REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198...

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193 REFERENCES AGS (2007) Guideline for landslide susceptibility, hazard and risk zoning for land use planning. Australian Geomechanics, 42:13-36. Ahmad M, Ansari MK, Singh TN (2013) Instability investigations of basaltic soil slopes along SH-72, Maharashtra, India. Geomatics, Natural Hazards and Risk, DOI: 10.1080/19475705.2013.826740. Ahmad M, Umrao RK, Ansari MK, Rajesh Singh, Singh TN (2013) Assessment of Rockfall Hazard along the Road cut slopes of State Highway-72, Maharashtra, India, 3(1):15-23. Akbar T, Ha S (2011) Landslide hazard zoning along Himalaya Kaghan Valley of Pakistan-by integration of GPS, GIS, and remote sensing technology. Landslides, 8(4):527-540. Akgul A, Bulut F (2007) GIS-based landslide susceptibility for Arsin- Yomra (Trabzon, North Turkey) region. Environmental Geology, 51(8):1377-1387. Akgun A (2011) A comparison of landslide susceptibility maps produced by logistic regression, multi-criteria decision, and likelihood ratio methods: a case study at Lzmir, Turkey. Landslides, DOI: 10.1007/s10346-011-0283-7. Akgun A, Dag S, Bulut F (2008) Landslide susceptibility mapping for a landslide-prone area (Findikli, NE of Turkey) by likelihood-frequency ratio and weighted linear combination models. Environmental Geology, 54(6):1127-1143. Aleotti P, Baldelli P, Polloni G (1996) Landsliding and Flooding Event Triggered by Heavy Rains in the Tanaro Basin (Italy). In: Proceeding International Congress Interpraevent, Garmisch-PartenKirchen, 1:435-446. Aleotti P, Chowdhury R (1999) Landslide hazard assessment: summary review and new perspectives. Bulletin of Engineering Geology and the Environment, 58:21- 44. Anbalagan R (1992) Landslide Hazard Evaluation and Zonation Mapping in Mountainous Terrain. Engineering Geology, 32:269-277. Anbalagan R, Chakraborty D, Kohli A (2008) Landslide hazard zonation (LHZ) mapping on meso-scale for systematic town planning in mountainous terrain. Journal of Scientific & Industrial Research, 67: 486- 497. Anbalagan R, Kohli A, Chakraborty D (2008) Geotechnical evaluation of Harmony landslide on Karnaprayag-Gwaldam Road, Uttarakhand Himalaya. Current Science, 94(12):1613-1619. Anbazhagan S, Ramesh V (2014) Landslide hazard zonation mapping in Ghat road section of Kolli Hills, India. Journal of Mountain Science, 11(5):1308-1325.

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REFERENCES

AGS (2007) Guideline for landslide susceptibility, hazard and risk zoning for land use planning. Australian Geomechanics, 42:13-36.

Ahmad M, Ansari MK, Singh TN (2013) Instability investigations of basaltic soil slopes along SH-72, Maharashtra, India. Geomatics, Natural Hazards and Risk, DOI: 10.1080/19475705.2013.826740.

Ahmad M, Umrao RK, Ansari MK, Rajesh Singh, Singh TN (2013) Assessment of Rockfall Hazard along the Road cut slopes of State Highway-72, Maharashtra, India, 3(1):15-23.

Akbar T, Ha S (2011) Landslide hazard zoning along Himalaya Kaghan Valley of Pakistan-by integration of GPS, GIS, and remote sensing technology. Landslides, 8(4):527-540.

Akgul A, Bulut F (2007) GIS-based landslide susceptibility for Arsin-Yomra (Trabzon, North Turkey) region. Environmental Geology, 51(8):1377-1387.

Akgun A (2011) A comparison of landslide susceptibility maps produced by logistic regression, multi-criteria decision, and likelihood ratio methods: a case study at Lzmir, Turkey. Landslides, DOI: 10.1007/s10346-011-0283-7.

Akgun A, Dag S, Bulut F (2008) Landslide susceptibility mapping for a landslide-prone area (Findikli, NE of Turkey) by likelihood-frequency ratio and weighted linear combination models. Environmental Geology, 54(6):1127-1143.

Aleotti P, Baldelli P, Polloni G (1996) Landsliding and Flooding Event Triggered by Heavy Rains in the Tanaro Basin (Italy). In: Proceeding International Congress Interpraevent, Garmisch-PartenKirchen, 1:435-446.

Aleotti P, Chowdhury R (1999) Landslide hazard assessment: summary review and new perspectives. Bulletin of Engineering Geology and the Environment, 58:21- 44.

Anbalagan R (1992) Landslide Hazard Evaluation and Zonation Mapping in Mountainous Terrain. Engineering Geology, 32:269-277.

Anbalagan R, Chakraborty D, Kohli A (2008) Landslide hazard zonation (LHZ) mapping on meso-scale for systematic town planning in mountainous terrain. Journal of Scientific & Industrial Research, 67: 486-497.

Anbalagan R, Kohli A, Chakraborty D (2008) Geotechnical evaluation of Harmony landslide on Karnaprayag-Gwaldam Road, Uttarakhand Himalaya. Current Science, 94(12):1613-1619.

Anbazhagan S, Ramesh V (2014) Landslide hazard zonation mapping in Ghat road section of Kolli Hills, India. Journal of Mountain Science, 11(5):1308-1325.

Page 2: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

194

Anderson MG, Holcombe E (2013) Community-Based Landslide Risk Reduction–Managing Disasters in Small Steps. Library of Congress Cataloging-in-Publication Data. The World Bank, Washington, DC.

Arora MK, Das AS, Gupta RP (2004) An artificial neural network approach for landslide hazard zonation in the Bhagirathi (Ganga) Valley, Himalayas. International Journal of Remote Sensing, 25(3):559-572.

Atkinson PM, Massari R (1998) Generalized linear modeling of susceptibility to landsliding in the central Apennines, Italy. Computer & Geosciences, 24:373-385.

Australian Geomechanics Society (2002) Landslide risk management concepts and guidelines. Australian Geomechanics Society sub-committee on landslide risk management, pp.51–70.

