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Review Article

Stability reliability of a cutting slope in Laohuzui Hydropower Station in Tibet of China

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Pages 935-957 | Received 10 Aug 2018, Accepted 25 Nov 2018, Published online: 03 Feb 2019

References

  • Balmer G. 1952. A general analytical solution for Mohr’s envelope. Am Soc Test Mater. 52:1260–1271.
  • Dai SH, Wang MO. 1992. Reliability analysis in engineering applications. New York: Van Nostrand Reinhold.
  • Duncan JM. 2000. Factors of safety and reliability in geotechnical engineering. J Geotech Geoenviron Eng. 126(4):307–316.
  • Edelbro C. 2004. Evaluation of rock mass strength criteria. Lulea: Lulea Tekniska Universitet.
  • Fernandez-Rodriguez R, Gonzalez-Nicieza C, Lopez-Gayarre F, Amor-Herrera E. 2014. Characterization of intensely jointed rock masses by means of in situ penetration tests. Int J Rock Mech Mining Sci. 72:92–99.
  • Gao D. 2012. Implications of the Fresnel-zone texture for seismic amplitude interpretation. Geophysics. 77(4):35–44.
  • Harr ME. 1987. Reliability-based design in civil engineering. New York: McGraw-Hill Book Company.
  • Hoek E. 1998. Reliability of Hoek-Brown estimates of rock mass properties and their impact on design. Int J Rock Mech Mining Sci. 35(1):63–68.
  • Hoek E, Carranza-Torres C, Corkum B. 2002. Hoek-Brown criterion – 2002 edition. In: Hammah RE, et al., editors. Proceedings of the 5th North American Rock Mechanics Symposium and the 17th Tunnelling Association of Canada: NARMS-TAC 2002; Vol. 1. Toronto, Canada: University of Toronto Press. p. 267–273.
  • Hoek E, Karakas A. 2008. Practical rock engineering. Environ Eng Geosci. 14(1):55–57.
  • Johari A, Fazeli A, Javadi AA. 2013. An investigation into application of jointly distributed random variables method in reliability assessment of rock slope stability. Comp Geotech. 47(47):42–47.
  • Kayabasi A, Gokceoglu C. 2018. Deformation modulus of rock masses: an assessment of the existing empirical equations. Geotech Geol Eng. 36(4):2683–2699.
  • Lin H, Xiong W, Cao P. 2013. Stability of soil nailed slope using strength reduction method. Eur J Environ Civil Eng. 17(9):872–885.
  • Lu Q, Chan CL, Low BK. 2013. System reliability assessment for a rock tunnel with multiple failure modes. Rock Mech Rock Eng. 46(4):821–833.
  • Lu Q, Xiao ZP, Ji J, Zheng J, Shang YQ. 2017. Moving least squares method for reliability assessment of rock tunnel excavation considering ground-support interaction. Comp Geotech. 84:88–100.
  • Power Trade Criterion of P. R. China. 2006. Design specification for slope of hydropower and water conservancy project (DL/T 5353-2006). BeiJing: Power Construction Corporation of China. (In Chinese).
  • Priest SD. 2005. Determination of shear strength and three-dimensional yield strength for the Hoek-Brown criterion. Rock Mech Rock Eng. 38(4):299–327.
  • Rajesh S, Umrao RK, Singh TN. 2013. Probabilistic analysis of slope in Amiyan landslide area, Uttarakhand. Geomat Nat Hazard Risk. 4(1):13–29.
  • Rosenblueth E. 1981. Two-point estimates in probabilities. J Appl Math Model. 5(5):329–335.
  • Taheri A, Tani K. 2010. Characterization of a sedimentary soft rock by a small in-situ triaxial test. Geotech Geol Eng. 28(3):241–249.
  • U.S. Army Corps of Engineers. 1997. Engineering and design introduction to probability and reliability methods for use in geotechnical engineering. Engineering Technical Letter No. 1110-2-547. Washington, DC: Department of the Army.
  • Vasarhelyi B, Kovacs D. 2016. Empirical methods of calculating the mechanical parameters of the rock mass. Period Polytech Civil Eng. 61(1):38–50.
  • Wang XG, Zhao YF, Lin XC. 2011. Determination of mechanical parameters for jointed rock masses. J Rock Mech Geotech Eng. 3(s1):398–406.
  • Wei YF, Xia M, Ye F, Fu WX. 2018. Effect of drag force on stability of residual soil slopes under surface runoff. Geomat Nat Haz Risk. 9(1):488–500.
  • Wiles TD. 2006. Reliability of numerical modelling predictions. Int J Rock Mech Mining Sci. 43(3):454–472.
  • Wolff TF. 1996. Probabilistic slope stability in theory and practice. In: Conference on Uncertainty in the Geologic Environment – from Theory to Practice. Madison, USA: American Society of Civil Engineers. p. 419–433.