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Construction Technology and Safety Risk Control Measures of Deep Foundation Pit Excavation 被引量:1
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作者 Mingmin Jiang 《Journal of World Architecture》 2023年第2期24-29,共6页
Deep foundation pit excavation is a basic and key step involved in modern building construction.In order to ensure the construction quality and safety of deep foundation pits,this paper takes a project as an example t... Deep foundation pit excavation is a basic and key step involved in modern building construction.In order to ensure the construction quality and safety of deep foundation pits,this paper takes a project as an example to analyze deep foundation pit excavation technology,including the nature of this construction project,the main technical measures in the construction of deep foundation pit,and the analysis of the safety risk prevention and control measures.The purpose of this analysis is to provide scientific reference for the construction quality and safety of deep foundation pits. 展开更多
关键词 Construction engineering deep foundation pit excavation Construction technology Risk prevention and control measures
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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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Study on Deep Well Dewatering Optimization Design in Deep Foundation Pit and Engineering Application 被引量:6
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作者 Hu Chunlin Yang HuijunInstitute of Rock and Soil Engineering , Wuhan University of Technology , Wuhan 430070 《Journal of China University of Geosciences》 SCIE CSCD 2002年第1期78-82,共5页
Based on analyses of the theories of groundwater unsteady flow in deep well dewatering in the deep foundation pit, Theis equations are chosen to calculate and analyze the relationship between water level drawdown of c... Based on analyses of the theories of groundwater unsteady flow in deep well dewatering in the deep foundation pit, Theis equations are chosen to calculate and analyze the relationship between water level drawdown of confined aquifer and dewatering duration. In order to reduce engineering cost and diminish detrimental effect on ambient surrounding, optimization design target function based on the control of confined water drawdown and four restriction requisitions based on the control of safe water level, resistance to throwing up from the bottom of foundation pit, avoiding excessively great subsidence and unequal surface subsidence are proposed. A deep well dewatering project in the deep foundation pit is optimally designed. The calculated results including confined water level drawdown and surface subsidence are in close agreement with the measured results, and the optimization design can effectively control both surface subsidence outside foundation pit and unequal subsidence as a result of dewatering. 展开更多
关键词 deep foundation pit deep well dewatering DRAWDOWN surface subsidence optimization design.
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Calculation of foundation pit deformation caused by deep excavation considering influence of loading and unloading 被引量:10
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作者 黄明 刘新荣 +1 位作者 张乃烊 沈启炜 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2164-2171,共8页
A new analytical solution for ground surface settlement induced by deep excavation is proposed based on the elastic half space Melan’s solution,and the analytical model is related to the physical and mechanical prope... A new analytical solution for ground surface settlement induced by deep excavation is proposed based on the elastic half space Melan’s solution,and the analytical model is related to the physical and mechanical properties of soil with the loading and unloading action during excavation process.The change law of earth pressure of the normal consolidation soil after the foundation pit excavation was analyzed,and elastic displacement calculation methods of analytic solution were further established given the influence of excavation and unloading.According to the change of stress state in the excavation process of foundation pit,the planar mechanical analysis model of the foundation excavation problem was established.By combining this model with the physical equations and geometric equations of plane strain problem with consideration of the loading and unloading modulus of soil,constitutive equation of the plane strain problem was also established.The loading and unloading modulus formula was obtained by using the parameter calculation method in Duncan-Chang curve model.The constitutive equation obtained from the model was used to calculate the soil stress state of each point to determine its loading and unloading modulus.Finally,the foundation pit displacement change after excavation was calculated,and thus the soil pressure distribution after retaining structure deformation.The theoretical results calculated by making corresponding programs were applied to engineering practice.By comparing the conventional calculation results with monitoring results,the practicability and feasibility of the calculation model were verified,which should provide a theoretical basis for similar projects. 展开更多
