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Challenging in frequent jacking force surge in rock pipe jacking project:A case study in Guanjingkou,China
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作者 Chao Li Zuliang Zhong +2 位作者 Xinrong Liu Yi Zhang Nanyun Wang 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第7期4559-4578,共20页
Previous studies have demonstrated that the surge in jacking force during the Guanjingkou project is caused by the contact conditions of the debris bentonite slurry outside the pipe.Therefore,this paper further system... Previous studies have demonstrated that the surge in jacking force during the Guanjingkou project is caused by the contact conditions of the debris bentonite slurry outside the pipe.Therefore,this paper further systematically investigates the influence of different debris slurry mass ratios(SLRs)and different particle size distributions(PSDs)on the pipe-rock friction characteristics using friction tests.The test results reveal that under the same PSD,an adequate amount of slurry(with an SLR of 1:4)consistently yields the lowest friction coefficient.When the SLR is between 1:2 and 1:3,the viscosity of the slurry reaches its peak,resulting in the highest friction coefficient.Additionally,when the PSD is 1:1:5 and 1:1:15,the friction coefficient is primarily governed by the plowing effect at the contact surface.When the PSD is 5:1:1 and 15:1:1,the friction coefficient is mainly controlled by the void ratio(VR)of debris.In the case of PSDs 1:5:1 and 1:15:1,the friction coefficient is jointly controlled by the adhesion effect of high-viscosity slurry and the plowing effect at the contact surface,and it gradually shifts towards being dominated by the VR as the amount of debris increases.Regardless of the SLRs and PSDs,the continuous deposition of debris and the injection of slurry incessantly exacerbate both the plowing and adhesion effects,creating a vicious cycle.This is the reason why the high-pressure water flushing method can not only fail to resolve the issue but also accelerate the occurrence of the surge in jacking force. 展开更多
关键词 Debris friction characteristic Friction test jacking force surge Mudcake Rock pipe jacking
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Application of ANSYS 3D FEM in Studies of Surface Deformation Caused by Pipe Jacking 被引量:10
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作者 LI Fabin FANG Kun LI Hechao 《Wuhan University Journal of Natural Sciences》 CAS 2007年第4期633-637,共5页
By using site observation data and establishing 3D model using ANSYS software, this paper has discussed the strain change of stratum stress during process of jacking-in and the impact of machine head on ground surface... By using site observation data and establishing 3D model using ANSYS software, this paper has discussed the strain change of stratum stress during process of jacking-in and the impact of machine head on ground surface under different frontal resistances. Analysis of the two cases shows that soil pressure reaches its maximum point when the soil is right above machine head, and soil stress will gradually decline when machine head passes over it. It also shows that impact brought by pipe-jacking construction on stress change of the surrounding soil is limited. The thesis suggest that road surface should be consolidated and soil condition be improved before construction to prevent loss and disaster caused by road surface deformation, jacking force can be increased so that jacking efficiency can be enhanced when ground stratum is well filled with soil, but the frontal resistance facing machine head should be equal to surrounding soil pressure in order to avoid rise of ground surface. 展开更多
关键词 trenchless technology pipe jacking finite element ground settlement
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Analytical solutions of vertical load on deep rectangular jacked pipe considering tunnelling-induced ground loss 被引量:2
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作者 LI Jian-ye FANG Qian +4 位作者 LIU Xiang WANG Gan HUANG Jun DU Jian-ming ZHANG Zi-yi 《Journal of Central South University》 2025年第5期1855-1872,共18页
