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Three-dimensional displacement characteristics of adjacent pile induced by shield tunneling under influence of multiple factors 被引量:16
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作者 HUANG Kan SUN Yi-wei +3 位作者 YANG Jun-sheng LI Yu-jian JIANG Meng HUANG Xian-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1597-1615,共19页
Shield tunneling inevitably passes through a large number of pile foundations in urban areas.Thus,an accurate assessment of tunneling-induced pile displacement and potential damage becomes a critical part of shield co... Shield tunneling inevitably passes through a large number of pile foundations in urban areas.Thus,an accurate assessment of tunneling-induced pile displacement and potential damage becomes a critical part of shield construction.This study presents a mechanism research of pile-soil-tunnel interaction through Pasternak-based two-stage analysis method.In the first stage,based on Mindlin’s solution,the soil displacement fields induced by shield thrust force,cutterhead frictions,shield shell frictions and grouting pressure are derived.The analytical solution of threedimensional soil displacement field is established by introducing Pinto’s three-dimensional volume loss formula,which solves the problems that shield construction factors are not taken into account in Loganathan’s formula and only twodimensional soil displacement field can be obtained.In the second stage,based on Pasternak’s two-parameter foundation model,the analytical solution of pile displacement induced by shield tunneling in layered soil is derived.A case was found in the project of interval tunnels from Wanjiali Square to Furong District Government of Changsha Metro Line 5,where the shield tunnels were constructed near viaduct piles.The reliability of the analytical solution proposed in this study is verified by comparing with the field measured data and the results of finite element method(FEM).In addition,the comparisons of longitudinal,horizontal and vertical displacements of soil and pile foundation analyzed by the analytical solution and FEM provide corresponding theoretical basis,which has significant engineering guidance for similar projects. 展开更多
关键词 shield tunnel adjacent pile Mindlin solution Pasternak foundation three-dimensional analytical solution
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Influence of water-rich tunnel by shield tunneling on existing bridge pile foundation in layered soils 被引量:12
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作者 HUANG Kan SUN Yi-wei +3 位作者 ZHOU De-quan LI Yu-jian JIANG Meng HUANG Xian-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2574-2588,共15页
At present,shield tunneling often needs to pass through a large number of bridge pile foundations.However,there are few studies on the influence of shield tunneling on adjacent pile foundations by combining with groun... At present,shield tunneling often needs to pass through a large number of bridge pile foundations.However,there are few studies on the influence of shield tunneling on adjacent pile foundations by combining with groundwater seepage.Based on Winkler model,the calculation equations of shield tunneling on vertical and horizontal displacement of adjacent bridge pile are derived.Meanwhile,full and part three-dimensional finite element models are established to analyze the trend of bridge pier settlement,ground surface settlement trough,vertical and horizontal displacement of the pile and pile stress under three calculation conditions,i.e.,not considering groundwater effect,considering stable groundwater effect and fluid-soil