Avinash KG, Ashamanjari KG (2010) A GIS and frequency ratio based landslide susceptibility mapping: Aghnashini river catchment, Uttara Kannada, India. International J. Geometrics and Geosciences, 1(3):343-354.

Ayalew L, Yamagishi H, Ugawa N, (2004) Landslide susceptibility mapping using GIS-based weighted linear combination, the case in Tsugawa area of Agano River, Niigata prefecture, Japan. Landslides, 1: 73-81.

Ayalew L, Yamagishi H (2005) The application of GIS-based logistic regression for landslide susceptibility mapping in the Kakuda-Yahiko mountains, Central Japan. Geomorphology, 65:15-31.

Baba K, Bahi L, Ouadif L, Akhssas A (2012) Slope stability Evaluations by Limit Equilibrium and Finite Element Methods Applied to a Railway in the Moroccan Rif. Open Journal of Civil Engineering, 2:27-32.

Balasubramani K, Kumaraswamy K (2013) Application of Geospatial Technology and Information Value Technique in Landslide Hazard Zonation Mapping: A Case Study of Giri Valley, Himachal Pradesh, Disaster Advances, 6(1):38-47.

Ballard TM, Willington RP (1975) Slope instability in relation to timber harvesting in the Chilliwack Provincial Forest. The Forestry Chronicle, 51:59-62.

Barton N, Lien R, Lunde J (1974) Engineering classification of rock masses for the design of tunnel support, Rock Mechanics and Rock Engineering, 6(4):189-236.

Begueria S (2006) Validation and evaluation of predictive models in hazard assessment and risk management. Natural hazards, 37:315-329.

Bhandari RK (1987) Slope stability in the fragile Himalaya and strategy for development. Ninth IGS Lecture. Journal of the IGE, 17(1): 1-78.

Bieniawski ZT (1973) Engineering classification of jointed rock masses. Trans. S. Afr. Inst. Civ. Eng., 15(12):355-344.

Page 3: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

195

Bieniawski ZT (1976) Rock mass classification in rock engineering. In: Bieniawski, ZT (Ed.), Exploration for Rock Engineering, Proceedings of the Symposium Expl. Rock Engineering, Johannesburg, pp.97–106.

Bieniawski ZT (1979) The Geomechanics Classification in rock engineering applications. In Proceedings of the 4th International Congress on Rock Mechanics, Montreux, chap. 5, pp.41-48.

Bieniawski ZT (1989) Engineering Rock Mass Classifications-A Complete Manual for Engineers and Geologists in Mining, Civil, and Petroleum Engineering, John Wiley & Sons, New York. 251 pp.

Biernatowski K (1976) Stability of Slopes in Variational and Probabilistic Solutions. European Conference on Soil Mechanics and Foundation Engineering, Vienna, Vol.I, pp.1-1.

Bishop AW (1955) “The Use of the Slip Circle in the Stability Analysis of Slopes”, Geotechnique, 5(1):7-17.

Bishop AW, Morgenstern NR (1960) Stability coefficients for earth slopes. Geotechnique. 10:129-150.

Bonham-Carter GF (1994) Geographic information systems for geoscientists: modelling with GIS. Pergamon, Oxford, New York, pp.292-302.

Brabb EE (1984) Innovative approaches to landslide hazard and risk mapping. In: Proceedings of 4th International Symposium on Landslides, Totonto, Canada. Volume 1. Vancouver, Canada: BiTech Publishers. pp 307-324.

Bui D, Pradhan B, Lofman O, Dick O (2012) Landslide susceptibility assessment in the Hoa Binh Province of Vietnam: a comparison of the Levenberg-Marquardt and Bayesian regularized neural networks. Geophys. J. Roy. Astron. Soc., 171–172:12–29.

Bureau of Indian Standard (1978) IS 8764: Method of determination of point load strength index of rocks, Bureau of Indian standards, New Delhi.

Bureau of Indian Standard (1986) IS 2720 (Part 13): Methods of Test for Soils, Direct Shear Test, New Delhi.

Bureau of Indian Standard (1997) IS 13365 (Part 3): Quantitative classification system of rock mass guidelines: Determination of Slope Mass Rating.

Bureau of Indian Standard (1998) IS 8764: Methods for Determination of Point Load Strength Index of Rocks, New Delhi.

Bureau of Indian Standard (1998) IS: 14496 (Part 2), Preparation of Landslide Hazard Zonation Maps in Mountainous terrains – Guidelines, Part 2 Macro-zonation, BIS, New Delhi.

Bureau of Indian Standard (1998) IS 13365 (Part 1): 1998. Quantitative classification systems of rock mass guidelines: Part 1 Rock Mass Rating (RMR) for predicting Engineering Properties.

Page 4: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

196

Caine N (1980) The rainfall intensity-duration control of shallow landslides and debris flows. Geografiska Annaler. 62(A):23–27.

Cancelli A, Nova R (1985) Landslides in soil debris cover triggered by rainstorms in Valtellina (Central Alps-Italy), Proceedings 4th International Conference Field Workshop on Landslides, Tokyo, 267-272.

Caniani D, Pascale S, Sdao F, Sole A (2008) Neural networks and landslide susceptibility: a case study of the urban area of Potenza. Natural Hazards, 45(1):55-72.

Capecchi F, Focardi P (1988) Rainfall and landslides: Research into a critical precipitation coefficient in an area of Italy. In: Proceedings of the 5th International Symposium on Landslides, Lausanne, pp.1031-1136.

Carrara A (1983) Multivariate models for landslide hazard evaluation. Mathematical Geology, 15(3):403-426.

Carrara A, Cardinali M, Detti R, Guzzetti F, Pasqui V, Reichenbach P (1991) GIS technique and statistical models in evaluating landslide hazard. Earth Surface Process and Land Forms, 16:427-445.

Catani F, Lagomarsino S, Segoni S, Tofani V (2013) Landslide susceptibility estimation by random forests technique: sensitivity and scaling issues. Natural Hazards and Earth System Sciences, 13:2815-2831.

Champati Ray PK, Dimri S, Lakhera RC, Sati S (2007) Fuzzy-based method for landslide hazard assessment in active seismic zone of Himalaya, Landslides, 4:101-111.

