为预制,而上部结构构件多为现浇。针对3类典型装配式海岸工程混凝土结构(高桩码头、板桩码头、桩基透空式防波堤),系统介绍了其结构特点、典型节点与连接构造,... 码头和防波堤建筑物是典型的海岸工程混凝土结构。这类结构的下部结构构件多为预制,而上部结构构件多为现浇。针对3类典型装配式海岸工程混凝土结构(高桩码头、板桩码头、桩基透空式防波堤),系统介绍了其结构特点、典型节点与连接构造,总结分析了国内外有关这3类典型结构的力学性能、技术标准与工程应用的最新进展。最后,对今后装配式海岸工程混凝土结构的应用与研究前景进行了展望。 展开更多
关键词 海岸工程 装配式 预制混凝土 高桩 板桩 码头 透空式防波堤 力学性能
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板桩防波堤设计参数试验验证与规范对比研究
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作者 亢戈霖 陈汉宝 +1 位作者 刘海源 齐作达 《中国港湾建设》 2024年第6期28-33,共6页
板桩防波堤是一种对深厚软土地基有较高适应性的防波堤结构,目前国内外应用较少。以某海外板桩防波堤工程为例,采用不规则波对不同水深处的防波堤断面开展设计波浪要素断面试验,判断护底块石、沙垫层稳定性,测量模型越浪量和防波堤迎浪... 板桩防波堤是一种对深厚软土地基有较高适应性的防波堤结构,目前国内外应用较少。以某海外板桩防波堤工程为例,采用不规则波对不同水深处的防波堤断面开展设计波浪要素断面试验,判断护底块石、沙垫层稳定性,测量模型越浪量和防波堤迎浪侧所受波浪力分布,验证防波堤结构的安全性和合理性。最后将试验结果与国内外规范公式计算结果进行对比研究。结果表明,试验得到的波浪力及越浪结果偏于安全,防波堤设计高程合适;不同波浪状态下规范公式计算结果与试验值之间的差异不尽相同,进行具体工程设计时,需将规范公式计算与物理模型试验结合,力求设计参数合理,保证防波堤自身结构及掩护港区的安全性。 展开更多
关键词 软土地基 印度尼西亚 板桩防波堤 波浪力
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沱江特大桥钢板桩围堰及埋置式承台施工关键技术
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作者 万世成 刘颖 +2 位作者 胡航 孙才志 苏怀平 《施工技术(中英文)》 CAS 2024年第6期144-149,共6页
金简仁快速路沱江特大桥全长963m,主桥采用空间曲线独塔扭索面斜拉桥。桥址区域覆盖层为卵石薄层,下卧层为高强度中风化粉砂岩和砂质泥岩。主墩承台为大体积混凝土结构,埋置于河床面以下。为克服传统围堰在此类工程条件下的施工难题,提... 金简仁快速路沱江特大桥全长963m,主桥采用空间曲线独塔扭索面斜拉桥。桥址区域覆盖层为卵石薄层,下卧层为高强度中风化粉砂岩和砂质泥岩。主墩承台为大体积混凝土结构,埋置于河床面以下。为克服传统围堰在此类工程条件下的施工难题,提出“钢板桩+岩壁”新型组合围堰的解决方案。为确保钢板桩嵌岩深度>10m且垂直度偏差≤0.5%,采用“全护筒跟进引孔”工艺;同时,为确保围堰锚固稳定性和不透水性,采用“回填砂注浆止水”工艺。主墩承台施工过程中采取综合温控技术措施保证了大体积混凝土浇筑质量。监测结果表明,围堰变形、内支撑应力、混凝土温差等控制指标均在合理范围内,实现了特大型桥梁基础施工安全、效率与质量保障。 展开更多
关键词 桥梁工程 斜拉桥 钢板桩 围堰 承台 施工技术
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复杂环境中矩形顶管始发端地层加固方案优化研究与应用
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作者 梁宇 《建筑技术》 2024年第8期972-975,共4页
矩形顶管的始发阶段是矩形顶管施工中风险最高的施工阶段,在施工过程中,必须在始发前对始发端地层进行预加固处理。城市核心区域由于受到地面和地下建筑物、管线的影响,经常遇到加固盲区、加固不到位的问题。基于此,本研究总结提出了一... 矩形顶管的始发阶段是矩形顶管施工中风险最高的施工阶段,在施工过程中,必须在始发前对始发端地层进行预加固处理。城市核心区域由于受到地面和地下建筑物、管线的影响,经常遇到加固盲区、加固不到位的问题。基于此,本研究总结提出了一种旋喷桩加固结合钢板桩防护的施工方法,在始发基坑洞门处围护结构外侧,密贴围护结构打设钢板桩,结合旋喷加固、洞门凿除等工艺改进措施,有效降低始发端地层施工风险,保证工程自身和周边环境安全。 展开更多