关键词 深基坑开挖 变形计算 foundation 平面应变问题 surface loading 卸荷 NORMAL
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Optimization of dewatering schemes for a deep foundation pit near the Yangtze River, China 被引量:3
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作者 Yang You Changhong Yan +2 位作者 Baotian Xu Shi Liu Canhui Che 《Journal of Rock Mechanics and Geotechnical Engineering》 CSCD 2018年第3期555-566,共12页
A deep foundation pit constructed for an underground transportation hub was excavated near the Yangtze River. Among the strata, there are two confined aquifers, between which lies an aquiclude that is partially missin... A deep foundation pit constructed for an underground transportation hub was excavated near the Yangtze River. Among the strata, there are two confined aquifers, between which lies an aquiclude that is partially missing. To guarantee the safety of pit excavation, the piezometric head of the upper confined aquifer, where the pit bottom is located, should be 1 m below the pit bottom, while that of the lower confined aquifer should be dewatered down to a safe water level to avoid uplift problem. The Yangtze River levee is notably close to the pit, and its deformation caused by dewatering should be controlled. A pumping test was performed to obtain the hydraulic conductivity of the upper confined aquifer. The average value of the hydraulic conductivity obtained from analytical calculation is 20.45 m/d, which is larger than the values from numerical simulation(horizontal hydraulic conductivity K_H = 16 m/d and vertical hydraulic conductivity K_V = S m/d). The difference between K_H and K_V indicates the anisotropy of the aquifer. Two dewatering schemes were designed for the construction and simulated by the numerical models for comparison purposes. The results show that though the first scheme could meet the dewatering requirements, the largest accumulated settlement and differential settlement would be94.64 mm and 3.3‰, respectively, greatly exceeding the limited values. Meanwhile, the second scheme,in which the bottoms of the waterproof curtains in ramp B and the river side of ramp A are installed at a deeper elevation of-28 m above sea level, and 27 recharge wells are set along the levee, can control the deformation of the levee significantly. 展开更多
关键词 deep foundation pit Parameter calculation Dewatering schemes Numerical simulation
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Research of deformation prediction method of soft soil deep foundation pit 被引量:7
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作者 麻凤海 郑艳 杨帆 《Journal of Coal Science & Engineering(China)》 2008年第4期637-639,共3页
In view of the characteristics of soft soil deep foundation pit for the construction and geotechnical characteristics of the special medium,it is difficult to calculate theoreti- cally accurately structural deformatio... In view of the characteristics of soft soil deep foundation pit for the construction and geotechnical characteristics of the special medium,it is difficult to calculate theoreti- cally accurately structural deformation of the foundation pit,so in the course of excavation on the construction of the information is particularly important.The analysis and compari- son of several popular non-linear forecasting methods,combined with the actual projects, set up a grey theoretical prediction model,time series forecasting model,improved neural network model to predict deformation of the foundation pit.The results show that the use of neural network to predict with high accuracy solution,it is the foundation deformation prediction effective way in underground works with good prospects. 展开更多
关键词 基坑工程 神经元网络 变形预报 建筑工程
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Numerical simulation and land subsidence control for deep foundation pit dewatering of Longyang Road Station on Shanghai Metro Line 18 被引量:1
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作者 LI Wen-yong FU Li ZHU Zheng-feng 《Journal of Groundwater Science and Engineering》 2019年第2期133-144,共12页