Chand D (2008) Landslide monitoring in space and time using optical satellite imagery and DEM derived parameters: case study from Garhwal Himalaya, Uttarakhand, India. International Institute for Geo-information Science and Earth Observation, Enschede, The Netherlands and Indian Institute of Remote Sensing, National Remote Sensing Agency (NRSA), Department of Space, Dehradun, India.

Chang K, Liu J (2004) Geo-Imagery Bridging continents. Landslide features interpreted by neural network method using a high resolution satellite image and digital topographical data. Proceedings of 20th ISPRS Congress, Istambul.

Chau K, Sze Y, Fung M, Wong E, Fong E, Chan L (2004) Landslide hazard analysis for Hong Kong using landslide inventory and GIS. Compt. Rendus. Geosci., 30:429–443.

Chauhan S, Sharma M, Arora MK, Gupta NK (2010) Landslide Susceptibility Zonation through ratings derived from Artificial Neural Network. International Journal of Applied Earth Observations and Geoinformation, 12:340-350.

Chen Z (1995) Recent developments in slope stability analysis. In: Fujii, T. (Ed.), Keynote Lecture: Proc. 8th Int. Cong. Rock Mech, 3:1041–1048.

Page 5: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

197

Chen RH, Chameau JL (1982) Three-dimensional Slope Stability Analysis, Fourth International Conference on Numerical method, Edmonton, Canada, pp.655-662.

Cheng TA, Lateh H, Peng KS (2008) Intelligence explanation system on landslide dissemination: a case study in Malaysia. In: Proceedings of the first world landslide forum report: Implementing the 2006 Tokyo action plan on the international program on landslides (IPL), pp. 330–333.

Chi, KH, Park NW, Chung CJ (2002) Fuzzy logic integration for landslide hazard mapping using spatial data from Boeun, Korea. Proceedings of Symposium on Geospatial Theory, Processing and Applications, Ottawa.

Chigira M, Nakamoto M, Nakata E (2002) Weathering mechanisms and their effects on the landsliding of ignimbrite subject to vapor-phase crystallization in the Shirakawa pyroclastic flow, northern Japan. Engineering Geology, 66(1-2): 111-125.

Choi J, Oh HJ, Lee HJ, Lee C, Lee S (2012) Combining landslide susceptibility maps obtained from frequency ratio, logistic regression, and artificial neural network models using ASTER images and GIS. Engineering Geology, 124:12-23.

Chung CF, Fabbri AG, van Westen CJ (1995) Multivariate Regression Analysis for Landslide Hazard Zonation, Geographical Information Systems in Assessing Natural Hazards (A. Carrera and F. Guzzetti, editors, Kluwer Academin Publishers, Dordrecht, The Netherlands, pp.107-133.

Chung C-JF, Fabbri AG (1999) Probabilistic prediction models for landslide hazard mapping. Photogrammetric Engineering and Remote Sensing 65(12):1389–1399.

Churchill RR (1982) Aspect-induced differences in hillslope processes. Earth Surface Processes and Landforms, 7(2):171-182.

Clerici A, Perego S, Tillini C, Vescovi P (2002) A procedure for landslide susceptibility zonation by the conditional analysis method. Geophys. J. Roy. Astron. Soc. 48:349-364.

Coates DF (1970) Rock Mechanical Principle. Department of Energy, Mines & Resources, monograph 874, Canada, Chapter 6.

Coates DF, Sag R (1973) Rock anchors in mining: A guide for their utilization and installation. Technical bulletin TB 181: Canada Centre for Mineral and Energy Technology (formerly Mines Branch), Ottawa, Canada, 47p.

Coe J, Godt J, Baum R, Buchnam R, Michael J (2004) Landslide susceptibility from topography in Guatemala. In: Lacerda W, Ehrlich M, Fontura S, Sayao A (eds) Landslides: Evaluation and stabilization, 1st edn. Taylor and Francis Group, London, pp 69–78.

Crozier MJ, Glade T (2005) Landslide Hazard and risk: Issues, concepts, and approach. In: Glade, T., Anderson, M., and Crozier, M. (eds): Landslide hazard and risk. Wiley, Chichester, 1-40.

Page 6: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

198

Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between single and double plane sliding of tetrahedral wedges, Int. J. Rock Mech. Mini. Sci. Geomech. Abstr. Vol.15, pp.217.

Cruden DM, Varnes DJ (1996) Landslide types and processes. In: Turner AK, Schuster RL (eds) Landslides: investigation and mitigation (Special Report). Washington, DC, USA: National Research Council, Transportation and Research Board Special Report 247, pp.36–75.

Daftaribesheli A, Ataei M, Sereshki F (2011) Assessment of rock slope stability using the Fuzzy Slope Mass Rating (FSMR) system. Applied Soft Computing, 11:4465-4473.

Dai FC, Lee CF, Li J, Xu ZW (2001) Assessment of landslide susceptibility on the natural terrain of Lantau Island, Hong Kong. Environmental Geology, 40:381-391.

Dai FC, Lee CF, Ngai YY (2002) Landslide risk assessment and management: an overview. Engineering Geology 64(1):65-87.

Dai FC, Lee CF (2002) Landslide characteristics and slope instability modeling using GIS:Lantau Island, Hong Kong. Geomorphology, 42:213-228.

Das I, Sahoo S, van Weston C, Stein A, Hack R (2010) Landslide susceptibility assessment using logistic regression and its comparison with a rock mass classification system, along a road section in the northern Himalayas (India). Geomorphology, 114:627-637.

Das I, Stein A, Kerle N, Dadhwal VK (2011) Probabilistic landslide hazard assessment using homogeneous susceptible units (HSU) along a national highway corridor in the northern Himalayas, India. Landslides, 8:293-308.

Deere DU, Hendron AJ, Patton FD, Cording EJ (1967) “Design of Surface and Near-surface Construction in Rock:, Failure and Breakage of Rock, ed. Fairhurst C, American Institute of Mining, Metallurgical and Petroleum Engineers, 8th U.S. Symp. on Rock Mechanics, Minneapolis, Minesota, pp.237–302.

