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Analysis on the Construction Technology of Metro Shield Method
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作者 DONG Zhicheng LYU Hewei +1 位作者 CHEN Tongxu SUN Qiang 《外文科技期刊数据库(文摘版)工程技术》 2021年第12期1205-1209,共8页
With the development of economy, the construction of subway project has also speeded up. Because the subway transportation mode has the advantages of large load and less pollution, it has become the main way to solve ... With the development of economy, the construction of subway project has also speeded up. Because the subway transportation mode has the advantages of large load and less pollution, it has become the main way to solve the transportation problem in large and medium-sized cities. The risk management of urban rail transit project is very important because of its huge investment. Compared with the traditional construction method, the shield construction of metro section tunnels has many advantages, but there are also some disadvantages in the shield construction, such as large investment in equipment and so on, which often lead to various risks due to uncertain factors. Based on this, the paper discusses the construction technology of metro shield method. 展开更多
关键词 subway construction shield method construction technique
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Settlement characteristics of large-diameter shield excavation below existing subway in close vicinity 被引量:34
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作者 FANG Qian DU Jian-ming +2 位作者 LI Jian-ye ZHANG Ding-li CAO Li-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期882-897,共16页
A case of Qinghuayuan tunnel excavation below the existing Beijing Subway Line 10 is presented.The new Qinghuayuan tunnel,part of the Beijing-Zhangjiakou High-speed Railway,was excavated by a shield machine with an ou... A case of Qinghuayuan tunnel excavation below the existing Beijing Subway Line 10 is presented.The new Qinghuayuan tunnel,part of the Beijing-Zhangjiakou High-speed Railway,was excavated by a shield machine with an outer diameter of 12.2 m.The existing subway was excavated by shallow tunnelling method.The project layout,geological conditions,reinforcement measures,operational parameters of shield machine and monitoring results of the project are introduced.During the Qinghuayuan tunnel excavation below the existing subway,total thrust,shield driving speed,cutterhead rotation speed and torque were manually controlled below the average values obtained from the previous monitoring of this project,which could effectively reduce the disturbance of the surrounding soil induced by shield excavation.The Gaussian fitting function can appropriately fit both the ground and the existing subway settlements.The trough width is influenced not only by the excavation overburden depth,but also by the forepoling reinforcement and tail void grouting measures. 展开更多
关键词 adjacent excavation shield method operational parameters settlement characteristics
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Investigation of carbon emission in slurry shield tunnel construction based on modified process analysis method
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作者 Wuxue Li Lei Kou +3 位作者 Xiaoyu He Yibo Wang Xiaodong Shi Huiyuan Liang 《Low-carbon Materials and Green Construction》 2023年第1期227-240,共14页
Underground engineering,including shield tunnel construction,is a significant contributor to carbon dioxide emissions in infrastructure engineering projects.To better predict and control the carbon emissions associate... Underground engineering,including shield tunnel construction,is a significant contributor to carbon dioxide emissions in infrastructure engineering projects.To better predict and control the carbon emissions associated with shield tunnel construction,this paper presents a novel calculation method:the modified process analysis method based on inputoutput and process analysis methods.To evaluate the effectiveness of the proposed method,a specific shield tunnel construction project was selected as a case study.The modified process analysis method was used to analyze the various factors that influence carbon emissions during the project’s construction phase.In addition,a neural network approach was applied to validate the accuracy of the calculation using the LSTM and BP neural network.The results demonstrate that the proposed method not only combines the strengths of traditional methods but also offers high accuracy and acceptable error rates.Based on these findings,several measures to reduce carbon emissions during shield tunnel construction are suggested,providing valuable insights for reducing CO_(2) emissions associated with infrastructure engineering projects.This study highlights the importance of adopting innovative approaches to reduce carbon emissions and promotes the implementation of sustainable practices in the construction industry.Through the use of advanced analytical methods,such as the proposed modified process analysis method,we can effectively mitigate the environmental impact of construction activities and make significant contributions to the global effort to combat climate change. 展开更多
关键词 Shield method Tunnel construction Modified process analysis method Carbon emission
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