In terms of controlling groundwater in deep foundation pit projects, the usual methods include increasing the curtain depth, reducing the amount of pumped groundwater, and implementing integrated control, in order to ... In terms of controlling groundwater in deep foundation pit projects, the usual methods include increasing the curtain depth, reducing the amount of pumped groundwater, and implementing integrated control, in order to reduce the drawdown and land subsidence outside pits. In dewatering design for confined water, factors including drawdown requirements, the thickness of aquifers, the depth of dewatering wells and the depth of cutoff curtains have to be considered comprehensively and numerical simulations are generally conducted for calculation and analysis. Longyang Road Station on Shanghai Metro Line 18 is taken as the case study subject in this paper, a groundwater seepage model is developed according to the on-site engineering geological conditions and hydrogeological conditions, the excavation depth of the foundation pit as well as the design depth of the enclosure, hydrogeological parameters are determined via the pumping test, and the foundation pit dewatering is simulated by means of the three-dimensional finite difference method, which produces numerical results that consistent with real monitoring data as to the groundwater table. Besides, the drawdown and the land subsidence both inside and outside the pit caused by foundation pit dewatering are calculated and analyzed for various curtain depths. This study reveals that the drawdown and the land subsidence change faster near the curtain with the increase in the curtain depth, and the gradient of drawdown and land subsidence changes dwindles beyond certain depths. In this project, the curtain depth of 47/49 m is adopted, and a drawdown-land subsidence verification test is completed given hanging curtains before the excavation. The result turns out that the real measurements basically match the calculation results from the numerical simulation, and by increasing the depth of curtains, the land subsidence resulting from dewatering is effectively controlled. 展开更多
关键词 deep foundation pit Engineering DEWATERING Numerical simulation GROUNDWATER Land SUBSIDENCE Verification test
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Numerical Simulation and Field Monitoring Analysis for Deep Foundation Pit Construction of Subway Station 被引量:1
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作者 Longyu Zhang Jiming Zhu 《Structural Durability & Health Monitoring》 EI 2022年第4期397-416,共20页
To investigate the effect of deep foundation pit excavation on the stability of retaining structure, a subway stationin the city of Jinan was selected as a project, and a FLAC3D-based three dimensional model was devel... To investigate the effect of deep foundation pit excavation on the stability of retaining structure, a subway stationin the city of Jinan was selected as a project, and a FLAC3D-based three dimensional model was developed fornumerical simulation. The horizontal displacement of the retaining structure, the axial force of the support, andthe vertical displacement of the column were studied and compared to the collected data from the field. The findingsindicate that when the foundation pit is excavated, the maximum deformation of the retaining structure progressivelydecreases from the top, the distortion of the retaining structure gradually rises, and the final maximumdeformation is around 17 meters deep. In each layer of support, the largest axial force support is located in thefirst reinforced concrete support;the uplift of the pit bottom caused by soil unloading plays a primary role in thevertical displacement of the column, and the column exhibits an upward trend under all construction conditions.When compared to the measured data, the generated findings are comparable and the fluctuation trend is extremelyconsistent. The findings of this article may give technical direction for the development of subway stationswith a comparable engineering basis. 展开更多
关键词 Subway station deep foundations pit numerical simulation field monitoring maximum horizontal displacement
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Co-Evolution Optimization of Anchored Row Piles for Deep Foundation Pit 被引量:3
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作者 周东 吴恒 +2 位作者 李陶声 韦日钰 陈秋莲 《Journal of China University of Mining and Technology》 2001年第2期123-131,共9页