Devkota KC, Kim GW, Lee HN, Ham JE (2009) Characteristics of Discontinuity Spacing in a Rock Mass. Proceedings of the International Conference on Rock Joints and Jointed Rock Masses, Tucson, Arizona, USA, January, 7-8.

Devoli G, Morales A, Hoeg K (2007) Historical landslides in Nicaragua—collection and analysis of data. Landslides 4(1):5-18. Dhakal AS, Amada T, Aniya M (2000) Landslide hazardmappingand its evaluation usingGIS: an investigation of samplingschemes for a grid-cell based quantitative method. Photogrammetric Engineering Remote Sensing, 66(8):981–989.

Dikau R, Brunsden D, Schrott L (1996) Landslide recognition: identification, movement and causes: identification, movement and courses. Wiley, New York.

Dorfman AG (1965) Variational method of Investigating the stability of slopes, Vop Geotekkhiki, Transp. Moscow, No.9.

Page 7: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

199

Dorfman AG (1970) Algorithms for Calcualtion Stability of Slopes by variational methods, Vop Geotekkhiki, Transp. Moscow, No.17.

Duman TY, Çan T, Emre Ö, Keçer M, Doğan A, Ateş Ş, Durmaz S (2005) Landslide inventory of southwestern Anatolia, Turkey. Engineering Geology, 77:99–114.

Duman TY, Can T, Gokceoglu C, Nefeslioglu HA, Sonmez H (2006) Application of logistic regression for landslide susceptibility zoning of Cekmece Area, Istanbul, Turkey.Environmental Geology, 51(2):241-256.

Duncan JM, Buchignani AL De Wet M (1987) “An Engineering Manual for Slope Stability Studies,” Virginia Polytechnic Institute, Blacksburg, 1987.

Duncan JM (1996) Soil Slope Stability Analysis� in Landslides: Investigation and Mitigation, Ed. A. K. Turner and R. L. Schuster. Special Report 247, Transportation Research Board. Washington, DC, pp.337-371.

Duzgoren-Aydin NS, Aydin A, and Malpas J (2002) Distribution of clay minerals along a weathered pyroclastic profile, Hong Kong. Catena, 50:17-40.

Ehret D, Rohn J, Dumperth C, Eckstein S, Ernstberger S, Otte K, Rudolph R, Wiedenmann J (2010) Frequency Ratio Analysis of Mass Movements in the Xiangxi Catchment, Three Gorges Reservoir Area, china. Journal of Earth Science, 21(6):824-834.

Elias PB, Bandis SC (2000) Neurofuzzy systems in landslide hazard assessment. In: Proc 4th Int Symp Spatial Accuracy Assessment in Natural Resources and Environ. Sci., pp.199–202.

Ercanoglu M, Gokceoglu C (2002) Assessment of landslide susceptibility for a landslide-prone area (north of Yenice, NW Turkey) by fuzzy approach. Environmental Geology, 41:720-730.

Ercanoglu M, Gokceoglu C (2004) Use of fuzzy relations to produce landslide susceptibility map of a landslide prone area (West Black Sea Region, Turkey). Engineering Geology, 75:229-250.

Farooq MS (1988) Preliminary Slope Stability Studies along the Kohala - Muzaffarabad Road, Azad Kashmir, Geological Bulletin of the Punjab University, Lahore, Pakistan, Vol. 25.

Fawcett T (2006) An introduction to ROC analysis. Pattern Recognition Letters 27:861–874.

Fellenius W (1927) Erdstatische Berechnungen mit Reibung und Kohäsion (Adhäsion) und unter Annahme kreiszylindrischer Gleitflächen, Ernst & Sohn, Berlin.

Fellenius W (1936) “Calculation of the Stability of Earth Dams.”, 2nd International Congress on Large Dams, International Commission on Large Dams, Washington, DC, 445-459.

Fernandez Merodo JA, Pastor M, Mira P (2004) Modeling of diffuse failure mechanisms of catastrophic landslides. Comput. Methods Appl. Mech. Eng. 193:2911-2939.

Page 8: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

200

Franklin JA, Broch E, Walton G (1971) Logging the mechanical character of rock. Transactions of the Institution of Mining and Metallurgy 80(A):1–9.

Franks CAM (1999) Characteristics of Some Rainfall-induced Landslides on Natural Slopes, Lantau Island, Hong Kong. Quarterly Journal of Engineering Geology. 32:247–259.

Fredlund DG (1984) Analytical Methods for Slope Stability Analysis. Proceeding of the Fourth International Symposium on Landslides, State-of-the-Art, pp. 229-250. September 16-21, Toronto, Canada.

Galli M, Ardizzone F, Cardinali M, Guzzetti F, Reichenbach P (2008) Comparing landslide inventory maps. Geophys. J. Roy. Astron. Soc. 94:268–289.

Gao J, (1993) Identification of topographic settings conductive to landsliding from DEM in Nelson County. Earth Surface Process and Landforms, 18:579-591.

Garber M (1973) Variational method for Investigating the stability of slopes, Soil Mechanics and Foundation Engineering, New York, 10(1):77-79.

Gaudio VD and Wasowki J (2004) Time probabilistic evaluation of seismically induced landslide hazard in Irpinia (Southern Italy) Soil Dynamics and Earthquake Engineering. 24:915-928.

Ghafoori M, Sadeghi H, Lashkaripour GR, Alimohammadi B (2006) Landslide hazard zonation using relative effect method. IAEG Paper number 474.

Ghosh S (2011) Knowledge guided empirical prediction of landslide hazard. ITC dissertation number 190.

Giani GB (1992) Rock slope stability analysis. Publ. A.A. Balkema/Rottardam/Brookfield. p.361.

Goodman RE (1976) Methods of Geological Engineering in Discontinuities Rocks, West publishing, San Francisco.

Goodman RE (1989) Introduction to Rock Mechanics, 2nd Edition, John Wiley & Sons, 289p.

Gomez H, Bradshow R, Mather P (2000) Monitoring the distribution of shallow landslide prone areas using Remote Sensing, DTM and GIS - a case study from the tropical Andes of Venezuela. In: Casanova E (ed) Remote Sensing in 21st century: Economic and Environmental applications. Balkema, Rotterndam, pp 395–401.