interaction.The results show that the calculated value is small when the effect of groundwater is not considered;the seepage velocity of the soil above the excavation face is faster than that of the surrounding soil under fluid-soil interaction,and after the shield passing,the groundwater on both sides shows a flow trend of“U”shape on the ground surface supplying to the upper part of the tunnel;the vertical displacement of the pile body is bounded by the horizontal position of the top of the tunnel,the upper pile body settles,and the lower pile body deforms upward.The horizontal displacement of pile body presents a continuous“S”shape distribution,causing stress concentration near the tunnel.The calculated results of fluid-soil interaction are in good agreement with the field measured data and accord with the actual situation. 展开更多
关键词 shield tunnel bridge pile foundation Winkler model fluid-soil interaction numerical analysis
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Energy saving analysis of segment positioning in shield tunneling machine considering assembling path optimization 被引量:4
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作者 施虎 龚国芳 +1 位作者 杨华勇 梅雪松 《Journal of Central South University》 SCIE EI CAS 2014年第12期4526-4536,共11页
A motion parameter optimization method based on the objective of minimizing the total energy consumption in segment positioning was proposed for segment erector of shield tunneling machine. The segment positioning pro... A motion parameter optimization method based on the objective of minimizing the total energy consumption in segment positioning was proposed for segment erector of shield tunneling machine. The segment positioning process was decomposed into rotation, lifting and sliding actions in deriving the energy calculation model of segment erection. The work of gravity was taken into account in the mathematical modeling of energy consumed by each actuator. In order to investigate the relationship between the work done by the actuator and the path moved along by the segment, the upward and downward directions as well as the operating quadrant of the segment erector were defined. Piecewise nonlinear function of energy was presented, of which the result is determined by closely coupled components as working parameters and some intermediate variables. Finally, the effectiveness of the optimization method was proved by conducting a case study with a segment erector for the tunnel with a diameter of 3 m and drawing comparisons between different assembling paths. The results show that the energy required by assembling a ring of segments along the optimized moving path can be reduced up to 5%. The method proposed in this work definitely provides an effective energy saving solution for shield tunneling machine. 展开更多
关键词 energy saving segment erector work of gravity path optimization shield tunneling machine
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Longitudinal structural vulnerability analysis of shield tunnels under adjacent excavation disturbances
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作者 PENG Zhu SHI Cheng-hua +2 位作者 WANG Zu-xian LEI Ming-feng PENG Li-min 《Journal of Central South University》 2025年第6期2256-2272,共17页
