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Predictive analysis of stress regime and possible squeezing deformation for super-long water conveyance tunnels in Pakistan
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作者 Wang Chenghu Bao Linhai 《International Journal of Mining Science and Technology》 SCIE EI 2014年第6期825-831,共7页
The prediction of the stress field of deep-buried tunnels is a fundamental problem for scientists and engineers. In this study, the authors put forward a systematic solution for this problem. Databases from the World ... The prediction of the stress field of deep-buried tunnels is a fundamental problem for scientists and engineers. In this study, the authors put forward a systematic solution for this problem. Databases from the World Stress Map and the Crustal Stress of China, and previous research findings can offer prediction of stress orientations in an engineering area. At the same time, the Andersonian theory can be used to analyze the possible stress orientation of a region. With limited in-situ stress measurements, the Hock-Brown Criterion can be used to estimate the strength of rock mass in an area of interest by utilizing the geotechnical investigation data, and the modified Sheorey's model can subsequently be employed to predict the areas' stress profile, without stress data, by taking the existing in-situ stress measurements as input parameters. In this paper, a case study was used to demonstrate the application of this systematic solution. The planned Kohala hydropower plant is located on the western edge of Qinghai-Tibet Plateau. Three hydro-fracturing stress measurement campaigns indicated that the stress state of the area is SH - Sh 〉 Sv or SH 〉Sv 〉 Sh. The measured orientation of Sn is NEE (N70.3°-89°E), and the regional orientation of SH from WSM is NE, which implies that the stress orientation of shallow crust may be affected by landforms. The modified Sheorey model was utilized to predict the stress profile along the water sewage tunnel for the plant. Prediction results show that the maximum and minimum horizontal principal stres- ses of the points with the greatest burial depth were up to 56.70 and 40.14 MPa, respectively, and the stresses of areas with a burial depth of greater than 500 m were higher. Based on the predicted stress data, large deformations of the rock mass surrounding water conveyance tunnels were analyzed. Results showed that the large deformations will occur when the burial depth exceeds 300 m. When the burial depth is beyond 800 m, serious squeezing deformations will occur in the surrounding rock masses, thus requiring more attention in the design and construction. Based on the application efficiency in this case study, this prediction method proposed in this paper functions accurately. 展开更多
关键词 super-long water conveyance tunnel In-situ stress state Squeezing deformation Prediction analysis Kohala hydropower plant
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Case Study on Synchronous Construction Technology for Secondary Lining of Large-diameter Single track Shiel Shield-bored ored Tunnel
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作者 WANG Zhenfei ZHAI Jinying(Translated) 《Chinese Railways》 2023年第2期29-34,共6页