Griffiths DV (1980) Finite element analyses of walls, footings and slopes. PhD thesis, University of Man-chester.

Griffiths DV (1989) Computation of collapse loads in geomechanics by finite elements. Ing Arch. 59:237-244.

Page 9: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

201

Griffiths DV, Lane PA (1999) Slope stability analysis by finite elements. Geotechnique. 49(3):387-403.

GSI (1995) Geological and Mineral map of Tamil Nadu and Pondicherry.

GSI Report (2006) Geology and Mineral Resources of The States of India. Part IV-Tamil Nadu and Pondicherry.

Gupta RP, Joshi BC (1990) Landslide hazard zoning using the GIs approach-A case study from the Ramganga catchment, Himalayas. Engineering Geology, 28:119-131.

Guzzetti F, Carrara A, Cardinali M, Reichenbach P (1999) Landslide hazard evaluation: a review of current techniques and their application in a multi-scale study, Central Italy. 31:181-216

Guzzetti F, Reichenbach P, Cardinali M, Galli M, Ardizzone F (2005) Landslide hazard assessment in the Staffora basin, Northern Italian Apennines. Geomorphology, 72:272-299.

Hack HR (1998) Slope Stability Probability Classification. ITC Delf Publication, ITC Enschede, Netherlands. 273 pp.

Hack R, Price D, Rengers NA (2003) A new approach to rock slope stability—a probability classification (SSPC). Bulletin of Engineering Geology and the Environment 62:167–184.

Haines A, Terbrugge PJ (1991) Preliminary estimation of rock slope stability using rock mass classification system. In: Wittke, W. (Ed.), Proceedings 7th Congress on Rock Mechanics. ISRM, Rotterdam, pp. 887–892.

Hansen A (1984) Landslide hazard analysis. In: Brunsden D, Prior DB (Eds.), Slope Instability. John Wiley and Sons, New York. Pp.523-602.

Hansen A, Franks CAM, Kirk PA, Brimicombe AJ, Tung E (1995) Application of GIS to hazard assessment, with particular reference to landslides in Hong Kong. In: Carrara A, Guzzetti F (Eds.), Geographical Information Systems in Assessing Natural Hazards. Kluwer Academic Publisher, Dordrecht, The Netherlands, pp. 135-175.

Hocking GA (1976) A method of distinguishing between single and double plane sliding of tetrahedral wedges. Int. J. Rock Mechanics and Mining Sciences, 13:225-226.

Hoek E, Bray JW, Boyd JM (1973) The stability of a rock slope containing a wedge resting on two intersecting discontinuities. Quarterly J. Engineering Geoology. Vol. 6, No. 1.

Hoek E (1994) Strength of rock and rock masses, ISRM News Journal, 2(2):4-16.

Hoek E, Bray JW (1981) Rock Slope Engineering, Stephen Austin & Sons Limited Publishers, Hertford.

Hoek E, Brown ET (1997) Practical estimates of rock mass strength. Int. J. Rock. Mech. Min. Sci., 3(8):1165–1186.

Page 10: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

202

Hungr O, Evans SG, Bovis MJ, Hutchinson JN (2001) A review of the classification of landslides of the flow type. Environmental and Engineering Geoscience, 7(3):221-238.

Hungr O, Evans SG, Bovis M, Hutchinson JN (2001) A Review of the Classification of the Flow Type. Environmental & Engineering Geoscience. VII(3):221-238.

Hutchinson JN (1988) General Report: Morphological and geotechnical parameters of landslides in relation to geology and hydrogeology. In: Bonnard C (Editor), Proceedings, Fifth International Symposium on Landslides, A.A. Balkema, Rotterdam, 1:3-36.

Hutchinson JN (1995) Keynote paper: Landslide hazard assessment. In Landslides, Proceeding of VI International Symp. On Landslides, February, Christchurch, New Zealand. A.A. Balkema, Rotterdam, The Netherlands, 3:1805-1841.

Hylland MD, Lowe M, (1997) Regional landslide-hazard evaluation using landslide slopes, western Wasatch County, Utah: Environmental Engineering and Geoscience, 3(1):31-43.

IDRISI (1995) The decision support ring. IDRISI user manual version-4.

Irigaray C, Fernandez T, Chacon J, (2003) Preliminary rock–slope–susceptibility assessment using GIS and the SMR classification. Natural Hazards, 30:309–324.

ISRM (1981) Commission on Classification of Rocks and Rock Masses, “Basic Geotechnical Description of Rock Masses”, Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., 18:85-110.

Jadda M, Shafri HZM, Mansor SB, Sharifikia M, Pirasteh S (2009) Landslide susceptibility evaluation and factor effect analysis using probabilistic-frequency ratio model. European Journal of Scientific Research, 33(4):654-668.

Jade S, Sarkar S (1993) Statistical models for slope instability classification. Engineering Geology, 36:91-98.

Janbu N (1954) Application of Composite Slip Surface for Stability Analysis. European Conference on Stability of Earth Slopes, Stockholm.

Janbu N (1968) Slope Stability Computations. (Geoteknikk, NTH). Soil Mechanics and Foundation Engineering, Technical University of Norway.

Jenks GF (1967) The data model concept in statistical mapping. Int. Year Book Cartography, 7:186-190.

Jhanwar JC (2011) A Classification System for the Slope Stability Assessment of Opencast Coal Mines in Central India. Rock Mechanics and Rock Engineering, 45:631-637.

Kainthola A, Singh PK, Wasnik AB, Sazid M, Singh TN (2012) Finite Element Analysis of Road Cut Slopes using Hoek & Brown Failure Criterion, IJEE, 5(5):1100-1109.

Page 11: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

203

Kainthola A, Verma D, Thareja R, Singh TN (2013) A Review on Numerical Slope Stability Analysis. International Journal of Science, Engineering and Technology Research. 2(6):1315-1320.

Kannan M, Saranathan E, Anbalagan R (2011) Macro Landslide Hazard Zonation Mapping – Case study from Bodi – BodimettuGhat section, Theni District, Tamil Nadu – India. Journal of Indian Society of Remote Sensing, 39(4):485-496.

