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Published in: Rock Mechanics and Rock Engineering 2/2012

01-03-2012 | Original Paper

Earthquake Stability Analysis of Rock Slopes: a Case Study

Authors: Shilpa Pal, Amir M. Kaynia, Rajinder K. Bhasin, D. K. Paul

Published in: Rock Mechanics and Rock Engineering | Issue 2/2012

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Abstract

Stability analysis of Surabhi landslide in the Dehradun and Tehri districts of Uttaranchal located in Mussoorie, India, has been simulated numerically using the distinct element method focusing on the weak zones (fracture). This is an active landslide on the main road toward the town centre, which was triggered after rainfall in July–August 1998. Understanding the behaviour of this landslide will be helpful for planning and implementing mitigation measures. The first stage of the study includes the total area of the landslide. The area identified as the zone of detachment is considered the most vulnerable part of the landslide. Ingress of water and increased pore pressures result in reduced mobilized effective frictional resistance, causing the top layer of the zone of detachment to start moving. The corresponding total volume of rock mass that is potentially unstable is estimated to 11.58 million m3. The second stage of this study includes a 2D model focussing only on the zone of detachment. The result of the analyses including both static and dynamic loading indicates that most of the total displacement observed in the slide model is due to the zone of detachment. The discontinuum modelling in the present study gives reasonable agreement with actual observations and has improved understanding of the stability of the slide slope.