This paper proposes a longitudinal vulnerability-based analysis method to evaluate the impact of foundation pit excavation on shield tunnels,accounting for geological uncertainties.First,the shield tunnel is modeled a... This paper proposes a longitudinal vulnerability-based analysis method to evaluate the impact of foundation pit excavation on shield tunnels,accounting for geological uncertainties.First,the shield tunnel is modeled as an Euler Bernoulli beam resting on the Pasternak foundation incorporating variability in subgrade parameters along the tunnel’s length.A random analysis method using random field theory is introduced to evaluate the tunnel’s longitudinal responses to excavation.Next,a risk assessment index system is established.The normalized relative depth between the excavation and the shield tunnel is used as a risk index,while the maximum longitudinal deformation,the maximum circumferential opening,and the maximum longitudinal bending moment serve as performance indicators.Based on these,a method for analyzing the longitudinal fragility of shield tunnels under excavation-induced disturbances is proposed.Finally,the technique is applied to a case study involving a foundation pit excavation above a shield tunnel,which is the primary application scenario of this method.Vulnerability curves for different performance indicators are derived,and the effects of tunnel stiffness and subgrade stiffness on the tunnel vulnerability are explored.The results reveal significant differences in vulnerability curves depending on the performance index used.Compared to the maximum circumferential opening and the maximum longitudinal bending moment,selecting the maximum longitudinal deformation as the control index better ensures the tunnel’s usability and safety under excavation disturbances.The longitudinal vulnerability of the shield tunnel nonlinearly decreases with the increase of the tunnel stiffness and subgrade stiffness,and the subgrade stiffness has a more pronounced effect.Parametric analyses suggest that actively reinforcing the substratum is more effective on reducing the risk of tunnel failure due to adjacent excavations than passive reinforcement of the tunnel structure. 展开更多
关键词 shield tunnel foundation pit excavation foundation variability random field VULNERABILITY
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Comprehensive health assessment of shield tunnel structure based on prototype experiment 被引量:12
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作者 LI Pan ZHANG Ya-wei +1 位作者 JIANG Fu-yu ZHENG Hu 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第3期681-689,共9页
Health state of shield tunnels is one of the most important parameters for structure maintenance.Usually,the shield tunnel is extremely long in longitude direction and composed by many segments.It is difficult to quan... Health state of shield tunnels is one of the most important parameters for structure maintenance.Usually,the shield tunnel is extremely long in longitude direction and composed by many segments.It is difficult to quantify the relationship between the structure damage state and shield tunnel structure deformation by the model test because of unpredictable effects of different scales between model test and prototype tunnel structure.Here,an in-situ monitoring project was conducted to study the excavation induced shield tunnel structure damage,which could be considered a prototype test on the tunnel deformation.The disaster performance of tunnel leakage,segment crack,segment dislocation and segment block drop-off during longitude deformation and cross-section ovality developments was analyzed.The results indicate that instead of the longitude deformation,the ovality value has the strongest correlation to the rest disease performance,which could be used as the assessment index of the tunnel health.For this tunnel,it is in health state when the ovality is less than 0.5%,and the serious damage could be found when the ovality value is higher than 0.77%.The research results provide valuable reference to shield tunnel health assessment and help complete the standard of shield tunnel construction. 展开更多