Kannan M, Saranathan E, Anbalagan R (2013) Landslide vulnerability mapping using frequency ratio model: a geospatial approach in Bodi-BodimettuGhat section, Theni district, Tamil Nadu, India. Arabian Journal of Geosciences, 6(8):2901-2913.

Kanungo DP, Arora MK, Sarkar S, Gupta RP (2006) A comparative study of conventional, ANN black box, fuzzy and combined neural and fuzzy weighting procedures for landslide susceptibility zonation in Darjeeling Himalayas. Engineering Geology, 85:347-366.

Kanungo DP, Arora MK, Sarkar S, Gupta RP (2009) A fuzzy set based approach for integration of thematic maps for landslide susceptibility zonation. Georisk, 3(1):30-43.

Karim S, Jalileddin S, Ali MT (2011) Zoning landslide by use of Frequency ratio method (case study Deylaman Region), Middle-East Journal of Scientific Research, 9(5):578-583.

Kavitha M, Petrou M, Tarantino C, Blonda P (2008) Landslide Possibility Mapping Using Fuzzy Approaches. IEEE Transactions on Geoscience and Remote Sensing 46(4):1253-1265.

Kavzoglu T, Sahin E, Colkensen I (2013) Landslide susceptibility mapping using GIS based multi-criteria decision analysis, support vector machines and logistic regression. Landslides, Doi:10.1007/s 10346-013-0391-7.

Kayastha P, Bijukchhen SM, Dhital MR, Smedt FD (2013) GIS based Landslide Susceptibility Mapping using a Fuzzy Logic Approach: A Case Study from Ghurmi-Dhad Khola Area, Eastern Nepal. Journal of Geological Society of India, 82:249-261.

Keefer DK (2002) Investigating landslides caused by earthquakes-a historic review. Sum. of Geophysics, 23:473-510.

Kentil B, Topal T (2004) Evaluation of rock excavatability and slope stability along a segment of motorway, Pozarti, Turkey, Envrionmental Geology, 46:83-95.

Kienholz H, Schneider G, Bichsel M, et al. (1984) Mapping of mountain hazards and slope stability. Mountain Research and Development, 4(3):247-266.

Kirschbaum DB, Adler R, Hong Y, Hill S, Lerner-Lam A (2009) A global landslide catalog for hazard applications: method, results, and limitations. Natural Hazards. DOI 10.1007/s11069-009-9401-4.

Page 12: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

204

Kopacsy J (1961) Distribution descontraintes a la rupture, forme de la surface de glissement et hauteur theorique des talus, Proceedings of the Fifthe International Conference on Soil Mechanics and Foundation Engineering, Paris, II:641-650.

Krejci O, Baron I, Bl M, Hubatka F, Jurova Z, Kirchner K (2002) Slope movements in the Flysch Carpathians of Eastern Czech Republic triggered by extreme rainfalls in 1997: a case study. Physics and Chemistry of the Earth, 27:1567-1576.

Kumar K, Devrani R, Kathait A, Aggarwal N (2012) Micro-Hazard Evaluation and validation of landslide in a part of North Western Garhwal Lesser Himalaya, India. International Journal of Geomatics and Geosciences, 2(3):878-891.

Lan HX, Zhou CH, Wang LJ, Zhang HY, Li RH (2004) Landslide hazard spatial analysis and prediction using GIS in the Xiaojiang watershed, Yunnan, China. Engineering geology, 76:109–128.

Lang TA (1972) Rock reinforcement: Association of Engineering Geologists Bulletin, 9(3):215-239.

Laubscher DH (1990) A geomechanical classification system for the rating of rock mass in mine design. Journal of the South African Institute of Mining and Metallurgy, 90:257–273.

Laufer H (1958) Rock classification for tunnel construction, Geo. Building, 74:46-51.

Lee S, Choi J, Min K (2002) Landslide susceptibility analysis and verification using the Bayesian probability model. Environmental Geology, 43:120-131. DOI: 10.1007/s00254-002-0616-x.

Lee S, Min K (2001) Statistical analysis of landslide susceptibility at Yongin, Korea. Environmental Geology, 40:1095-1113.

Lee S, Ryu JH, Min K, Won JS (2003) Landslide Susceptibility Analysis using GIS and artificial neural network. Earth Surface Processes and Landforms, 27:1361-1376.

Lee S, Choi J, Woo I (2004) The effect of spatial resolution on the accuracy of landslide susceptibility mapping: a case study in Boun, Korea. Geosciences Journal, 8(1):51-60.

Lee S (2005) Application of logistic regression model and its validation for landslide susceptibility mapping using GIS and remote sensing data. International Journal of Remote Sensing, 26:1477-1491.

Lee S, Talib JA (2005) Probabilistic landslide susceptibility and factor effect analysis. Environmental Geology, 47:982-990.

Lee S, Pradhan B (2006) Probabilistic landslide hazards and risk mapping on Penang Island, Malaysis. Journal of Earth System Sciences, 115(6):661-672.

Page 13: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

205

Lee S, Ryu JH, Lee MJ, Won JS (2006) The application of artificial neural networks to landslide susceptibility mapping at Janghung, Korea. Mathematical Geology, 38:199-220.

Lee S (2007) Application and verification of fuzzy algebraic operators to landslide susceptibility mapping. Environmental Geology, 52:615-623.

Lee S, Pradhan B, (2007) Landslide hazard mapping at Selangor, Malaysia using frequency ratio and logistic regression models. Landslides, 4:33-41.

Lepore C, Kamal SA, Shanahan P, Bras RL (2011) Rainfall-induced landslide susceptibility zonation of Puerto Rico. Environmental Earth Sciences, 66(6):1667-1681.

Leroi E (1996) Landslide hazard - risk maps at different scales: objectives, tools and developments. In: Senneset K (ed) Landslides Glissements de terrain, 1st edn. Balkenma, Rotterdam, pp.35–51.

Lin ML, Tung CC (2004) A GIS-based potential analysis of the landslides induced by the chi-chi earthquake. Engineering Geology, 71(1-2):63-77.

Lindsay P, Campbell RN, Fergusson DA, Gillard GR, Moore TA (2001) Slope stability probability classification, Waikato Coal Measures, New Zeland. International Journal of Coal Geology, 45:127–145.

