
Challenges and Development Prospects of Ultra-Long and Ultra-Deep Mountain Tunnels
Hehua Zhu, Jinxiu Yan, Wenhao Liang
Engineering ›› 2019, Vol. 5 ›› Issue (3) : 384-392.
Challenges and Development Prospects of Ultra-Long and Ultra-Deep Mountain Tunnels
[1] |
Xu Z., Huang R., Wang S.. Tunnel classifying in light of depth (i.e thickness of overburden). Chin J Geol Hazard Control. 2000; 11(4): 5-10. Chinese
|
[2] |
Li S.C., Xu Z.H., Huang X., Lin P., Zhao X.C., Zhang Q.S.,
|
[3] |
Yu H., Chen J., Yuan Y., Zhao X.. Seismic damage of mountain tunnels during the 5.12 Wenchuan earthquake. J Mt Sci. 2016; 13(11): 1958-1972.
|
[4] |
Chen G., Wu Z., Wang F., Ma Y.. Study on the application of a comprehensive technique for geological prediction in tunneling. Environ Earth Sci. 2011; 62(8): 1667-1671.
|
[5] |
Li S.C., Liu B., Sun H.F., Nie L.C., Zhong S.H., Su M.X.,
|
[6] |
Li S, Liu B, Liu Z, Nie L, Song J, Sun H, et al., inventors; Shandong University, assignee. Advanced detection device, system and method using forward three-dimensional induced polarization for TBM construction tunnel. China Patent CN2013/000041; 2014 Jul 10.
|
[7] |
Haimson B.C.. Standard test method for determination of the in-situ stress in rock using the hydraulic fracturing method. Annu Book ASTM Stand. 1989; 4: 851-856.
|
[8] |
Haimson B.C., Cornet F.H.. ISRM suggested methods for rock stress estimation—part 3: hydraulic fracturing (HF) and/or hydraulic testing of pre-existing fractures (HTPF). Int J Rock Mech Min Sci. 2003; 40(7–8): 1011-1020.
|
[9] |
Feng X., Wu S., Li S., Qiu S., Xiao Y., Feng G.,
|
[10] |
Feng X., Zhang Z., Chen B., Feng G., Zhao Z., Ming H.,
|
[11] |
Ma T., Tang C., Tang L., Zhang W., Wang L.. Mechanism of rock burst forcasting based on micro-seismic monitoring technology. Chin J Rock Mech Eng. 2016; 35(3): 470-557. Chinese
|
[12] |
Zhu H., Li X., Lin X.. Infrastructure Smart Service System (iS3) and its application. China Civ Eng J. 2018; 51: 1-12.
|
[13] |
Zhu H., Wu W., Li X., Chen J., Huang X.. High-precision acquisition, analysis and service of rock tunnel information based on iS3 platform. Chin J Rock Mech Eng. 2017; 36(10): 2350-2359. Chinese
|
[14] |
Zhang L., Zhu H.. Three-dimensional Hoek-Brown strength criterion for rocks. J Geotech Geoenviron Eng. 2007; 133(9): 1128-1135.
|
[15] |
Zhu H., Wu W., Chen J., Ma G., Liu X., Zhuang X.. Integration of three dimensional discontinuous deformation analysis (DDA) with binocular photogrammetry for stability analysis of tunnels in blocky rockmass. Tunn Undergr Space Technol. 2016; 51: 30-40.
|
[16] |
Gigli G., Casagli N.. Semi-automatic extraction of rock mass structural data from high resolution LIDAR point clouds. Int J Rock Mech Min Sci. 2011; 48(2): 187-198.
|
[17] |
Chen J., Zhu H., Li X.. Automatic extraction of discontinuity orientation from rock mass surface 3D point cloud. Comput Geosci. 2016; 95: 18-31.
|
[18] |
Aydin A.. ISRM Suggested method for determination of the Schmidt hammer rebound hardness: Revised version. Int J Rock Mech Min Sci. 2009; 46(3): 627-634.
|
[19] |
Wu W., Zhu H., Lin J.S., Zhuang X., Ma G.. Tunnel stability assessment by 3D DDA-key block analysis. Tunn Undergr Space Technol. 2018; 71: 210-214.
|
[20] |
He C., Geng P., Yan Q., Feng K.. Status of seismic analysis methods for traffic tunnel and their applicability suggestions in China. J Earthq Tsunami. 2013; 7(3): 1350026.
|
[21] |
Yu H., Yuan Y., Bobet A.. Seismic analysis of long tunnels: a review of simplified and unified methods. Undergr Sp. 2017; 2(2): 73-87.
|
[22] |
Yu H., Yong Y., Xu G., Su Q., Xiao Y., Chong L.. Multi-point shaking table test for long tunnels subjected to non-uniform seismic loadings—part II: application to the HZM immersed tunnel. Soil Dyn Earthq Eng. 2016; 108: 187-195.
|
[23] |
Yuan Y., Yu H., Li C., Xiao Y., Yuan J.. Multi-point shaking table test for long tunnels subjected to non-uniform seismic loadings—part I: theory and validation. Soil Dyn Earthq Eng. 2016; 108: 177-186.
|
[24] |
Yu H., Zhang Z., Chen J., Bobet A., Mi Z., Yong Y.. Analytical solution for longitudinal seismic response of tunnel liners with sharp stiffness transition. Tunn Undergr Space Technol. 2018; 77: 103-114.
|
[25] |
Zhou J., Yang Z.. Discussion on key issues of TBM construction for long and deep tunnels. Rock Soil Mech. 2014; 35: 299-305. Chinese
|
[26] |
He M.C., Li C., Gong W.L., Wang J., Tao Z.G.. Support principles of NPR bolts/cables and control techniques of large deformation. Chin J Rock Mech Eng. 2016; 35: 1513-1529.