关键词 shield tunnel health assessment DEFORMATION structure disease
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Seismic reliability analysis of shield tunnel faces under multiple failure modes by pseudo-dynamic method and response surface method 被引量:7
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作者 ZHANG Jia-hua XU Peng +1 位作者 SUN Wang-cheng LI Bo 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1553-1564,共12页
In order to investigate the stability problem of shield tunnel faces subjected to seismic loading,the pseudodynamic method(P-DM)was employed to analyze the seismic effect on the face.Two kinds of failure mechanisms of... In order to investigate the stability problem of shield tunnel faces subjected to seismic loading,the pseudodynamic method(P-DM)was employed to analyze the seismic effect on the face.Two kinds of failure mechanisms of active collapse and passive extrusion were considered,and a seismic reliability model of shield tunnel faces under multifailure mode was established.The limit analysis method and the response surface method(RSM)were used together to solve the reliability of shield tunnel faces subjected to seismic action.Comparing with existing results,the results of this work are effective.The effects of seismic load and rock mass strength on the collapse pressure,extrusion pressure and reliability index were discussed,and reasonable ranges of support pressure of shield tunnel faces under seismic action were presented.This method can provide a new idea for solving the shield thrust parameter under the seismic loading. 展开更多
关键词 shield tunnel face pseudo-dynamic method seismic effect multi-failure mode support pressure range
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Failure mechanism of large-diameter shield tunnels and its effects on ground surface settlements 被引量:7
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作者 杨宇友 李宏安 《Journal of Central South University》 SCIE EI CAS 2012年第10期2958-2965,共8页
A new technique for the analysis of the three-dimensional collapse failure mechanism and the ground surface settlements for the large-diameter shield tunnels were presented.The technique is based on a velocity field m... A new technique for the analysis of the three-dimensional collapse failure mechanism and the ground surface settlements for the large-diameter shield tunnels were presented.The technique is based on a velocity field model using more different truncated solid conical blocks to clarify the multiblock failure mechanism.Furthermore,the shape of blocks between the failure surface and the tunnel face was considered as an entire circle,and the supporting pressure was assumed as non-uniform distribution on the tunnel face and increased with the tunnel embedded depth.The ground surface settlements and failure mechanism above large-diameter shield tunnels were also investigated under different supporting pressures by the finite difference method. 展开更多
关键词 large-diameter shield tunnel failure mechanism ground surface settlements limit analysis theory supporting pressures
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Tunnel face stability and ground settlement in pressurized shield tunnelling 被引量:4
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作者 苏艺 汪国锋 周庆宏 《Journal of Central South University》 SCIE EI CAS 2014年第4期1600-1606,共7页