Determining earth pressure on jacked pipes is essential for ensuring lining safety and calculating jacking force,especially for deep-buried pipes.To better reflect the soil arching effect resulting from the excavation... Determining earth pressure on jacked pipes is essential for ensuring lining safety and calculating jacking force,especially for deep-buried pipes.To better reflect the soil arching effect resulting from the excavation of rectangular jacked pipes and the distribution of the earth pressure on jacked pipes,we present an analytical solution for predicting the vertical earth pressure on deep-buried rectangular pipe jacking tunnels,incorporating the tunnelling-induced ground loss distribution.Our proposed analytical model consists of the upper multi-layer parabolic soil arch and the lower friction arch.The key parameters(i.e.,width and height of friction arch B and height of parabolic soil arch H 1)are determined according to the existing research,and an analytical solution for K l is derived based on the distribution characteristics of the principal stress rotation angle.With consideration for the transition effect of the mechanical characteristics of the parabolic arch zone,an analytical solution for soil load transfer is derived.The prediction results of our analytical solution are compared with tests and simulation results to validate the effectiveness of the proposed analytical solution.Finally,the effects of different parameters on the soil pressure are discussed. 展开更多
关键词 rectangular pipe jacking tunnel vertical load multi-layer parabolic soil arch model soil arching
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Behavior of Surrounding Soil during Construction and Its Countermeasures Using Pipe Jacking Method in Deep Strata 被引量:3
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作者 Takashi Senda Hideki Shimada +1 位作者 Takashi Sasaoka Kikuo Matsui 《Open Journal of Geology》 2013年第2期44-48,共5页
In Japan when urban infrastructures need to be constructed, the difficulty of utilizing the ground or shallow strata will lead to a more frequent use of the deep strata. The common construction methods are open-cut, p... In Japan when urban infrastructures need to be constructed, the difficulty of utilizing the ground or shallow strata will lead to a more frequent use of the deep strata. The common construction methods are open-cut, pipe jacking, and shield methods. In recent years, a new pipe jacking method has been established that can be adapted to 20 m below the ground or more. Using this method, the drivage machine and the jacking pipe continue to move an underground until the completion of the driving. Therefore an over-cutting area (so-called tail-void) must be formed to lower the friction between the ground and the pipe. The tail-void is filled with lubrications. However, because the stress release from the ground continues to advance when the tail-void is formed, hence there are some challenges required to cope with the stability of the surrounding ground. In order to utilize the pipe jacking method in the deeper strata layers, the theory, analysis and installation of tail-void have to be systemized, and such systematic data must be stored. Therefore, the conditions of tail-void in the deep pipe jacking method are discussed using numerical analyses. 展开更多
关键词 pipe jacking System DEEP STRATA Tail-Void
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Effect of Application of Pipe Roof Method by Using Pipe Jacking on Behavior of Surrounding Soil 被引量:4
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作者 Hideki Shimada Akihiro Hamanakal +2 位作者 Takashi Sasaoka Kikuo Matsui Toru Sato 《Journal of Physical Science and Application》 2013年第6期353-358,共6页
Tunnels in an urban area, in many cases, are constructed in soft ground which contains underground water, near existing facilities and structures. Structural stability for the tunnel and also the nearby structures and... Tunnels in an urban area, in many cases, are constructed in soft ground which contains underground water, near existing facilities and structures. Structural stability for the tunnel and also the nearby structures and facilities is vital in this kind of work. Slurry pipe jacking was firmly established as a special method for the non-disruptive construction of underground pipelines of sewage systems. This method utilizes mud slurry that is formed around the pipes in order to stabilize the surrounding soil. In the pipe roof method the tubing elements that are constructed by slurry pipe jacking are near each other longitudinally, and create a rigid and stable lining before the excavation of the main tunnel. This paper discusses 'the application of a slurry pipe jacking system on 'the pipe roof method by means of numerical analysis. Because of the rigid behavior of the lining, the results show little subsidence, making this method a reliable method of constructing large tunnels with small cover in an urban area. 展开更多
关键词 pipe roof method pipe jacking TUNNEL Urban area.