The thinking of co evolution is applied to the optimization of retaining and protecting structure for deep foundation excavation, and the system of optimization of anchored row piles for deep foundation pit has been a... The thinking of co evolution is applied to the optimization of retaining and protecting structure for deep foundation excavation, and the system of optimization of anchored row piles for deep foundation pit has been already developed successfully. For the co evolution algorithm providing an evolutionary mechanism to simulate ever changing problem space, it is an optimization algorithm that has high performance, especially applying to the optimization of complicated system of retaining and protecting for deep foundation pit. It is shown by many engineering practices that the co evolution algorithm has obvious optimization effect, so it can be an important method of optimization of retaining and protecting for deep foundation pit. Here the authors discuss the co evolution model, object function, all kinds of constraint conditions and their disposal methods, and several key techniques of system realization. 展开更多
关键词 深基坑 支护技术 遗传算法 桩锚支护
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Accident Analysis and Emergency Response Effect Research of the Deep Foundation Pit in Taiyuan Metro
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作者 张晓双 封超 +1 位作者 韩云山 张军 《Journal of Donghua University(English Edition)》 EI CAS 2020年第3期199-206,共8页
Taking the deep foundation pit accident occurring at a station of metro Line 2 in Taiyuan as an example,the influence of the seepage and inrush of the foundation pit on the retaining structure and surrounding environm... Taking the deep foundation pit accident occurring at a station of metro Line 2 in Taiyuan as an example,the influence of the seepage and inrush of the foundation pit on the retaining structure and surrounding environment were studied under the geological conditions of the confined aquifer on the east coast of Fenhe River.The causes of deep foundation pit accident were also analyzed systematically based on the monitoring data,and various emergency measures were proposed to control the occurrence of secondary accident for deep foundation pit.The results showed that the occurrence of inrush for foundation pit was mainly caused by the insufficient dewatering.The development of the accident was effectively controlled by the adding of the dewatering wells,local grouting of retaining structure to stop seepage,surface grouting to reinforcement and uplift soil.The successful experience can provide some guidance to the construction of similar projects in the proposal. 展开更多
关键词 metro station deep foundation pit inrush SEEPAGE grouting reinforcement
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Deep Foundation Pit Excavations Adjacent to Disconnected Piled Rafts: A Review on Risk Control Practice
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作者 Bantayehu Uba Uge Yuancheng Guo 《Open Journal of Civil Engineering》 2020年第3期270-300,共31页
Foundation pit excavation engineering is an old subject full of decision making. Yet, it still deserves further research due to the associated high failure cost and the complexity of the geological conditions and/or t... Foundation pit excavation engineering is an old subject full of decision making. Yet, it still deserves further research due to the associated high failure cost and the complexity of the geological conditions and/or the surrounding existing infrastructure around it. This article overviews the risk control practice of foundation pit excavation projects in close proximity to <span style="font-family:Verdana;">existing</span><span style="font-family:Verdana;"> disconnected piled raft. More focus is given to geotechnical aspects. The review begins with achievements to ensure excavation performance </span><span style="font-family:Verdana;">requirements,</span><span style="font-family:Verdana;"> and follows to discuss the complex </span><span style="font-family:Verdana;">soil structure</span><span style="font-family:Verdana;"> interaction involved among the fundamental components</span><span style="font-family:Verdana;"><span style="font-family:Verdana;"><span style="font-family:Verdana;">: </span></span></span><span><span><span style="font-family:;" "=""><span style="font-family:Verdana;">the retaining wall, mat, piles, cushion, and the soil. After bringing consensus points to practicing engineers and </span><span style="font-family:Verdana;">decision makers</span><span style="font-family:Verdana;">, it then suggests possible future research directions.</span></span></span></span> 展开更多
关键词 deep foundation pit Excavation Disconnected Piled Raft foundation Risk Control Observational Method
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Design Technology for Bracing of Deep Foundation Pit