An analysis of the stability of large-diameter circular tunnels and ground settlement during tunnelling by a pressurized shield was presented. An innovative three-dimensional translational multi-block failure mechanis... An analysis of the stability of large-diameter circular tunnels and ground settlement during tunnelling by a pressurized shield was presented. An innovative three-dimensional translational multi-block failure mechanism was proposed to determine the face support pressure of large-shield tunnelling. Compared with the currently available mechanisms, the proposed mechanism has two unique features:(1) the supporting pressure applied to the tunnel face is assumed to have a non-uniform rather than uniform distribution, and(2) the method takes into account the entire circular excavation face instead of merely an inscribed ellipse. Based on the discrete element method, a numerical simulation of the Shanghai Yangtze River Tunnel was carried out using the Particle Flow Code in two dimensions. The immediate ground movement during excavation, as well as the behaviour of the excavation face, the shield movement, and the excavated area, was considered before modelling the excavation process. 展开更多
关键词 settlement large-diameter shield tunnel three-dimensional failure mechanism
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Three-dimensional pseudo-dynamic reliability analysis of seismic shield tunnel faces combined with sparse polynomial chaos expansion
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作者 GUO Feng-qi LI Shi-wei ZOU Jin-Feng 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期2087-2101,共15页
To address the seismic face stability challenges encountered in urban and subsea tunnel construction,an efficient probabilistic analysis framework for shield tunnel faces under seismic conditions is proposed.Based on ... To address the seismic face stability challenges encountered in urban and subsea tunnel construction,an efficient probabilistic analysis framework for shield tunnel faces under seismic conditions is proposed.Based on the upper-bound theory of limit analysis,an improved three-dimensional discrete deterministic mechanism,accounting for the heterogeneous nature of soil media,is formulated to evaluate seismic face stability.The metamodel of failure probabilistic assessments for seismic tunnel faces is constructed by integrating the sparse polynomial chaos expansion method(SPCE)with the modified pseudo-dynamic approach(MPD).The improved deterministic model is validated by comparing with published literature and numerical simulations results,and the SPCE-MPD metamodel is examined with the traditional MCS method.Based on the SPCE-MPD metamodels,the seismic effects on face failure probability and reliability index are presented and the global sensitivity analysis(GSA)is involved to reflect the influence order of seismic action parameters.Finally,the proposed approach is tested to be effective by a engineering case of the Chengdu outer ring tunnel.The results show that higher uncertainty of seismic response on face stability should be noticed in areas with intense earthquakes and variation of seismic wave velocity has the most profound influence on tunnel face stability. 展开更多
关键词 reliability analysis shield tunnel face sparse polynomial chaos expansion modified pseudo-dynamic approach seismic stability assessment
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Chunfeng Tunnel: The Largest Diameter Shield Tunnel in China
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作者 YOU Yongfeng 《隧道建设(中英文)》 北大核心 2018年第4期197-199,共3页
关键词 英文 中国 建设 隧道
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Hydraulic fracturing-based analytical method for determining seepage characteristics at tunnel-gasketed joints 被引量:1
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作者 GONG Chen-jie CHENG Ming-jin +2 位作者 FAN Xuan PENG Yi-cheng DING Wen-qi 《Journal of Central South University》 2025年第4期1520-1534,共15页