Lineback Gritzner M, Marcus WA, Aspinall R, Custer SG (2001) Assessing landslide potential using GIS, soil wetness modeling and topographic attributes, Payette River, Idaho. Geomorphology, 37:149-165.

Liu YC, Chen CS (2007) A new approach for application of rock mass classification on rock slope stability assessment. Engineering Geology, 89:129-143.

Lohnes RA, Handy RL (1968) Slope Angles in Friable Loess. Journal of Geology, 76(3):247-258.

Lowe J, Karafiath RV (1960) Stability of Earth Dam upon Drawdown. Proceedings of the of the first Pan American Conference on Soil Mechanics and Foundation Engineering, Maxico City, pp.537‐552.

Lucas JM (1980) A general stereographic method for determining possible mode of failure of any tetrahedral rock wedge. Int. J. Rock Mech, Mini. Sci. Geomech. Abstr. 17:57-61.

Ma F, Wang J, Yuan R, Zhao H, Guo J (2013) Application of analytical hierarchy process and least square method for landslide susceptibility assessment along the Zhong - Wu natural gas pipelines. China Landslides, Doi:, Doi:10.1007/s 10346-013-0402-8.

Maharaj R (1995) Engineering-geological mapping of tropical soils for land-use planning and geotechnical purposes: a case study from Jamaica, West Indies. Engineering geology, 40:243-286.

Malamud BD, Turcotte DL, Guzzetti F, Reichenbach P (2004) Landslides, earthquakes, and erosion. Earth and Planetary Science Letters, 229:45–59.

Page 14: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

206

Mantovani F, Soeters R, Van Westen CJ (1996) Remote sensing techniques for landslide studies and hazard zonation in Europe. Geomorphology, 15:213-225.

Mark RK, Ellen SD (1995) Statistical and simulation models for mapping debris-flow hazard, Geographical Information Systems in Assessing Natural Hazards In: Carrara A, Guzzetti F (eds.), Kluwer Academic Publishers, Dordrecht. Pp.93-106.

Markland JT (1972) A Useful Technique for Estimating the Stability of Rock Slopes when the Rigid Wedge Sliding Type of Failure is Expected — Imperial College Rock Mechanics Research Report, N819, pp.10

Matherson GD (1988) The collection and use of field discontinuity data in rock slope design. Q. J. Eng. Geol. 22:19-30.

Matsui T, San KC (1992) Finite element slope stability analysis by shear strength reduction technique. Soils Found. 32(1):59-70.

Matula M, Holzer R (1978) Engineering typology of rock masses. In: Proc. of rock mechanics Conference, Basics and application the rock mechanics, Karlsruhe, Germany, 107-121.

McKean J, Buechel S, Gaydos L (1991) Remote sensing and landslide hazard assessment. Photogrammetric Engineering and Remote sensing, 57(9):1185-1193.

McCombie P, Wilkinson P (2002) The use of the simple genetic algorithm in finding the critical factor of safety in slope stability analysis, Comput. Geotech., 29, pp699–714.

Mezughi TH, Akhir JM, Rafek A, Abdullah I (2011) Landslide assessment using frequency ratio model applied to an area along the E-W highway (Gerik-Jeli); Am. J. Environ. Sci., 7(1):43–50.

Miller D, Burnett K (2007) Effects of forest cover, topography and sampling extent on the measured density of shallow translational landslides. Water Resour. Res., 43:WO3433, DOI:10-1029/2005 WR004807.

Mohammady M, Pourghasemi HR, Pradhan B (2012) Landslide susceptibility mapping at Golestan Province, Iran: A comparison between frequency ratio, Dempster-Shafer, and weights-of-evidence models. Journal of Asian Earth Sciences, 61:221-236.

Mondal S, Maiti R (2012) Landslide susceptibility analysis of Shiv-Khola Watershed, Darjiling; a remote sensing and GIS based Analytic Hierarchy Process. J Indian Soc Remote Sensing 3:483–496.

Morgenstern NR, Price VE (1965) “The Analysis of the Stability of General Slip Surface.”, Geotechnique, 15(4):289-290.

Moser M, Hoensinn F (1983) Geotechnical aspects of soil slips in Alpine regions. Eng Geol 19:185-211.

Page 15: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

207

Mostyn GR, Fell R (1997) Quantitative and semiquantitative estimation of the probability of landslides in Landslide Risk Assessment In: Cruden D, Fell R (ed), Balkema, Rotterdam, Brookfield. Pp.297-315.

Nagarajan R, Roy A, Vinod Kumar R, Mukherjee A, Khire MV (2000) Landslide hazard susceptibility mapping based on terrain and climatic factors for tropical monsoon regions. Bulletin of Engineering Geology and Environment, 58:275-287.

Naithani A (2007) Macro landslide hazard zonation mapping using uni-variate statistical analysis in parts of Garhwal Himalaya. J Geological Society India, 70:353–368.

Nandi A, Shakoor A (2008) Application of logistic regression model for slope instability prediction in Cuyahoga River Watershed, Ohio, USA. Georisk, 2(1):16-27.

Nandi A, Shakoor A (2009) A GIS-based landslide susceptibility evaluation using bivariate and multivariate statistical analyses. Engineering Geology, 110:11-20.

Naranjo JL, van Westen CJ, Soeters R (1994) Evaluating the use of training areas in bivariate statistical landslide hazard analysis – a case study in Columbia. ITC Journal 3.

Naveen Raj T, Ram mohan V, Backiaraj S, Muthusamy S (2011) Landslide hazard zonation using the relative effect method in south eastern part of Nilgiris, Tamil Nadu, India. International Journal of Engineering Science and Technology, 3(4):3260-3266.

Ngecu WM, Ichang’i DW (1999) The environmental impact of landslides on the population living on the eastern foot slopes of the Aberdare ranges in Kenya: a case study of Maringa Village landslide. Environmental Geology, 38(3):259-264.

Niemann KO, Howes D (1991) Slope stability evaluations using digital terrain models. Land Management Report Series 74, British Colombia Ministry of Forests, 28 pp.