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Literature
go back to reference Barton N, Choubey V (1977) The shear strength of rock joints in theory and practice. Rock Mech 1–2:1–54CrossRef Barton N, Choubey V (1977) The shear strength of rock joints in theory and practice. Rock Mech 1–2:1–54CrossRef
go back to reference Barton NR, Lien R, Lumsden A (1974) Engineering classification of rock masses for the design of tunnel support. Rock Mech 6:189–239CrossRef Barton NR, Lien R, Lumsden A (1974) Engineering classification of rock masses for the design of tunnel support. Rock Mech 6:189–239CrossRef
go back to reference Bhasin R, Kaynia AM (2004) Static and dynamic simulation of a 700 m high rock slope in western Norway. Eng Geol 71:213–260CrossRef Bhasin R, Kaynia AM (2004) Static and dynamic simulation of a 700 m high rock slope in western Norway. Eng Geol 71:213–260CrossRef
go back to reference Bieniawski ZT (1979) The geomechanics classification in rock engineering applications. Proceedings—4th international congress on rock mechanics, ISRM, Montreaux, vol 2, pp 41–48 Bieniawski ZT (1979) The geomechanics classification in rock engineering applications. Proceedings—4th international congress on rock mechanics, ISRM, Montreaux, vol 2, pp 41–48
go back to reference Coulson JH (1972) Shear strength of flat surfaces in rock. In: Proceedings—13th symposium on rock mechanics, Urbana, III, American Society of Civil Engineers, NY, pp 77–105 Coulson JH (1972) Shear strength of flat surfaces in rock. In: Proceedings—13th symposium on rock mechanics, Urbana, III, American Society of Civil Engineers, NY, pp 77–105
go back to reference Cundall PA (1987) Distinct element models of rock and spoil structure. Analytical and computational methods in engineering rock mechanics, George Allen and Unwin, London, pp 129–136 Cundall PA (1987) Distinct element models of rock and spoil structure. Analytical and computational methods in engineering rock mechanics, George Allen and Unwin, London, pp 129–136
go back to reference Eberhardt UE, Stead D (1998) Mechanisms of slope instability in thinly bedded surface mine slopes. In: Moore DP, Hungr O (eds) Proceedings of 8th congress of the international association for engineering geology and environment, Vancouver. Balkema, Rotterdam, pp 3011–3018 Eberhardt UE, Stead D (1998) Mechanisms of slope instability in thinly bedded surface mine slopes. In: Moore DP, Hungr O (eds) Proceedings of 8th congress of the international association for engineering geology and environment, Vancouver. Balkema, Rotterdam, pp 3011–3018
go back to reference Giani GP (1992) Rock slope stability analysis. A.A. Balkema, Rotterdam Giani GP (1992) Rock slope stability analysis. A.A. Balkema, Rotterdam
go back to reference Goodman RE (1989) Introduction to rock mechanics, 2nd edn. Wiley and Sons, New York Goodman RE (1989) Introduction to rock mechanics, 2nd edn. Wiley and Sons, New York
go back to reference Gupta VK, Ahmad I (2007) Geotechnical estimation of Surabhi Resort Landslide in Mussoorie, Garhwal Himalayas, India. Himal Geol 28(2):21–32 Gupta VK, Ahmad I (2007) Geotechnical estimation of Surabhi Resort Landslide in Mussoorie, Garhwal Himalayas, India. Himal Geol 28(2):21–32
go back to reference Hoek E (1994) Strength of rock and rock masses. ISRM News J 2(2):4–16 Hoek E (1994) Strength of rock and rock masses. ISRM News J 2(2):4–16
go back to reference Hoek E (2000) Practical rock engineering. Balkema, Netherlands, p 313 Hoek E (2000) Practical rock engineering. Balkema, Netherlands, p 313
go back to reference Hoek E, Bray JW (1981) Rock slope engineering. Institute of Mining and Metallurgy, London Hoek E, Bray JW (1981) Rock slope engineering. Institute of Mining and Metallurgy, London
go back to reference Hoek E, Brown ET (1997) Practical estimation of rock mass strength. Int J Rock Mech Min Sci Geomech Abstr 34:1165–1186CrossRef Hoek E, Brown ET (1997) Practical estimation of rock mass strength. Int J Rock Mech Min Sci Geomech Abstr 34:1165–1186CrossRef
go back to reference Hudson JA, Harrison JP (1997) Engineering rock mechanics. An introduction to the principle. Pergamon, Oxford Hudson JA, Harrison JP (1997) Engineering rock mechanics. An introduction to the principle. Pergamon, Oxford
go back to reference IS 1893 (Part I) (2002) Indian standard criteria for earthquake resistant design of Structures (5th revision), Bureau of Indian Standards, New Delhi IS 1893 (Part I) (2002) Indian standard criteria for earthquake resistant design of Structures (5th revision), Bureau of Indian Standards, New Delhi
go back to reference Itasca (2003) User guide manuals 3DEC version 3.0 Itasca (2003) User guide manuals 3DEC version 3.0
go back to reference Itasca (2004) Dynamic analysis. User’s guide UDEC version 4.0 Itasca (2004) Dynamic analysis. User’s guide UDEC version 4.0
go back to reference Liu YQ, Li HB, Zhao J, Li JR, Zhou QC (2004) UDEC simulation for dynamic response of a rock slope subject to explosions. Int J Rock Mech Min Sci 41(3):474CrossRef Liu YQ, Li HB, Zhao J, Li JR, Zhou QC (2004) UDEC simulation for dynamic response of a rock slope subject to explosions. Int J Rock Mech Min Sci 41(3):474CrossRef
go back to reference Lorig LJ, Hart RD, Cundall PA (1991) Slope stability analysis of jointed rock using the distinct element method. Transportation Research Record 1330, TRB, National Research Council, Washington, DC, pp 1–9 Lorig LJ, Hart RD, Cundall PA (1991) Slope stability analysis of jointed rock using the distinct element method. Transportation Research Record 1330, TRB, National Research Council, Washington, DC, pp 1–9
go back to reference Mukherjee S, Gupta VK (2002) Wavelet-based generation of spectrum-compatible time-histories. Soil Dyn Earthq Eng 22(9):799–804CrossRef Mukherjee S, Gupta VK (2002) Wavelet-based generation of spectrum-compatible time-histories. Soil Dyn Earthq Eng 22(9):799–804CrossRef
go back to reference Stead D, Eberhardt UE, Coggan JS (2006) Developments in the characterisation of complex rock slope deformation and failure using numerical modelling techniques. Eng Geol 83:217–235CrossRef Stead D, Eberhardt UE, Coggan JS (2006) Developments in the characterisation of complex rock slope deformation and failure using numerical modelling techniques. Eng Geol 83:217–235CrossRef
Metadata
Title
Earthquake Stability Analysis of Rock Slopes: a Case Study
Authors
Shilpa Pal
Amir M. Kaynia
Rajinder K. Bhasin
D. K. Paul
Publication date
01-03-2012
Publisher
Springer Vienna
Published in
Rock Mechanics and Rock Engineering / Issue 2/2012
Print ISSN: 0723-2632
Electronic ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-011-0145-6

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