Waterproof performance of gaskets between segments is the focus of shield tunnels.This paper proposed an analytical method for determining seepage characteristics at tunnel-gasketed joints based on the hydraulic fract... Waterproof performance of gaskets between segments is the focus of shield tunnels.This paper proposed an analytical method for determining seepage characteristics at tunnel-gasketed joints based on the hydraulic fracturing theories.First,the mathematical model was established,and the seepage governing equation and boundary conditions were obtained.Second,three dimensionless parameters were introduced for simplifying the expressions,and the seepage governing equations were normalized.Third,analytical expressions were derived for the interface opening and liquid pressure.Moreover,the influencing factors of seepage process at the gasketed interface were analyzed.Parametric analyses revealed that,in the normalized criterion of liquid viscosity,the liquid tip coordinate was influenced by the degree of negative pressure in the liquid lag region,which was related to the initial contact stress.The coordinate of the liquid tip affected the liquid pressure distribution and the interface opening,which were analyzed under different liquid tip coordinate conditions.Finally,under two limit states,comparative analysis showed that the results of the variation trend of the proposed method agree well with those of previous research.Overall,the proposed analytical method provides a novel solution for the design of the waterproof in shield tunnels. 展开更多
关键词 shield tunnels segment joints seepage characteristics hydraulic fracture analytical solution
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深排隧道钢纤维补强衬砌混凝土-伦敦Lee Tunnel 被引量:3
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作者 董贺祥 John Greenhalph +4 位作者 作田恭一 张日红 张学军 胡云发 陈健 《土木工程学报》 EI CSCD 北大核心 2020年第S01期312-317,324,共7页
钢纤维补强能够极大提升混凝土结构物的耐久性能,非常适用于长寿命,高耐久性,并且供用环境腐蚀条件苛刻,磨耗严重的都市深层排水隧道衬砌混凝土。依据有关钢纤维补强混凝土结构的国际混凝土结构联合会制订的模型代码:fib model code 20... 钢纤维补强能够极大提升混凝土结构物的耐久性能,非常适用于长寿命,高耐久性,并且供用环境腐蚀条件苛刻,磨耗严重的都市深层排水隧道衬砌混凝土。依据有关钢纤维补强混凝土结构的国际混凝土结构联合会制订的模型代码:fib model code 2010,以及欧洲的相关技术规范,结合伦敦的深层排水隧道:Lee Tunnel的具体工程实例,对如何应用钢纤维补强技术在盾构隧道衬砌混凝土管片,以及现场浇筑二次衬砌自密实混凝土进行了探讨。同时通过钢纤维补强混凝土缺口梁试件的抗折强度试验,大型梁试件的弯曲加载试验,以及试验结果的非线性有限元逆向解析,确认了钢纤维取代钢筋的结构补强性能,控制裂缝效果,以及应变硬化性能,能够满足Lee tunnel工程项目的砌筑混凝土性能要求,适用于深层排水隧道:Lee tunnel衬砌混凝土补强。 展开更多
关键词 深层隧道 盾构管片 钢纤维补强混凝土 耐久性 韧性
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Optimal arrangement for pressure measurement points in working chamber of earth pressure balance shield 被引量:4
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作者 刘畅 屈福政 +1 位作者 李守巨 孟庆琳 《Journal of Central South University》 SCIE EI CAS 2012年第7期1883-1891,共9页
In order to exactly provide scientific basis for pressure dynamic balance control of working chamber of earth pressure balance shield (EPBS),study on optimal arrangement of pressure measurement points in working chamb... In order to exactly provide scientific basis for pressure dynamic balance control of working chamber of earth pressure balance shield (EPBS),study on optimal arrangement of pressure measurement points in working chamber was conducted. Based on mathematical description of optimal arrangement for pressure measurement points,fuzzy clustering analysis and discriminant analysis were used to divide pressure regions of nodes on bulkhead. Finally,the selection method of optimal measurement points was proposed,and by selecting d6.28 m EPBS as study object,the case study was conducted. By contrast,based on optimal arrangement scheme of pressure measurement points,through adopting weighted algorithm,the absolute error mean of equivalent pressure of working chamber is the smallest. In addition,pressure curve of optimal arrangement points presents parabola,and it can show the state of pressure distribution on bulkhead truly. It is concluded that the optimal arrangement method of pressure measurement points in working chamber is effective and feasible,and the method can provide basis for realizing high precision pressure control of EPBS. 展开更多