关键词 复杂环境 矩形顶管 始发地层加固 旋喷桩 钢板桩
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框架梁与锚索桩板墙加固隧道洞口边坡的动力响应特性
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作者 冯海洲 蒋关鲁 +4 位作者 何梓雷 郭玉丰 何晓龙 刘先峰 胡金山 《中国铁道科学》 EI CAS CSCD 北大核心 2024年第2期134-145,共12页
针对山岭隧道洞口在降雨、地震等因素作用下易产生变形破坏的问题,以某处采用框架梁与锚索桩板墙支护的隧道洞口边坡工程为原型,开展几何比尺为1∶50的振动台模型试验,分析降雨后地震作用下边坡的动力响应特性及失稳变形规律。结果表明... 针对山岭隧道洞口在降雨、地震等因素作用下易产生变形破坏的问题,以某处采用框架梁与锚索桩板墙支护的隧道洞口边坡工程为原型,开展几何比尺为1∶50的振动台模型试验,分析降雨后地震作用下边坡的动力响应特性及失稳变形规律。结果表明:降雨后坡面无局部破坏,地震作用下边坡的破坏过程可归纳为坡顶张拉破坏—坡脚剪切溃裂—坡体整体失稳滑动,边坡表现为张拉—剪切型破坏;边坡峰值加速度放大系数呈层状分布,“高程效应”与“趋表效应”显著,均随输入正弦波频率、幅值的增加而增大;边坡土体峰值应变分布与坡体滑动破坏面较吻合;桩体锚索轴力与输入正弦波频率、幅值呈正相关,强震作用下锚索轴力增幅显著;桩后峰值土压力近似呈三角形分布,桩体嵌固段内桩土压力最大;桩体弯矩呈“b”型分布,嵌固段内桩体峰值弯矩最大,抗震设计中应注意验算其抗弯强度;桩后土压力与桩体加速度FFT谱幅值主要集中于低频段,结构动力响应主要受地震波低频段部分影响。 展开更多
关键词 隧道洞口边坡 框架梁 锚索桩板墙 降雨 地震 动力响应 振动台试验
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拉森钢板桩支护体系在大型机场项目液化深基坑中的应用 被引量:1
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作者 詹新彬 刘俊 +2 位作者 刘涛 吴年华 李安修 《建筑技术开发》 2024年第2期144-146,共3页
根据太原武宿国际机场三期改扩建工程项目设备共同沟区域深基坑施工需求及复杂地质环境条件,在小锁口拉森钢板桩应用的基础上,从液化深基坑支护体系的总体部署、设计参数及施工要点的角度系统总结了以拉森钢板桩为主,高压旋喷桩、卸土... 根据太原武宿国际机场三期改扩建工程项目设备共同沟区域深基坑施工需求及复杂地质环境条件,在小锁口拉森钢板桩应用的基础上,从液化深基坑支护体系的总体部署、设计参数及施工要点的角度系统总结了以拉森钢板桩为主,高压旋喷桩、卸土放坡为辅的创新支护体系的应用经验,在项目上取得了很好的效果,节省了材料和工期,有利于推进绿色施工,形成了良好的示范作用。 展开更多
关键词 液化地基 深基坑 支护体系 拉森钢板桩
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复杂地质条件下基坑支护设计—滇中引水何官营倒虹吸
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作者 梅德波 李春雁 陈忠润 《云南水力发电》 2024年第2期84-89,共6页
何官营倒虹吸全长1186 m,采用回填埋管形式,倒虹吸后段158 m长的管道置于饱和粉砂土层中,地下水位浅,地基存在地震液化问题,且该段线路途径东城村,周边部分房屋距离开挖基坑不足20 m,基坑开挖面临饱和粉砂土开挖边坡稳定,施工期地下水... 何官营倒虹吸全长1186 m,采用回填埋管形式,倒虹吸后段158 m长的管道置于饱和粉砂土层中,地下水位浅,地基存在地震液化问题,且该段线路途径东城村,周边部分房屋距离开挖基坑不足20 m,基坑开挖面临饱和粉砂土开挖边坡稳定,施工期地下水位下降,从而影响周边房屋地基稳定。为确保施工期基坑稳定和两侧房屋安全,设计将基坑防渗与支护相结合,经过方案比选后选用钢板桩支护形式。主要介绍了何官营倒虹吸钢板桩支护设计方案比选和结构结算成果。 展开更多
关键词 饱和粉砂土 基坑支护 钢板桩 防渗
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