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《Electricity》 1997年第4期49-52,共4页
关键词 Design Technology for Bracing of deep foundation pit pit
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Elastic-plastic analysis for pile-anchor supporting system of deep foundation pit
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作者 JIN Yingyu BAI Yu 《Global Geology》 2009年第4期236-240,共5页
By using numerical analysis methods to simulate the deep excavation,a lot of analyses are established on the basis of two-dimensional plane strain,ignoring the fact that foundation pit possesses three dimensions. For ... By using numerical analysis methods to simulate the deep excavation,a lot of analyses are established on the basis of two-dimensional plane strain,ignoring the fact that foundation pit possesses three dimensions. For soil constitutive relation,people always take linear and nonlinear model,without considering the plastic behavior of soil. Using plastic-elastic hardening model to simulate constitutive relation of soil characteristics,the authors carried out mechanical analysis for pit excavation and support. The results show that the analysis for the stress state of pile anchor system is an effective way which provides theoretical basis for calculation of soil displacement. 展开更多
关键词 深基坑支护体系 弹塑性分析 弹性 桩锚 非线性模型 土壤特性 数值分析方法 应力状态分析
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Reliability Analysis for Retaining Pile in Foundation Pit Based on Bayesian Principle
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作者 Yousheng Deng Chengpu Peng +3 位作者 Jialin Su Lingtao Li Liqing Meng Long Li 《Computer Modeling in Engineering & Sciences》 SCIE EI 2022年第2期1135-1148,共14页
Moso bamboo has the advantages of high short-term strength and reproducibility,appropriating for temporary supporting structure of shallow foundation pit.According to the displacement of the pile top from an indoor mo... Moso bamboo has the advantages of high short-term strength and reproducibility,appropriating for temporary supporting structure of shallow foundation pit.According to the displacement of the pile top from an indoor model test,the reliability of the supporting effect of the moso bamboo pile was analyzed.First,the calculation formula of reliability index was deduced based on themean-value first-order second-moment(MVFOSM)method and probability theory under ultimate limit state and serviceability limit state.Then,the dimensionless bias factor(the ratio of the measured value to the calculated value)was introduced to normalize the displacement.The mathematical characteristics of the displacement were estimated and optimized based on Bayesian theory.Finally,taking 2.5 as the design reliability index,the effect of safety factor,tolerable limit displacement,and the ratio of the ultimate limit displacement to the tolerable on reliability index was analyzed.The results show that the safety level of the supporting pile can be increased by 1–2 levels when the safety factor increases by 0.5.When the coefficient of variation of tolerable limit displacement is less than 0.3,the safety factor can be 2–2.5.And the ratio of the ultimate limit displacement to the tolerable has a great influence on the reliability index,when the soil conditions is well,the ratio can be 1.2–1.3. 展开更多
关键词 Moso bamboo pile shallow foundation pit RELIABILITY sensitivity Bayesian theory
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FINITE ELEMENT NUMERICAL SIMULATION OF THREE-DIMENSIONAL SEEPAGE CONTROL FOR DEEP FOUNDATION PIT DEWATERING 被引量:42
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作者 LUO Zu-jiang ZHANG Ying-ying WU Yong-xia 《Journal of Hydrodynamics》 SCIE EI CSCD 2008年第5期596-602,共7页
For deep foundation pit dewatering in the Yangtze River Delta, it is easy to make a dramatic decrease of the underground water level surrounding the dewatering area and cause land subsidence and geologic disasters. In... For deep foundation pit dewatering in the Yangtze River Delta, it is easy to make a dramatic decrease of the underground water level surrounding the dewatering area and cause land subsidence and geologic disasters. In this work, a three-dimensional finite element simulation method was applied in the forth subway of Dongjiadu tunnel repair foundation pit dewatering in Shanghai. In order to control the decrease of the underground water level around the foundation pit, the foundation pit dewatering method was used to design the optimization project of dewatering ,which was simulated under these conditions that the aquifers deposited layer by layer, the bottom of the aquifers went deep to 144.45 m, the retaining wall of foundation pit shield went deep to 65 m, the filters of the extraction wells were located between 44 m to 59 m, the water level in the deep foundation pit was decreased by 34 m, and the maximum decrease of water level outside the foundation pit was 3 m. It is shown that the optimization project and the practical case are consistent with each other. Accordingly, the three-dimensional finite element numerical simulation is the basic theory of optimization design of engineering structures of dewatering in deep foundation pit in such areas. 展开更多