The synchronous construction of the secondary lining during the boring of large-diameter shield faces challenges such as the design of the lining jumbo,the high requirements on the performance for the lining jumbo,the... The synchronous construction of the secondary lining during the boring of large-diameter shield faces challenges such as the design of the lining jumbo,the high requirements on the performance for the lining jumbo,the organization of the construction activities in the small and confined area,the horizontal transportation for shield boring and high safety management requirements.A super-long invert lining construction jumbo,as well as the matching California switch,is developed,which provides solution for the confliction between the invert lining construction and the horizontal transportation.The procedure and method for the synchronous operation of the shield boring and the secondary lining are developed by referring to the synchronous construction of the secondary lining during the boring of the TBMs in hard rocks.Due to the adoption of the synchronous operation of the shield boring and the secondary lining,the construction period is shortened and the construction cost is reduced.The paper can provide reference for the synchronous construction of the secondary lining in similar projects in the future. 展开更多
关键词 large-diameter shield-bored tunnel synchronous construction of secondary lining super-long invert lining construction jumbo California switch "arch+side wall"lining jumbo
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当金山特长隧道设计方案研究 被引量:14
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作者 路仕洋 《隧道建设》 2014年第5期452-459,共8页
在高原、高寒地区修建单线单洞特长隧道,面临隧道勘察选线、施工方法选择、长距离通风、深竖井施工、生态脆弱区环境保护以及低氧环境下施工等一系列世界性技术难题。结合敦煌至格尔木铁路当金山特长隧道的设计全过程,对特长隧道的勘察... 在高原、高寒地区修建单线单洞特长隧道,面临隧道勘察选线、施工方法选择、长距离通风、深竖井施工、生态脆弱区环境保护以及低氧环境下施工等一系列世界性技术难题。结合敦煌至格尔木铁路当金山特长隧道的设计全过程,对特长隧道的勘察设计进行全方位介绍。针对当金山特长隧道"三高(高海拔、高地应力、高地震烈度)"、"两低(气温低、气压低)"的地域特点,以及"三长(单面坡长、独头通风距离长、反坡排水距离长)"、"两多(断层破碎带多、不良地质多)"、"两大(埋深大、水量大)"等工程特点,对"钻爆法、TBM法、钻爆法+TBM法"3种施工方案进行系统的经济技术比选,最终确定大型机械配套的钻爆法施工方案。最后对单线铁路特长隧道的设计与施工提出了一些建议:1)特长隧道选线时重视物探技术;2)处理好勘察与设计的关系;3)高海拔特长隧道应加大机械化施工;4)特长隧道应充分发挥平行导坑的作用;5)重视环境设计。 展开更多
关键词 当金山特长隧道 单线隧道 高原地区 高寒地区 TBM法 钻爆法 机械化配套作业 深竖井
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当金山隧道防寒泄水洞适宜埋设位置数值分析 被引量:2
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作者 刘利玮 何文社 +1 位作者 路仕洋 曾祥茜 《铁道标准设计》 北大核心 2018年第4期130-135,共6页
寒区隧道防寒泄水洞是避免隧道产生冻害的主要措施之一,对隧道的正常使用以及工程造价具有较大的影响;确定当金山隧道防寒泄水洞适宜埋设位置将成为工程施工过程中的重点及难点。利用MIDAS/GTS有限元软件,基于防寒泄水洞与主隧道不同竖... 寒区隧道防寒泄水洞是避免隧道产生冻害的主要措施之一,对隧道的正常使用以及工程造价具有较大的影响;确定当金山隧道防寒泄水洞适宜埋设位置将成为工程施工过程中的重点及难点。利用MIDAS/GTS有限元软件,基于防寒泄水洞与主隧道不同竖向净距及水平净距条件下,从位移、应力及衬砌截面安全系数几方面的变化规律,对主隧道、平导及防寒泄水洞三者布置之间的相互影响进行数值分析。通过对比研究以及综合考虑隧址区最大冻结深度、安全经济要求以及结构影响等因素,最终得出当金山隧道防寒泄水洞适宜埋设位置即位于主隧道下方5 m、左侧19 m处。 展开更多
关键词 寒区隧道 埋设位置 防寒泄水洞 MIDAS/GTS 当金山隧道
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当金山隧道施工关键措施 被引量:8
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作者 马殷军 《中国铁路》 2017年第4期76-80,共5页
在复杂的工程地质与水文条件下进行隧道工程施工时,确定适宜的施工技术措施是关键与必要的。结合敦格铁路当金山隧道的具体情况,对断层破碎带及富水带、隧道出口洪积扇细角砾土地段、隧道大变形处理及预防隧道发生失稳等施工关键措施进... 在复杂的工程地质与水文条件下进行隧道工程施工时,确定适宜的施工技术措施是关键与必要的。结合敦格铁路当金山隧道的具体情况,对断层破碎带及富水带、隧道出口洪积扇细角砾土地段、隧道大变形处理及预防隧道发生失稳等施工关键措施进行研究。其中,针对断层破碎带及富水带的施工采取径向注浆、帷幕注浆、局部注浆方法,并介绍突涌水等情况的应对措施。对关键技术措施的应用效果进行论证,研究成果为同类隧道的施工提供借鉴。 展开更多
关键词 隧道工程 敦格铁路 当金山隧道 施工关键技术
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