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Discussion on the Application of Pipe Jacking Construction Technology in Municipal Road Drainage Projects 被引量:1
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作者 Liang Liu Lizhao Zhao 《Journal of Architectural Research and Development》 2023年第6期29-35,共7页
In the construction of municipal road drainage projects,pipe jacking construction is a relatively common construction method.This construction technology can avoid a large amount of excavation work,improve drainage co... In the construction of municipal road drainage projects,pipe jacking construction is a relatively common construction method.This construction technology can avoid a large amount of excavation work,improve drainage construction efficiency,avoid large-scale damage to the road surface,and exert small traffic impact.Therefore,it is currently widely used in drainage construction,but judging from the current actual application situation,there are still many problems that require further improvement.This article mainly analyzes the advantages of and current technical problems in pipe jacking construction technology in detail,explores corresponding solutions,and lays a foundation for the optimization of municipal road drainage engineering construction. 展开更多
关键词 Municipal roads Drainage projects pipe jacking construction Advantages
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Long-Distance Pipe Jacking in Complex Urban Geological Environment 被引量:1
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作者 Yi Gong Yang Liu Qigao Li 《Journal of Architectural Research and Development》 2022年第1期7-12,共6页
A steel underground pipeline with a diameter of 2.4 m and a total length of 3,617 m(plate thickness of 26 mm)has been constructed in a city in central Hubei,and the engineering,procurement,and construction(EPC)project... A steel underground pipeline with a diameter of 2.4 m and a total length of 3,617 m(plate thickness of 26 mm)has been constructed in a city in central Hubei,and the engineering,procurement,and construction(EPC)project has been lifted from the upstream channel to supplement water to the downstream lake inside the city.Through preliminary geological survey data,site topographic and geomorphic survey,urban construction,as well as the requirements of the construction party,the preliminary arrangement of working wells and receiving wells as well as the selection and customization of pipe jacking machines have been proposed.Frequency conversion motor and remote monitoring technology are adopted for geotechnical change and long-distance pipe jacking.Through detailed survey,the rock and soil change section as well as gradual change conditions have been determined,the accuracy of construction mechanics calculation and construction operation control have improved,the basis and analysis basis are provided,and some experiences in construction operation are summarized. 展开更多