|
[27] |
Li X., Li Y., Zhou S.. Study and application of forecasting system for water inrush under high pressure in Xiamen submarine tunnel construction based on GIS. Proc Environ Sci. 2011; 10(Pt B): 999-1005.
|
[28] |
Wang X., Tan Z., Wang M., Zhang M.. Analysis of interaction between surrounding rock and lining in high water-level tunnels with controlled drainage. Rock Soil Mech. 2008; 29(6): 1623-1628.
|
[29] |
Zhao Y., Li P., Tian S.. Prevention and treatment technologies of railway tunnel water inrush and mud gushing in China. J Rock Mech Geotech Eng. 2013; 5(6): 468-477.
|
[30] |
Zhang M.. Yichang–Wanzhou Railway tunnel construction technology of karst fault. Chinese
|
[31] |
Zhuang H., Mu J.. The prevention and treatment of large cross section tunnel mud gushing in karst areas. Railw Eng. 2009; 6: 49-51.
|
[32] |
Yang D., Zhang P.. Study on the rapid treatment method of mud gushing and land-slide at shallowly covered karst section in Yunwu Mountain Tunnel. West-China Explor Eng. 2008; 10: 192-194.
|
[33] |
Yan Z.G., Zhu H.H., Yang Q.X.. Large-scaled fire testing for long-sized road tunnel. Tunn Undergr Sp Technol. 2006; 21(3–4): 282.
|
[34] |
Berner M.A., Day J.R.. A new concept for ventilating long twin-tube tunnels. Aerodyn Vent Veh Tunnels. 1991; 811-820.
|
[35] |
Huang Y., Fang G., Li X.. An optimal control method of long tunnel ventilation based on variable domain fuzzy control. In: Proceedings of the 2018 Chinese Automation Congress; 2018 Nov 30–Dec 2; Xi’an, China. New York: IEEE; 2018. p. 2626-2630.
|
[36] |
Hu LH. Studies on thermal physics of smoke movement in tunnel fires [dissertation]. Hefei: University of Science and Technology of China; 2006. Chinese.
|
[37] |
Yan Z., Tian Y., Zhu H., Yu L.. Tunnel fire dynamic early-warning, evacuation and rescue system and its application. Mod Tunn Technol. 2016; 53(6): 31-35.
|
[38] |
Zhang Y., Ju J.W., Zhu H., Guo Q., Yan Z.. Micromechanics based multi-level model for predicting the coefficients of thermal expansion of hybrid fiber reinforced concrete. Constr Build Mater. 2018; 190: 948-963.
|
[39] |
Yang P., Shi C., Gong Z., Tan X.. Numerical study on water curtain system for fire evacuation in a long and narrow tunnel under construction. Tunn Undergr Space Technol. 2019; 83: 195-219.
|
[40] |
Yeung J.S., Wong Y.D.. Road traffic accidents in Singapore expressway tunnels. Tunn Undergr Space Technol. 2013; 38: 534-541.
|
[41] |
Shi P., Li P.. Mechanism of soft ground tunnel defect generation and functional degradation. Tunn Undergr Sp Technol. 2015; 50: 334-344.
|
[42] |
Shen Z.Y., Tan Z.. Application research on GRP5000 tunnel inspection car in Shanghai subway. Shanxi Archit. 2013; 39(27): 158-159.
|
[43] |
Hada A., Soga K., Liu R., Wassell I.J.. Lagrangian heuristic method for the wireless sensor network design problem in railway structural health monitoring. Mech Syst Signal Process. 2012; 28: 20-35.
|
[44] |
Schwamb T., Soga K., Mair R.J., Elshafie M.Z., Sutherden R., Boquet C.,
|
[45] |
Hoult N.A., Soga K.. Sensing solutions for assessing and monitoring tunnels. In:
|
[46] |
Huang H., Liu T., Xie X.. Application of GPR to grouting distribution behind segment in shield tunnel. Rock Soil Mech. 2003; 24: 353-356.
|
[47] |
Lyu X., Gu H., Wang Y., Li Z., Shen S., Zhang F.. Design and implementation of a quadrotor tail-sitter VTOL UAV. In: Proceedings of the 2017 IEEE International Conference on Robotics and Automation; 2017 May 29–Jun 3; Singapore, Singapore. New York: IEEE; 2017. p. 3924-3930.
|
[48] |
Li X., Lin X., Zhu H., Wang X., Liu Z.. Condition assessment of shield tunnel using a new indicator: the tunnel serviceability index. Tunn Undergr Space Technol. 2017; 67: 98-106.
|
[49] |
Chen X., Li X., Zhu H.. Condition evaluation of urban metro shield tunnels in Shanghai through multiple indicators multiple causes model combined with multiple regression method. Tunn Undergr Space Technol. 2019; 85: 170-181.
|
[50] |
Yu C., Lam K.C., Yung P.. Factors that influence the concession period length for tunnel projects under bot contracts. J Manage Eng. 2014; 30(1): 108-121.
|
[51] |
Zhou X., Pan H., Shen Y.. China’s underground comprehensive utility tunnel project of PPP mode risk identification. In: Proceedings of the International Conference on Construction and Real Estate Management 2017; 2017 Nov 10–12; Guangzhou, China. Reston: American Society of Civil Engineers; 2017. p. 318-327.
|
[52] |
Ma J.Q.. Influence of non-technical factors on the construction of tunnels. Adv Mater Res. 2011; 201–203: 1300-1307.
|
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