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Stability evaluation method of large cross-section tunnel considering modification of thickness-span ratio in mechanized operation
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作者 Junru Zhang Yumeng Liu Bo Yan 《Railway Sciences》 2023年第2期197-210,共14页
Purpose-This study aims to research the large cross-section tunnel stability evaluation method corrected after considering the thickness-span ratio.Design/methodology/approach-First,taking the Liuyuan Tunnel of Huangg... Purpose-This study aims to research the large cross-section tunnel stability evaluation method corrected after considering the thickness-span ratio.Design/methodology/approach-First,taking the Liuyuan Tunnel of Huanggang-Huangmei High-Speed Railway as an example and taking deflection of the third principal stress of the surrounding rock at a vault after tunnel excavation as the criterion,the critical buried depth of the large section tunnel was determined.Then,the strength reduction method was employed to calculate the tunnel safety factor under different rock classes and thickness-span ratios,and mathematical statistics was conducted to identify the relationships of the tunnel safety factor with the thickness-span ratio and the basic quality(BQ)index of the rock for different rock classes.Finally,the influences of thickness-span ratio,groundwater,initial stress of rock and structural attitude factors were considered to obtain the corrected BQ,based on which the stability of a large cross-section tunnel with a depth of more than 100 m during mechanized operation was analyzed.This evaluation method was then applied to Liuyuan Tunnel and Cimushan No.2 Tunnel of Chongqing Urban Expressway for verification.Findings-This study shows that under different rock classes,the tunnel safety factor is a strict power function of the thickness-span ratio,while a linear function of the BQ to some extent.It is more suitable to use the corrected BQ as a quantitative index to evaluate tunnel stability according to the actual conditions of the site.Originality/value-The existing industry standards do not consider the influence of buried depth and span in the evaluation of tunnel stability.The stability evaluation method of large section tunnel considering the correction of overburden span ratio proposed in this paper achieves higher accuracy for the stability evaluation of surrounding rock in a full or large-section mechanized excavation of double line high-speed railway tunnels. 展开更多
关键词 large cross-section tunnel Mechanized operation tunnel stability Thickness-span ratio Basic quality index of rock Safety factor DEPTH SPAN
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Analytical study on pretensioned bolt-cable combined support of large cross-section tunnel 被引量:7
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作者 LUO JiWei ZHANG DingLi +3 位作者 FANG Qian LI Ao SUN ZhenYu CAO LiQiang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2020年第9期1808-1823,共16页