关键词 Long-distance pipe jacking Complex geology Urban area New technology
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Application Strategies of Pipe Jacking Technology in Municipal Rainwater Pipeline Engineering
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作者 Yao Tong Xiaoqing Hu +1 位作者 Yuwenhui Guo Minjun Gao 《Journal of Architectural Research and Development》 2024年第6期5-10,共6页
Traditional construction techniques have a significant impact on the environment and are associated with long construction durations in the construction of municipal rainwater pipelines.Pipe jacking technology,a new t... Traditional construction techniques have a significant impact on the environment and are associated with long construction durations in the construction of municipal rainwater pipelines.Pipe jacking technology,a new type of pipeline construction method,enables non-excavation construction and can address the shortcomings of traditional pipeline construction.This article analyzes the concept and application advantages of pipe jacking technology.Combining engineering examples,it explores the application strategies of pipe jacking technology in the construction process of municipal rainwater pipelines for reference. 展开更多
关键词 Municipal engineering Rainwater pipeline pipe jacking construction
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Brief Introduction of Shallow Soil Jacking Construction Method of Large Section Rectangular Pipe Jacking Machine
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作者 CHAIJianping 《外文科技期刊数据库(文摘版)工程技术》 2022年第3期065-069,共5页
The first permanent magnet driven rectangular pipe jacking machine independently developed in China is used for the construction of pedestrian passage in Banxuegang Science and Technology City area of Shenzhen. The re... The first permanent magnet driven rectangular pipe jacking machine independently developed in China is used for the construction of pedestrian passage in Banxuegang Science and Technology City area of Shenzhen. The rectangular pipe jacking machine occupies a small area during the initial excavation. It is suitable for shallow soil covering and short-distance excavation. It is more economical and applicable than shield machine and has high construction efficiency. During the construction process, technical measures such as attitude measurement and adjustment of pipe jacking machine, surrounding rock grouting and friction reduction can effectively ensure the smooth construction of pipe jacking machine, and provide reference for large section pipe jacking machine in shallow soil construction. 展开更多
关键词 large section rectangular pipe jacking machine shallow overburden construction method
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Effective Application of Pipe Jacking Construction Technology in Municipal Water Supply and Drainage Construction
