DESIGN OF HIGH-SPEED RAILWAY (HSR) LONG-DISTANCE TUNNEL INDEPENDENT CONTROL NETWORK

Authors

  • Alhossein Mohamed School of Transportation and Logistics, Southwest Jiaotong University Chengdu 610031, China
  • Peng Qiyuan School of Transportation and Logistics, Southwest Jiaotong University Chengdu 610031, China

DOI:

https://doi.org/10.14311/CEJ.2020.01.0023

Keywords:

HSR, Control, Tunnels, Network

Abstract

Establishing a high-speed railway long-distance tunnel independent control network according to “one point and one direction” will often produce lateral deviation and long and short chains in the joint section. It is necessary to take technical measures such as control network rotation or long and short chain to solve. Combined with the case of a network of independent control network for a long-distance tunnel of a high-speed railway in China, based on the results of the original reference ellipsoid and line control points, the central meridian (L 0) of the tunnel project center with the longitude of the tunnel is plotted, and the average tunnel elevation of the tunnel is Projection earth height (H 0), coordinate transformation calculation and relative stability and reliability analysis of existing line plane control points; select one stable control point of tunnel entrance and exit as starting point, in new projection parameters (L0 Under H0), the overall adjustment is carried out to establish an independent control network for the long tunnel. The results show:
(1) The tunnel independent control network established by the method has high precision and uniform error, which can meet the requirements of network construction precision and improve the tunnel penetration accuracy;
(2) “One point one direction” Compared with this method, the joint segment control point (S = 9.1 km) with the same baseline file, starting point and projection parameters, the maximum coordinate difference Δx is -63.4 mm, Δy is 85.3 mm, requiring technical processing;
(3) The method can solve the problems of large lateral deviation and long and short chain of the connecting section, and ensure the smooth connection between the tunnel and the adjacent structure.

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References

National Railway Administration. TB 10003—2016 Railway Tunnel Design Specification [S]. Beijing: China Railway Publishing House, 2017

Ministry of Railways of the People's Republic of China. TB 10601—2009 High-speed railway engineering measurement specification [S]. Beijing: China Railway Publishing House, 2009

Yang Liu, Zuo Zhigang. Tunnel independent control network construction method [J]. Railway Investigation, 2011(4): 21-23.

Ye Changyi. Extra-long tunnel plane independent control network layout [J]. Railway Construction Technology, 2013( 3) : 95-98

Yang Xuefeng, Liu Chenglong. Network construction method for independent control network of high-speed railway tunnel group[J]. Journal of Railway Science and Engineering, 2013( 6) : 79-83

Hong Jianghua, Shi Debin, et al. The measurement and accuracy analysis of the plane GPS control network of Xuefeng Mountain long tunnel group [J]. Railway Survey, 2012( 1) : 21-24

Zhao Junsheng, Liu Yanchun, et al. Discussion on the length deformation of Gaussian projection [J]. Ocean Mapping, 2007(3): 9-11

Kong Xiangyuan, Guo Jiming. Control surveying [M]. Wuhan: Wuhan University Press, 2015: 99-100

Feng Difei, Hu Shengwu. Research on VB-based Gaussian Projection Coordinates Swap Program [J]. Journal of Henan Urban Construction College, 2015( 4) : 38-43

National Quality Supervision, Inspection and Quarantine Bureau of the People's Republic of China. GB / T 18314—2009 Global Positioning System (GPS) Measurement Specification [S]. Beijing: China Standards Press, 2009

Xia Wei. GPS control network optimization design and data processing research [D]. Changchun: Jilin University, 2015

Ma Yafei, Zheng Zhifeng. The application of point one direction method in establishing independent coordinate system of tunnel [J]. Surveying and Mapping Technology and Equipment, 2017( 4) : 65-67

Lu Chao. The application of vector inner and outer product in the inverse calculation of linear coordinate azimuth [J]. Henan Science and Technology, 2015( 18) : 80-81

Fu Hongping, Guo Jiming, et al. Research on prediction method of special tunnel penetration error [J]. Bulletin of Surveying and Mapping, 2015( 2) : 80-83

Wang Zhifeng. Discussion on calculation method of transverse penetration error of GPS tunnel control network [J]. Geospatial Information, 2017( 1) : 102-103

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Published

2020-07-31

How to Cite

Mohamed, A., & Qiyuan, P. (2020). DESIGN OF HIGH-SPEED RAILWAY (HSR) LONG-DISTANCE TUNNEL INDEPENDENT CONTROL NETWORK. Stavební Obzor - Civil Engineering Journal, 29(2). https://doi.org/10.14311/CEJ.2020.01.0023

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Articles