To study the mechanical responses of large cross-section tunnel reinforced by pretensioned rock bolts and anchor cables, an analytical model is proposed. Considering the interaction between rock mass and bolt-cable su... To study the mechanical responses of large cross-section tunnel reinforced by pretensioned rock bolts and anchor cables, an analytical model is proposed. Considering the interaction between rock mass and bolt-cable support, the strain softening characteristic of rock mass, the elastic-plastic characteristic of bolt-cable support, and the delay effect of installation are considered in the model. To solve the different mechanical cases of tunneling reinforced by bolt-cable support, an analytical approach has been put forward to get the solutions of stress and displacement associated with tunneling. The proposed analytical model is verified by numerical simulation. Moreover, parametric analysis is performed to study the effects of pretension force,cross-section area, length, and supporting density of bolt-cable support on tunnel reinforcement, which can provide references for determining these parameters in tunnel design. Based on the analytical model, a new Ground Response Curve(GRC)considering the reinforcement of bolt-cable support is obtained, which shows the pretension forces and the timely installation are important in bolt-cable support. In addition, the proposed model is applied to the analysis of the Great Wall Station Tunnel, a high-speed railway tunnel with a super large cross-section, which shows that the analytical model of bolt-cable support was a useful tool for preliminary design of large cross-section tunnel. 展开更多
关键词 bolt-cable combined support analytical model pretension force large cross-section tunnel REINFORCEMENT
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杭州某市政隧道过既有铁路暗挖施工技术 被引量:13
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作者 刘招伟 杨世武 《岩土工程学报》 EI CAS CSCD 北大核心 2006年第3期353-357,共5页
重点介绍了富水砂质粉土地层浅埋暗挖法隧道修建技术,通过采用夯管超前预支护、全断面注浆、CRD工法等辅助施工措施穿越既有运营铁路干线,保证了近距离双洞大跨隧道安全施工。
关键词 富水粉质砂土 浅埋暗挖 双洞大跨 信息反馈
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富水砂层大断面暗挖隧道施工地层演化 被引量:13
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作者 方江华 姜平伟 +1 位作者 郭朋亮 王凤瑶 《科学技术与工程》 北大核心 2021年第20期8621-8628,共8页
对于施工环境复杂的暗挖隧道工程,科学合理掌握施工地层演化过程是安全施工的前提。以北京地铁12号线光熙门站—西坝河站区间富水砂层大断面暗挖隧道工程为研究背景,借助FLAC^(3D)有限差分软件,对工程设计施工方案进行模拟,得到了施工... 对于施工环境复杂的暗挖隧道工程,科学合理掌握施工地层演化过程是安全施工的前提。以北京地铁12号线光熙门站—西坝河站区间富水砂层大断面暗挖隧道工程为研究背景,借助FLAC^(3D)有限差分软件,对工程设计施工方案进行模拟,得到了施工过程中地层孔隙水压力、地层沉降损失演化过程,并与现场监测数据进行对比验证,为工程施工规避风险源提供参考。结果表明:施工掌子面孔隙水压力集中位置主要在暗挖隧道上方注浆形成的“注浆拱”拱顶以及断面未注浆范围;隧道施工过程中,沿施工掘进方向在施工掌子面前、后10 m到掌子面位置范围内,是发生涌水关键位置;地层沉降值经历了由沿中轴线对称分布到集中在中轴线位置处的变化过程,最后沉降值沿中轴线对称分布,导洞1施工掌子面处地表沉降值稳定在12 mm左右;初期支护拱顶沉降以及拱脚水平收敛均分别在45、30 d达到稳定;现场反馈的施工信息与模型计算地层演化过程相吻合,计算结果可为富水砂层大断面暗挖隧道施工方案的选择提供参考。 展开更多
关键词 大断面暗挖隧道 富水砂层 地层损失 孔隙水压
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渐变大断面地铁隧道二衬施工技术 被引量:6
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作者 谢锐 《建筑技术开发》 2021年第19期33-35,共3页
以石家庄地铁某暗挖大断面隧道为例,介绍了将隧道全断面分为仰拱、边墙、拱部3部分分步拆除局部临时支护,自下而上充分利用未拆除的临时支护的支撑作用,采用满堂脚手架+拱墙架+可调钢模板组成的模架体系来完成不同类型断面的二次衬砌施... 以石家庄地铁某暗挖大断面隧道为例,介绍了将隧道全断面分为仰拱、边墙、拱部3部分分步拆除局部临时支护,自下而上充分利用未拆除的临时支护的支撑作用,采用满堂脚手架+拱墙架+可调钢模板组成的模架体系来完成不同类型断面的二次衬砌施工技术,供类似工程施工参考。 展开更多
关键词 大断面暗挖隧道 临时支护拆除 二次衬砌
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快速公路立交的超浅埋暗挖隧道设计与施工
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作者 邵国强 李伟 《山西建筑》 2014年第8期177-179,共3页
针对立交隧道工程特征,就洞口开挖防护、洞口套拱与隧道暗挖施工进行了方案设计,以小导管注浆技术保证隧道暗挖稳定,并控制路面沉降,以大管棚并辅以周边精细注浆技术,保证边坡与路基本体结合部分的稳定,实现了大断面浅埋隧道下穿立交的... 针对立交隧道工程特征,就洞口开挖防护、洞口套拱与隧道暗挖施工进行了方案设计,以小导管注浆技术保证隧道暗挖稳定,并控制路面沉降,以大管棚并辅以周边精细注浆技术,保证边坡与路基本体结合部分的稳定,实现了大断面浅埋隧道下穿立交的设计目的。 展开更多
关键词 大断面隧道 超浅埋立交 暗挖施工 安全技术措施
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