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作者 ZHANGGongyu 《外文科技期刊数据库(文摘版)工程技术》 2022年第1期075-079,共5页
In the municipal engineering construction, with the promotion of mechanized construction mode and the increasingly mature and perfect construction technical conditions, the pipe jacking construction gradually develops... In the municipal engineering construction, with the promotion of mechanized construction mode and the increasingly mature and perfect construction technical conditions, the pipe jacking construction gradually develops and progresses in the exploration of construction. In the municipal water supply and drainage construction, we should pay more attention to the application of pipe jacking technology, strictly implement various construction plans, improve the construction effect of water supply and drainage, and give full play to the application value and advantages of pipe jacking technology, which is beneficial to the healthy and stable development of municipal construction in China. 展开更多
关键词 pipe jacking construction MUNICIPAL water supply and drainage
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Effect of soil set-up on the capacity of jacked concrete pipe piles in mixed soils 被引量:3
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作者 Jun-wei LIU Zhong-miao ZHANG Feng YU Cun-gang LIN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2011年第8期637-644,共8页
The increase in capacity of displacement piles with time after installation is typically known as soil/pile set-up. A full-scale field test is carried out to observe the set-up effect for open-ended concrete pipe pile... The increase in capacity of displacement piles with time after installation is typically known as soil/pile set-up. A full-scale field test is carried out to observe the set-up effect for open-ended concrete pipe piles jacked into mixed soils. Both the total capacity and the average unit shaft resistance increase approximately linearly with logarithmic time. The average increase rate for unit shaft resistance is 44% per log cycle, while the average increase for total capacity is approximately 21%. A review on case histories for long-term set-up indicates an average set-up rate of approximately 40%. Based on this, the mechanism of pile set-up is discussed in detail and a three-phase model is suggested. 展开更多
关键词 Concrete pipe pile jack piling SET-UP Pile capacity
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矩形顶管顶进过程中的背土效应
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作者 刘浩 金大龙 +2 位作者 袁大军 龚子邦 刘少华 《中南大学学报(自然科学版)》 北大核心 2026年第2期708-717,共10页
针对“背土效应”问题,本文提出了一种新的背土破坏判定方法。首先,结合实际工程中的沉降监测数据,确定受背土效应影响的土体范围,并将其沿顶进方向划定为左右两侧为向上延伸的梯形区域,前缘边界为圆弧形滑裂面;然后,基于四项合理假定,... 针对“背土效应”问题,本文提出了一种新的背土破坏判定方法。首先,结合实际工程中的沉降监测数据,确定受背土效应影响的土体范围,并将其沿顶进方向划定为左右两侧为向上延伸的梯形区域,前缘边界为圆弧形滑裂面;然后,基于四项合理假定,简化背土体模型,结合矩形顶管掘进过程中的三维背土破坏力学模型,推导出破坏判定公式;第三,通过实际工程算例,开展参数敏感性分析,揭示了背土效应与顶管顶进长度、埋置深度以及土体物理力学参数之间的相互关系,给出了发生临界破坏时的摩擦因数;最后,分析了在不同地质条件下,为防止背土破坏而需满足的最小覆土厚度要求。研究结果表明:管土临界摩擦因数随管节埋深、地层黏聚力以及内摩擦角增大而增大,随顶进长度增大而减小;背土破坏中存在“临界黏聚力”,当黏聚力大于12.5 kPa时,顶管最浅埋深随顶进距离增加而减小,当黏聚力小于12.5 kPa时,则呈相反规律;无黏聚力地层中,背土体的稳定性由内摩擦角与顶进长度共同控制,且最浅埋深对顶进距离高度敏感;当顶进距离超过20 m后,最浅埋深显著增大,需通过增大覆土厚度或有效降低管土摩擦力以避免整体背土破坏。 展开更多
