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MODERN TUNNELLING TECHNOLOGY 2023, Vol. 60 Issue (1) :1-10    DOI:
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Carbon Emission Accounting and Research Progress Analysis of Traffic Tunnel Engineering
(1. Key Laboratory of Transportation Tunnel Engineering, Ministry of Education, Southwest Jiaotong University, Chengdu 610031; 2.School of Civil Engineering, Southwest Jiaotong University, Chengdu 610031)
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Abstract In response to the increasingly serious global warming problem, the Chinese government has put forward the "carbon emission peak and carbon neutrality" goals. The greenhouse gas emitted from the production activities of traffic tunnels is one of the main sources of carbon emissions in the field of civil engineering. The efficiency of energy conservation and emission reduction is the key to achieving the "carbon emission peak and carbon neutrality"goals in time and with good quality. The current research status of carbon emission calculation and analysis of traffic tunnels is summarized through statistical research on relevant documents in the past 10 years. The results show that the carbon emission research of tunnel life cycle at present is often carried out based on life cycle evaluation at home and abroad, and the emission coefficient method is selected for calculation. Most documents mainly focus on the calculation and emission reduction analysis of carbon emissions during the construction of highway tunnels and shield tunnels, and generally the carbon emissions during the construction of tunnels are divided into three phases: material production, material transportation and on-site construction. A comprehensive description of the research progress on the influencing factors and prediction formulas of carbon emissions from tunnel construction can provide a reference for future research.
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Articles by authors
GUO Chun1
2 GUO Yalin1
2 CHEN Zheng1
2
KeywordsTraffic tunnel   Life cycle evaluation   Carbon emission   Calculation method   Inventory analysis     
Abstract: In response to the increasingly serious global warming problem, the Chinese government has put forward the "carbon emission peak and carbon neutrality" goals. The greenhouse gas emitted from the production activities of traffic tunnels is one of the main sources of carbon emissions in the field of civil engineering. The efficiency of energy conservation and emission reduction is the key to achieving the "carbon emission peak and carbon neutrality"goals in time and with good quality. The current research status of carbon emission calculation and analysis of traffic tunnels is summarized through statistical research on relevant documents in the past 10 years. The results show that the carbon emission research of tunnel life cycle at present is often carried out based on life cycle evaluation at home and abroad, and the emission coefficient method is selected for calculation. Most documents mainly focus on the calculation and emission reduction analysis of carbon emissions during the construction of highway tunnels and shield tunnels, and generally the carbon emissions during the construction of tunnels are divided into three phases: material production, material transportation and on-site construction. A comprehensive description of the research progress on the influencing factors and prediction formulas of carbon emissions from tunnel construction can provide a reference for future research.
KeywordsTraffic tunnel,   Life cycle evaluation,   Carbon emission,   Calculation method,   Inventory analysis     
Cite this article:   
GUO Chun1, 2 GUO Yalin1, 2 CHEN Zheng1 etc .Carbon Emission Accounting and Research Progress Analysis of Traffic Tunnel Engineering[J]  MODERN TUNNELLING TECHNOLOGY, 2023,V60(1): 1-10
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http://www.xdsdjs.com/EN/      或     http://www.xdsdjs.com/EN/Y2023/V60/I1/1
 
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[1] .Calculation Method and Engineering Application of Drawdown Induced by Tunnel Water Leakage[J]. MODERN TUNNELLING TECHNOLOGY, 2020,57(6): 86-92
[2] WANG Zhilong1,2 ZHOU Renqiang3 YANG Nie1,2 WANG Mingnian1,2 LIU Dagang1,2.Hoek-Brown Criterion Based Calculation Method of Rock Resistant Coefficient in Tunnelling and Its Engineering Application[J]. MODERN TUNNELLING TECHNOLOGY, 2020,57(5): 84-90
[3] JIANG Yongtao1 WANG Mingnian1 ZHANG Yiteng1 YU Li1 JIANG Fan2 XIAO Zerong3.Prediction Method for Surface Settlement in Tunnel Construction with Pipe Curtain Support[J]. MODERN TUNNELLING TECHNOLOGY, 2020,57(4): 82-90
[4] WANG Jialei JI Xinbo.Comparative Analysis of Calculation Methods for Jacking Force of Jacking Pipes[J]. MODERN TUNNELLING TECHNOLOGY, 2018,55(6): 11-18
[5] YU Cheng-Shuo-1, 2 , DING Wen-Qi-1, 2 , ZHANG Qing-Zhao-1, 2 .[J]. MODERN TUNNELLING TECHNOLOGY, 2018,55(5): 11-18
[6] QIU Mingming1 YANG Guolin1 WU Zhenqing2 JIANG Anlong3 LIN Yuliang1.Distribution Laws of Surface Settlement Induced by Shield Construction of Twin-Tube Metro Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2017,54(2): 96-105
[7] LI Xiao-Lin- 1, 2 Tao-Lian-Jin- 1 Guo- Ting- 2 Hui-Li-Ping.Practical Calculation Method for the Construction of Parallel Shield Tunnels with Small Spacing[J]. MODERN TUNNELLING TECHNOLOGY, 2016,53(5): 161-167
[8] Hu Yunhua1 Zhang jianmin2 Zhengshaohua1.Discussion of a Practical Calculation Method for the Maximum Support Pressure of Slurry Shield Tunnels in Sand Strata[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(4): 158-164
[9] Li Qiaosong1 Bai Yun2 Li Lin2.Study of Influential Factors and Measures for Low Carbonization During the Construction of Shield Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(3): 1-7
[10] Wang Chunhao.Calculation Method for Surrounding Rock Pressure of a Loess Highway Tunnel with an Extra-Large Section[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(3): 175-181
[11] WU Hua-Jun-1, Wei, GANG 2.The Calculation of Soil Settlement Induced by Construction of Twin Parallel Shield Tunnels with a Small-Interval[J]. MODERN TUNNELLING TECHNOLOGY, 2014,51(2): 63-69
[12] ZHANG Sheng.Discussion on Insulation Design for Tunnels in High-altitude
and Severe Cold Region and Thermal Calculation Method
[J]. MODERN TUNNELLING TECHNOLOGY, 2011,48(3): 59-63
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