关键词 Yangtze River Delta land subsidence deep foundation pit dewatering seepage control
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Numerical Evaluation of Land Subsidence Induced by Dewatering in Deep Foundation Pit 被引量:1
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作者 张冬冬 宋春雨 陈龙珠 《Journal of Shanghai Jiaotong university(Science)》 EI 2013年第3期278-283,共6页
To predict the behavior of land subsidence due to groundwater withdrawal, a 3D numerical model is established. The model takes the confined aquifer and soft deposit of Ningbo into account. According to the pumping tes... To predict the behavior of land subsidence due to groundwater withdrawal, a 3D numerical model is established. The model takes the confined aquifer and soft deposit of Ningbo into account. According to the pumping test data, changing regulations of groundwater level, and land subsidence during dewatering are analyzed. Comparison between the calculated value and measured value shows that the 3D model simulates the measured value fairly well. The future behavior of land subsidence during dewatering period provides the scientific basis for the construction of deep foundation. 展开更多
关键词 地下水 基础 水质分析 基坑
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基于DeepSORT的深基坑作业工序智能识别研究
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作者 赵江平 张想卓 刘星星 《工业安全与环保》 2023年第10期34-38,共5页
为在深基坑施工时跟踪作业主体、识别施工进度,提出一种基于DeepSORT的作业工序智能识别方法。首先,采用DeepSORT模块,在分类动作之前赋予人员ID编号,丰富动作类别信息;其次,采用Yolov5实现人员目标检测;最后,利用迁移学习思想训练自定... 为在深基坑施工时跟踪作业主体、识别施工进度,提出一种基于DeepSORT的作业工序智能识别方法。首先,采用DeepSORT模块,在分类动作之前赋予人员ID编号,丰富动作类别信息;其次,采用Yolov5实现人员目标检测;最后,利用迁移学习思想训练自定义数据集,避免样本量较少带来的过拟合问题。结果表明,该方法可以在一定程度上跟踪前后帧作业行为,反映施工进程,且各动作的识别准确率达到了90%,该研究结果可以较好地运用在深基坑作业工序的识别中,进一步提高施工监管效率。 展开更多
关键词 深基坑施工 deepSORT SlowFast 工序识别
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软黏土地区深大基坑工程桩-连续墙体系空间变形效应 被引量:1
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作者 盛兴旺 林超 +3 位作者 郑纬奇 尹逊一 孙焕重 杨峰 《铁道科学与工程学报》 EI CAS CSCD 北大核心 2024年第2期591-601,共11页
土体开挖过程中深大基坑存在明显的空间变形效应,对其主体结构力学行为产生影响。以新建苏州南站枢纽深大基坑为工程背景,考虑地连墙厚度及工程桩的影响,基于ABAQUS建立三维空间有限元模型,采用修正剑桥模型考虑软黏土的应变硬化特征,... 土体开挖过程中深大基坑存在明显的空间变形效应,对其主体结构力学行为产生影响。以新建苏州南站枢纽深大基坑为工程背景,考虑地连墙厚度及工程桩的影响,基于ABAQUS建立三维空间有限元模型,采用修正剑桥模型考虑软黏土的应变硬化特征,从地连墙侧向位移、墙后地表沉降、工程桩和坑底土体隆起3个方面,研究软黏土地区深大基坑工程桩-连续墙体系的变形特征及空间效应。研究结果表明:深大基坑地连墙的侧向位移和地表沉降均呈现明显的角部效应,基坑A区(地连墙厚度1 m、桩径1 m)地连墙侧向位移角部效应的影响范围为1.05~1.71倍开挖深度,基坑B区(地连墙厚度0.8 m、桩径1.5 m)地连墙侧向位移角部效应的影响范围为0.91~1.48倍开挖深度;基坑A区、B区地表沉降角部效应的影响范围分别为1.24~2.10和1.77~2.47倍开挖深度;深大基坑空间变形角部效应与工程桩桩径及地连墙厚度有关,并且对基坑长边的影响效果大于短边。工程桩可有效增大基坑开挖面以下土体的刚度,减小地连墙的侧向位移;增大地连墙厚度可有效降低基坑的整体变形。基坑工程桩与坑底土体隆起总体呈现中间大、周边小的特征,工程桩周边土体受其约束,隆起较小;在一定范围内,工程桩对土体隆起抑制作用与其桩径呈正相关,与其桩间距呈负相关。软黏土地区深大基坑设计计算中需关注工程桩-连续墙结构体系的空间变形效应。 展开更多
关键词 深大基坑 软黏土地区 有限元 修正剑桥模型 空间变形效应
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深基坑支护理念演进和设计方法改进剖析 被引量:2
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作者 李连祥 侯颖雪 +2 位作者 陈天宇 邢宏侠 贾斌 《建筑结构》 北大核心 2024年第13期126-132,共7页
基于我国30多年建设实践,分析现有深基坑支护临时性理念、与主体结构相结合理念实施的优点和不足,提出促进基坑支护工程高质量发展的永久化理念。结合济南某基坑工程,阐释三个理念的逐次提升和相应支护结构的计算内容,定义适应与主体结... 基于我国30多年建设实践,分析现有深基坑支护临时性理念、与主体结构相结合理念实施的优点和不足,提出促进基坑支护工程高质量发展的永久化理念。结合济南某基坑工程,阐释三个理念的逐次提升和相应支护结构的计算内容,定义适应与主体结构相结合理念、永久化理念的结构岩土化、岩土结构化设计方法;重点分析土钉墙与抗浮锚杆相结合的复合土钉墙的设计,以及抗浮锚杆与外伸支撑、水平楼板永久支护结构中抗浮锚杆的力学性状与耐久性,分析了永久支护对于地下室外墙受力机制的影响,阐释深基坑支护理念演化方向和与之适应的设计改进内容。对于反思我国岩土与结构设计管理体制,促进基坑与基础设计理论和方法进步,推动“新发展理念”在基坑工程的实践具有导向价值。 展开更多
关键词 基坑工程 深基坑支护理念 结构岩土化 岩土结构化 永久支护结构 复合土钉墙
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深基坑岩土结构化永久支护理论与设计方法 被引量:1
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作者 李连祥 李胜群 +2 位作者 邢宏侠 侯颖雪 韩志霄 《建筑结构》 北大核心 2024年第13期133-140,共8页
基于对项目地下系统设计现状的深入剖析,指出岩土与结构专业分离造成基坑临时支护资源浪费、环境污染、碳排放增加等弊病,提出深基坑岩土结构化永久支护体系理论与设计方法。阐明了永久支护体系构件组成与构造过程,给出了永久支护体系... 基于对项目地下系统设计现状的深入剖析,指出岩土与结构专业分离造成基坑临时支护资源浪费、环境污染、碳排放增加等弊病,提出深基坑岩土结构化永久支护体系理论与设计方法。阐明了永久支护体系构件组成与构造过程,给出了永久支护体系承载能力极限状态和正常使用极限状态设计原则;明确了基坑开挖、构建和正常使用三个阶段的荷载组合和计算内容,建议了深、较深基坑划分界限及其永久支护结构分别适用的有限元法和弹性支点法;强调应进行支护构件的耐久性分析,证明了岩土结构化深基坑永久支护结构地下室外墙基本不承担土压力,改变了目前开挖阶段支护结构、使用阶段地下室外墙分别承担土压力即两倍建筑材料抵挡土压力的现状,显示了深基坑永久支护结构的工程价值及其推广的意义。 展开更多
关键词 深基坑 岩土结构化 永久支护结构 耐久性
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