关键词 矩形顶管 地表隆沉 背土效应 判定方法 最浅埋深
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超大直径双圆顶管施工对地下管线沉降变形的影响
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作者 于英霞 苗冰阳 +1 位作者 李文杰 唐刚 《长江科学院院报》 北大核心 2026年第2期130-139,147,共11页
为了探究超大直径双圆顶管施工对地下管线沉降变形的影响,以深圳市铁岗-石岩水库水质保障工程为依托,基于修正Peck公式,采用数值模拟和现场监测结合的方法,通过改变管线埋深、材质、管径、顶管净间距及管线空间位置,采用变量归一化方法... 为了探究超大直径双圆顶管施工对地下管线沉降变形的影响,以深圳市铁岗-石岩水库水质保障工程为依托,基于修正Peck公式,采用数值模拟和现场监测结合的方法,通过改变管线埋深、材质、管径、顶管净间距及管线空间位置,采用变量归一化方法分析各因素对管线影响程度,并评价其安全性能。结果表明:顶管选择垂直下穿较为合理,改变管线埋深、材质、管径参数时,位移场最终均呈现“V”形,当两顶管净间距增大至1.5倍顶管管径时,位移场开始呈现“W”形,管线变形范围增大。经过敏感度分析,对管线沉降变形影响最大的是两顶管净间距,最小的是管线管径,敏感度分别为0.54、0.06。通过转角允许值对污水管线安全性能进行评价,根据现场监测值计算得到污水管线接头转角0.54°,在控制标准范围内,保证双圆顶管施工过程中管线不会因不均匀沉降而被破坏。研究成果可为类似大直径顶管下穿管线工程提供参考。 展开更多
关键词 超大直径双圆顶管 下穿管线 沉降变形 敏感度分析 现场监测
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地铁站出入口下穿既有铁路顶管施工关键技术研究
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作者 李延超 姜安民 +4 位作者 王虎志 张升 张福天 肖佳 李涛 《山西建筑》 2026年第6期129-132,共4页
顶管施工是一种非开挖施工方法,施工优势明显,为降低下穿既有铁路顶管施工风险,对顶管施工关键技术展开研究。结合具体工程实例,对顶管施工机械进行选择,分析了泥水平衡顶管机及土压平衡顶管机的适用性;介绍了下穿既有铁路施工关键技术... 顶管施工是一种非开挖施工方法,施工优势明显,为降低下穿既有铁路顶管施工风险,对顶管施工关键技术展开研究。结合具体工程实例,对顶管施工机械进行选择,分析了泥水平衡顶管机及土压平衡顶管机的适用性;介绍了下穿既有铁路施工关键技术及施工工艺流程,并总结了土压平衡与管道推进精度控制、土体加固与监测预警的技术要点;对类似下穿既有铁路顶管施工具有重要的借鉴意义。 展开更多
关键词 地铁站 顶管施工 下穿铁路 监测系统
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软弱地层中顶管施工对既有城市桥梁的影响分析
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作者 朱坤 韦修箭 梁亚兰 《建筑机械》 2026年第2期300-305,共6页
为探究软弱地层中顶管施工对临近桥梁的扰动影响,建立桥梁-桩基-土层-顶管耦合有限元模型,综合考虑掘进、桩土接触面、土材料非线性参数的耦合效应,系统分析顶管掘进施工对周围土体、主梁、桩基的变形和受力影响规律。结果表明:顶管施... 为探究软弱地层中顶管施工对临近桥梁的扰动影响,建立桥梁-桩基-土层-顶管耦合有限元模型,综合考虑掘进、桩土接触面、土材料非线性参数的耦合效应,系统分析顶管掘进施工对周围土体、主梁、桩基的变形和受力影响规律。结果表明:顶管施工导致上部土体沉降,下部土体隆起,最大值出现在管顶和管底与土层交界处,两侧土体受到挤压作用;对主梁和桥墩的位移影响小,不会引起过大的附加内力;桩身的最大位移出现在与软弱土层交界处,桩身最大轴力、剪力、弯矩均出现在桩顶,最大应力出现在桩身中部单元;对主梁和桩基的影响均进行了验算,符合规范。为进一步增强施工安全性,提出了改进的顶管施工防护措施。 展开更多
关键词 顶管施工 软弱地层 有限元 城市桥梁 非线性分析
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联络通道顶管施工对接收端主隧道影响试验研究
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作者 刘小锋 李晓龙 +4 位作者 胡锦华 何况 于兴国 张文杰 陈影 《铁道科学与工程学报》 北大核心 2026年第3期1283-1297,共15页
为探明联络通道顶管施工对接收端主隧道结构力学响应的影响机理,依托郑州地铁联络通道顶管法施工工程,开展顶管掘进期间接收端主隧道应变响应现场试验,系统分析顶进全过程中衬砌环应变演变规律,阐明衬砌环内力分布特征与环间传力机制,... 为探明联络通道顶管施工对接收端主隧道结构力学响应的影响机理,依托郑州地铁联络通道顶管法施工工程,开展顶管掘进期间接收端主隧道应变响应现场试验,系统分析顶进全过程中衬砌环应变演变规律,阐明衬砌环内力分布特征与环间传力机制,识别危险工况及结构薄弱位置。研究结果表明:在预撑阶段,接收端主隧道环向应变增量呈“竖椭圆形”空间分布特征,且随着顶管机靠近,该分布形态逐渐增强;接收破洞完成后,各衬砌环的环向应变增量竖椭圆形分布程度有所减弱,其中半切削环270°位置处的应变响应最为显著,环向应变增量由破洞前的94.5×10^(-6)骤降至-147.0×10^(-6),纵向应变增量由-16.8×10^(-6)突增至55.0×10^(-6),该处为主隧道结构的薄弱位置。施工过程中,隧道环向所受扰动远大于纵向,且距离破洞中心越近的衬砌环受施工影响程度越大;应力重分布现象主要集中在被直接切削的衬砌环内,环间传力主要发生于切削环与半切削环之间,并集中于破洞侧,导致半切削环破洞侧内力显著增加。建议适当提高半切削环270°位置附近连接螺栓的预紧力,并对洞口周围的钢混复合管片接缝进行焊接,以提高洞口结构整体稳定性。研究结果不仅为后续类似工程的结构设计与加固决策提供了理论指导,也为深入理解联络通道顶管法施工对主隧道结构的影响提供了科学依据。 展开更多