关键词 tunneling earth pressure balance shield working chamber optimal arrangement discrete element method
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Optimal design of structural parameters for shield cutterhead based on fuzzy mathematics and multi-objective genetic algorithm 被引量:12
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作者 夏毅敏 唐露 +2 位作者 暨智勇 程永亮 卞章括 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期937-945,共9页
In order to improve the strength and stiffness of shield cutterhead, the method of fuzzy mathematics theory in combination with the finite element analysis is adopted. An optimal design model of structural parameters ... In order to improve the strength and stiffness of shield cutterhead, the method of fuzzy mathematics theory in combination with the finite element analysis is adopted. An optimal design model of structural parameters for shield cutterhead is formulated,based on the complex engineering technical requirements. In the model, as the objective function of the model is a composite function of the strength and stiffness, the response surface method is applied to formulate the approximate function of objective function in order to reduce the solution scale of optimal problem. A multi-objective genetic algorithm is used to solve the cutterhead structure design problem and the change rule of the stress-strain with various structural parameters as well as their optimal values were researched under specific geological conditions. The results show that compared with original cutterhead structure scheme, the obtained optimal scheme of the cutterhead structure can greatly improve the strength and stiffness of the cutterhead, which can be seen from the reduction of its maximum equivalent stress by 21.2%, that of its maximum deformation by 0.75%, and that of its mass by 1.04%. 展开更多
关键词 shield tunneling machine cutterhead structural parameters fuzzy mathematics finite element optimization
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考虑变形控制的盾构穿越高铁隧道掘进参数研究 被引量:2
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作者 费瑞振 邹洋 +3 位作者 彭立敏 施成华 雷明锋 张继清 《铁道科学与工程学报》 北大核心 2025年第6期2703-2716,共14页
为解决盾构下穿高速铁路隧道引发的变形控制难题,建立基于机器学习的沉降预测及盾构掘进参数优化模型。通过整合盾构穿越既有隧道工程实测数据、数值模拟及理论计算结果,构建了包含17类参数的综合数据库。依托天津地铁B1线下穿京津城际... 为解决盾构下穿高速铁路隧道引发的变形控制难题,建立基于机器学习的沉降预测及盾构掘进参数优化模型。通过整合盾构穿越既有隧道工程实测数据、数值模拟及理论计算结果,构建了包含17类参数的综合数据库。依托天津地铁B1线下穿京津城际铁路解放路隧道工程案例,采用贝叶斯优化的极端梯度提升算法(BO-XGBoost)建立沉降预测模型,并结合粒子群优化(particle swarm optimization, PSO)算法实现盾构掘进参数优化。研究结果表明,BO-XGBoost模型在预测精度上显著优于传统神经网络与支持向量机,误差可以控制在±0.6 mm范围内,5折交叉验证结果表明该模型泛化能力稳定。地层损失率是既有隧道沉降主控因素,其次为盾构刀盘直径与盾构埋深,土体弹性模量及泊松比影响较弱。通过采用PSO算法优化后的盾构推进速度、刀盘转速、同步注浆压力等参数,可以将盾构穿越高铁隧道的沉降值控制在5 mm以内。研究成果可为盾构穿越高铁隧道安全施工及运营提供理论参考。 展开更多
关键词 变形控制 高铁隧道 盾构穿越 盾构掘进参数 预测模型
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多病害耦合作用下地铁盾构隧道单环管片健康度评价方法研究 被引量:3
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作者 豆海涛 吕延豪 +2 位作者 孙雪兵 刘学增 李振 《铁道标准设计》 北大核心 2025年第1期111-119,共9页
传统的单环管片健康度评价方法未考虑多病害耦合作用对结构性能的影响,造成评价结果偏乐观。基于某城市地铁病害统计数据,探讨城市地铁病害主要类型及内在关联,借助数值模拟,提出考虑病害耦合的单环管片承载力预测模型及健康度评价方法... 传统的单环管片健康度评价方法未考虑多病害耦合作用对结构性能的影响,造成评价结果偏乐观。基于某城市地铁病害统计数据,探讨城市地铁病害主要类型及内在关联,借助数值模拟,提出考虑病害耦合的单环管片承载力预测模型及健康度评价方法,并通过现场应用验证其合理性。主要结论如下:(1)渗漏水、错台、开裂、结构劣化(锈蚀、剥落等)和隧道变形是城市地铁的主要病害类型且各病害关联密切,结构服役性能受多病害耦合影响;(2)不同类型病害耦合影响的管片衬砌在加载条件下的承载性能演化规律、损伤特征以及对各类病害的敏感性存在差异;(3)基于钢筋截面损失率α、裂缝深度与管片厚度比β、剥落区域深度与管片厚度比γ、背后空洞范围m,分别建立钢筋锈蚀-管片开裂、钢筋锈蚀-剥落掉块、背后空洞-管片开裂、管片开裂-剥落掉块共4种病害耦合类型的单环管片承载力预测模型以及健康度评价方法。 展开更多
关键词 地铁 盾构隧道 管片 健康度分级 有限元分析 预测模型 承载力
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基于上浮力正态分布的盾构管片上浮变形半解析方法研究 被引量:2
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作者 刘维正 师嘉文 +2 位作者 谭际鸣 董军 豆小天 《中南大学学报(自然科学版)》 北大核心 2025年第3期1039-1052,共14页
针对盾构管片上浮计算中上浮力变化的假设形式与实际存在差异,导致上浮量计算不准确,从而引发管片错台、渗水等工程问题,建立三维管片上浮数值模型,基于数值模拟结果与已有试验结果,提出一种符合实际的上浮力正态分布函数,并将上浮力作... 针对盾构管片上浮计算中上浮力变化的假设形式与实际存在差异,导致上浮量计算不准确,从而引发管片错台、渗水等工程问题,建立三维管片上浮数值模型,基于数值模拟结果与已有试验结果,提出一种符合实际的上浮力正态分布函数,并将上浮力作用范围视为置信水平为99.7%的置信区间。假设盾构隧道为置于Pasternak地基上的Euler-Bernoulli梁,考虑土体剪切变形,建立基于上浮力正态分布的管片上浮变形半解析方法,将解析结果与实测结果及已有方法计算结果进行对比,验证本文方法的适用性,并采用该方法分析地层参数、浆液参数对管片上浮及内力的影响。研究结果表明:在单次注浆作用下,瞬时上浮量先增大后减小,最大值出现在距盾尾21m处,弯矩最大值出现在盾尾处;剪力先增大后减小,在距盾尾9m处达到最大;在持续注浆作用下,累计上浮量、弯矩及剪力不断增大,距盾尾54m处上浮量达到最大值并趋于稳定,弯矩与剪力分别在距盾尾36m、54m处达到最大值;管片上浮量随埋深h、地层等效弹性模量Es增大而减小,随浆液初凝时间t延长呈非线性增大,随注浆压力P的变化呈线性变化;增大h与Es、减小P与t能有效减小管片上浮量、上浮范围及内力;距离盾尾36m至54m为管片最易发生错台区域,Es、t增大会使错台区域首端更接近盾尾。研究成果可为盾构隧道施工参数选取及管片上浮预测与控制提供理论依据。 展开更多
关键词 正态分布 上浮力 盾构隧道 管片上浮 半解析解
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超大直径盾构隧道联络通道冻结法施工交界面温度场研究——以北京东六环改造工程冻结联络通道为例 被引量:3
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作者 李明 王磊 +3 位作者 崔灏 陈红蕾 孙长松 杨哲 《隧道建设(中英文)》 北大核心 2025年第2期352-360,共9页
为研究超大直径盾构隧道联络通道冻结法施工中的交界面温度场,以及冻结管非循环段长度等因素对土体与管片交界面冻结壁厚度的影响,以北京东六环超大直径盾构隧道盾构段联络通道冻结施工为背景,采用现场实测和数值模拟的方法,对土体与管... 为研究超大直径盾构隧道联络通道冻结法施工中的交界面温度场,以及冻结管非循环段长度等因素对土体与管片交界面冻结壁厚度的影响,以北京东六环超大直径盾构隧道盾构段联络通道冻结施工为背景,采用现场实测和数值模拟的方法,对土体与管片交界面温度场及交界面冻结壁厚度等进行分析。结果表明:1)冻结过程中冻结管前部的非循环段长度会显著影响交界面处的冻结效果,交界面冻结壁厚度随非循环段长度增加而减小;在北京东六环工况下,冻结管间距为1 m时,非循环段长度达到450 mm冻结壁无法在56 d内闭合。2)单排管叠加冻结能显著提高交界面的冻结壁厚度及冻结管容许最大非循环段长度,而等管距的环形单圈冻结同直线单排管冻结无明显差距。3)冻结交界面为弧形时,交界面冻结壁厚度较管片为平面时有显著增加;非循环段长度为300 mm时,上壁厚度比平面管片增加了15%,下壁和侧壁则增加了35%,可以认为管片弧度对交界面冻结有利。4)冻结壁与隧道管片交界面是冻结壁的薄弱位置,在冻结施工中应尽量减小非循环段长度,并重点关注交界面处的温度变化,积极冻结及开挖过程中应对交界面位置做好保温,防止施工过程中交界面位置化冻引起地下水击穿冻结壁,造成涌水涌砂事故。 展开更多
关键词 冻结法 超大直径盾构隧道 界面温度场 联络通道 数值模拟
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盾构下穿施工既有隧道变形机理数值模拟研究 被引量:1
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作者 路德春 宋涛 +2 位作者 林庆涛 孟旭 杜修力 《防灾减灾工程学报》 北大核心 2025年第3期485-500,共16页
盾构施工下穿既有运营隧道,易导致既有线路变形过大,给地铁列车运营安全带来安全隐患。考虑盾构机与土体相互作用、衬砌‑注浆层‑土体相互作用,以及同步注浆硬化过程和压力消散等关键因素,发展了盾构施工全过程数值模拟方法。结合实际工... 盾构施工下穿既有运营隧道,易导致既有线路变形过大,给地铁列车运营安全带来安全隐患。考虑盾构机与土体相互作用、衬砌‑注浆层‑土体相互作用,以及同步注浆硬化过程和压力消散等关键因素,发展了盾构施工全过程数值模拟方法。结合实际工程建立盾构下穿既有隧道三维有限元数值模型,获得了盾构下穿过程中既有隧道结构变形、内力响应、围岩压力,及其周围地层应力的发展变化规律,揭示了既有隧道的变形机理。结果表明:既有隧道在纵向上发生挠曲和扭转变形,挠曲变形呈现为中部沉降两端隆起的“V”形变形,断面扭转变形呈中间大两端小的分布形式,且随盾构掘进先逆时针扭转后顺时针扭转;对于隧道横断面,在x=-0.8D~0.8D隧道断面呈现侧向压扁、竖向伸长的变形模式,在x=±0.8D之外隧道断面呈现侧向伸长、竖向压扁的变形模式,x=-0.8D~0.8D隧道断面变形由盾构开挖引起的土体卸载引起,x=±0.8D之外的隧道断面变形由中间区域隧道断面扭转和沉降变形的传递导致。 展开更多
关键词 盾构 下穿施工 既有隧道 变形机理 数值模拟
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洞内注浆对盾构隧道竖向沉降的影响 被引量:1
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作者 魏纲 李航 +3 位作者 齐永洁 张治国 朱成伟 韩凯航 《中南大学学报(自然科学版)》 北大核心 2025年第1期222-233,共12页
为治理因下方新建隧道穿越或上方堆载等产生的隧道不均匀沉降,常采用隧道洞内注浆技术对沉降区域进行抬升。为研究洞内注浆对既有隧道竖向位移及轴线处附加应力的影响,首先,根据2个实际工况提出了隧道下方注浆圆柱模型;其次,考虑了注浆... 为治理因下方新建隧道穿越或上方堆载等产生的隧道不均匀沉降,常采用隧道洞内注浆技术对沉降区域进行抬升。为研究洞内注浆对既有隧道竖向位移及轴线处附加应力的影响,首先,根据2个实际工况提出了隧道下方注浆圆柱模型;其次,考虑了注浆土体的体积膨胀作用及浆液的空间流动性,提出了非均匀体积膨胀注浆圆柱力学计算模型;最后,基于随机介质理论推导了注浆引起的隧道竖向抬升位移及轴线处的附加应力计算公式,研究了既有隧道沉降及轴线处附加应力在不同注浆参数(注浆量V、注浆体顶部与隧道底部距离H、注浆角度α)及不同纵向注浆方案下的变化规律。研究结果表明:隧道洞内注浆对隧道进行了有效抬升,计算所得抬升结果与工程实测结果较为吻合;随着注浆量V提高,既有隧道沉降变形逐渐减小,但当注浆量V过大时,将会导致既有隧道发生隆起变形;随着注浆圆柱顶部与隧道底部距离H增大,抬升量逐渐减小;随着注浆角度α增大,抬升量不断增大;沿隧道纵向采取非等量注浆方案并在沉降最大区域集中注浆能有效提高最大抬升量。 展开更多
关键词 盾构隧道 不均匀沉降 洞内注浆 附加应力 竖向位移
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