关键词 联络通道 顶管法 主隧道 现场监测 力学响应
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软土地层双线顶管施工地表沉降预测模型
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作者 郭耀耀 周爱兆 +1 位作者 涂可诚 翁晓峰 《科学技术与工程》 北大核心 2026年第5期2121-2129,共9页
针对软土地层双线顶管施工中地表沉降形态演化机制不明确、传统Peck公式预测精度不足等问题,通过三维数值分析、理论解析与实例验证相结合的研究方法,探究了顶管埋深与间距耦合效应下的地表沉降槽形态演化规律,并建立地表沉降高精度预... 针对软土地层双线顶管施工中地表沉降形态演化机制不明确、传统Peck公式预测精度不足等问题,通过三维数值分析、理论解析与实例验证相结合的研究方法,探究了顶管埋深与间距耦合效应下的地表沉降槽形态演化规律,并建立地表沉降高精度预测模型。结果表明,随顶管间距增大或顶管埋深降低,地表沉降槽形态逐渐从V形向U形及W形演变。基于参数敏感性分析,提出形态系数K,通过K的取值判断沉降曲线的形状。针对传统Peck公式对双线顶管沉降预测精度的问题,引入沉降槽宽度修正系数与最大沉降修正系数,使V形与U形沉降曲线预测误差从70%降至5%以内;进一步增设隆起修正项,构建W形沉降曲线预测模型。经工程实例验证,该模型对浅埋顶管施工地表沉降曲线较好,研究成果为软土地区双线顶管施工沉降控制提供了理论依据与技术支撑。 展开更多
关键词 平行顶管 修正Peck公式 地表沉降曲线 软土地层
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考虑注浆作用的矩形顶管施工地表沉降机理研究
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作者 张广旭 刘慧 叶万军 《陕西理工大学学报(自然科学版)》 2026年第2期91-99,共9页
随着城市地下空间集约化开发中顶管技术的广泛应用,精准防控其诱发的地表沉降对保障地表设施安全至关重要,通过自主研发的模型试验装置与数值模拟相结合的方式,研究了矩形顶管施工地表沉降动态演化规律及土体扰动机制,揭示了注浆作用下... 随着城市地下空间集约化开发中顶管技术的广泛应用,精准防控其诱发的地表沉降对保障地表设施安全至关重要,通过自主研发的模型试验装置与数值模拟相结合的方式,研究了矩形顶管施工地表沉降动态演化规律及土体扰动机制,揭示了注浆作用下顶管施工引起的地表沉降机理。研究表明:顶管掘进全过程诱发的地表沉降规律呈现五阶段时序特征(初始沉降、微隆起、急剧沉降、注浆回弹及固结沉降);地表沉降最大值随着埋深增大呈现先减小后增大的趋势,存在最优埋深(约3.5H)可使地表沉降最小化;数值模拟揭示了土体扰动空间分异规律,顶管上方土体扰动呈沉降槽效应,顶管前方土体扰动区呈扇形分布;最后提出了浅埋需优化注浆压力与顶进速度匹配,深埋应强化二次注浆与超前加固的控制策略。 展开更多
关键词 顶管施工 地表沉降 注浆作用 模型试验 土体扰动
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复合地层下穿高速铁路矩形顶管盾构隧道开挖面稳定性研究
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作者 同庆 庄永香 +2 位作者 宁茂权 刘炳杰 崔光耀 《高速铁路技术》 2026年第1期99-104,117,共7页
为保证矩形顶管盾构隧道开挖面稳定,以某矩形顶管盾构隧道工程为背景,采用有限元软件Abaqus建立了复合地层下穿高速铁路矩形顶管盾构隧道模型,定义了无量纲参数支护应力差率(m)及硬岩比(n),分析了硬岩比、支护应力差率和埋深因子对复合... 为保证矩形顶管盾构隧道开挖面稳定,以某矩形顶管盾构隧道工程为背景,采用有限元软件Abaqus建立了复合地层下穿高速铁路矩形顶管盾构隧道模型,定义了无量纲参数支护应力差率(m)及硬岩比(n),分析了硬岩比、支护应力差率和埋深因子对复合地层矩形顶管盾构施工开挖面失稳范围、开挖面位移及轨道沉降的影响。结果表明,随着复合地层硬岩比的增加,矩形顶管盾构隧道开挖面在相同支护应力差率下失稳范围逐渐减小,失稳位移逐渐减小,轨道沉降逐渐减小;埋深因子越大,开挖面失稳位移越大,轨道沉降越大;当n<0.75时,高速铁路轨道沉降易大于沉降阈值,在穿越待建高速铁路线路时可采用桩板结构加固方案,在下穿既有高速铁路段采用人工挖孔桩+D型便梁加固方案来满足施工安全稳定要求。研究成果可为类似工程提供参考。 展开更多
关键词 隧道工程 矩形顶管盾构 复合地层 开挖面稳定性 近接施工
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砂质地层多管平行顶管扰动机制与控制对策研究
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作者 郭航 马鹏 +2 位作者 宋战平 赵旭涛 陈锐 《市政技术》 2026年第3期295-307,318,共14页
砂质地层多管平行顶进施工扰动机制复杂且缺乏针对性控制对策,已经成为顶管工程领域的难题。因此,依托陕西省渭南市排水主干道穿越G310国道四管平行顶进工程,采用现场监测、理论计算与有限元分析软件MIDAS GTS NX数值模拟相结合的方法,... 砂质地层多管平行顶进施工扰动机制复杂且缺乏针对性控制对策,已经成为顶管工程领域的难题。因此,依托陕西省渭南市排水主干道穿越G310国道四管平行顶进工程,采用现场监测、理论计算与有限元分析软件MIDAS GTS NX数值模拟相结合的方法,系统探究了顶进顺序、顶管净间距、开挖面压力和注浆压力对地表多维度变形的影响,验证了高压旋喷注浆加固的沉降控制效果。研究结果表明:考虑地表多维度变形控制,选择方案3顶进顺序控沉效果最优,地表沉降最小值为-7.50 mm,降幅达9.6%;在工程条件允许的情况下,应选择大于1.0倍的管间距以减小扰动效应;开挖面压力最优区间为0.2~0.5 MPa,注浆压力宜控制在0.01~0.06 MPa。在砂土沉降控制对策方面,采用高压旋喷注浆加固可使最大沉降值降低35.4%;在数值模拟与现场实测偏差方面,其偏差率≤4%,模型可靠性良好。该研究结果可为同类工程施工参数优化与变形控制提供理论参考。 展开更多
关键词 平行顶管 砂质地层 数值模拟 地表沉降 注浆加固
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