Ohlmacher GC, Davis JC (2003) Using multiple logistic regression and GIS technology to predict landslide hazard in northeast Kansa, USA. Engineering Geology, 69:331-343.

Okimura T (1982) Situation of surficial slope failure based on the distribution of soil layer, Shin-sabo, 35:9-18 (in Japanese with English abstract).

Okimura T, Kawatani T (1986) Mapping of the potential surface-failure sites on granite mountain slopes. In: Gardiner V (ed.), International Geomorphology, Part I, Wiley and Sons, New York, pp. 121–138.

Pachauri AK, Pant M (1992) Landslide hazard mapping based on geological attributes. Engineering Geology, 32:81-100.

Page 16: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

208

Palmstrom A (1982) The volumetric joint count–a useful simple measure of the degree of rock jointing, Proc. 4th Congress IAEG, Delhi, 5:221–228.

Palmstrom A (1995) RMi – A rock mass characterization system for rock engineering purposes. PhD thesis, University of Oslo, Department of Geology, 400 pp.

Palmstrom A (2000) Recent developments in rock support estimates by the RMi. Journal of Rock Mechanics and Tunelling Technology. 6(1):1-19.

Pandit VM, Patel JB, Thakare AK (2013) Comparative study of advanced two dimensional methods of slope stability analysis. International Journal of Advanced Technology in Civil Engineering. 2(1):92-95.

Panet M (1987) Reinforcement of rock foundation and slope by active or passive passive anchors. In Herget G, Vongpaisal S (eds) Proc. 6th Int. Cong. Rock mechanics Montreal Balkema, Rotterdam. pp.1411-1420.

Panikkar S, Subramaniyan V (1997) Landslide hazard analysis of the area around Dehra Dun and Mussoorie, Uttar Pradesh. Current Science, 73:1117–1123.

Pantelidis L (2010) An alternative rock mass classification system for rock slopes. Bulletin of Engineering Geology and the Environment, 69:29–39.

Pardeshi SD, Autade SE, Pardeshi S (2013) Landslide Hazard Assessment: recent trends and techniques. SpringerPlus. 2:523.

Parise M (2002) Landslide hazard zonation of slopes susceptible to rock falls and topples. Nat. Hazards Earth Syst. Sci., 2:37–49.

Patching TH, Coates DF (1968) A recommended rock classification for rock mechanics purposes. CIM Bull., October 1968, 1195-1197.

Pelizza S (1991) Ground reinforcing (General report). Soil and rock improvement in under ground works Milan. pp.3-32.

Petley DN (2008) The global occurrence of fatal landslides in 2007. Geophysical Research Abstracts, Vol. 10, EGU General Assembly 2008. 3 pp.

Popescu ME (2001) A suggested method for reporting landslide remedial measures. Bulletin of Engineering Geology and Environment 60:69-74.

Potts DM, Dounias GT, Vaughan PR (1990) Finite element analysis of progressive failure of Carsington embankment. Geotechnique. 40(1):79-102.

Poudyal CP, Chang C, Oh HJ, Lee S (2010) Landslide susceptibility maps comparing frequency ratio and artificial neural networks: a case study from the Nepal Himalaya. Environmental Earth Sciences 61:1049-1064.

Pradhan B (2010) Application of an advanced fuzzy logic model for landslide susceptibility analysis. International Journal of Computational Intelligence Systems, 3(3):370-381.

Page 17: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

209

Pradhan B, Lee S (2007) Utilization of Optical Remote Sensing Data and GIS Tools for Regional Landslide Hazard Analysis Using an Artificial Neural Network Model. Earth Science Frontiers 14(6):143-152.

Pradhan B, Lee S (2009) Delineation of landslide hazard areas on Penang Island, Malaysia, by using frequency ratio, logistic regression, and artificial neural network models.Environmental Earth Sciences. 60:1037-1054.

Pradhan B, Lee S (2010) Landslide Susceptibility assessment and factor effect analysis: backpropagation artificial neural networks and their comparison with frequency ratio and bivariate logistic regression modelling. Environmental Modelling & Software, 25:747-759.

Pradhan B, Lee S, Buchroithner MF (2009) Use of geospatial data and fuzzy algebraic operators to landslide-hazard mapping. Applied Geomatics, 1:3-15.

Pradhan B, Lee S, Mansor S, Buchroithner M, Jamaluddin N, Khujaimah Z (2008) Utilization of optical remote sensing data and geographic information system tools for regional landslide hazard analysis by using binomial logistic regression model. Journal of Applied Remote Sensing, 2(1):1-11.

Rabcewicz LV (1964) "The New Austrian Tunneling Method", Water Power, Part I, Nov. 1964, pp.453-457; Part II, Dec. 1964, pp.511-515.

Rabcewicz LV (1965) “The New Austrian Tunneling Method”, Water Power, Part III, pp.19-24.

Ramamurthy T, Narayan CGP, Bhatkar VP (1977) “Variational Methof for Slope Stability Analysis,” Proceedings of Ninth International Conference on Soil Mechanics and Foundation Engineering, Tokyo. 1:139-142.

Ramani SE, Pitchaimani K, Gnanamanickam VR (2011) GIS based Landslide Susceptibility Mapping of TevankaraiAr Sub-watershed, Kodaikkanal, India using Binary Logistic Regression Analysis. Journal of Mountain Science. 8(4):505-517.

Ranjan G, Rao ASR (2002) Basic and applied Soil Mechanics, New Age International (P) Limited, Publishers, New Delhi.

Reddy S (1980) Panel Discussion: Session IV, “Critical Evaluation of Theoretical Approaches to Landslide Studies,” Proceedings of International Symposium on Landslides. 2:168-169.

Ritter W (1879) The Statics of the Tunnel Vault. Berlin: Springer.

Robertson AM (1988) Estimating weak rock strength. In: Sastry, K.V.S. (Ed.), Proceedings of the SME Annual meeting. Society of Mining Engineering, Phoenix, pp.1-5.

Romana M (1985) New adjustment ratings for application of Bieniawski classification to slopes. Proceedings of the International Symposium on the Role of Rock Mechanics in Excavations for Mining and Civil Works. International Society of Rock Mechanics, Zacatecas, pp.49–53.

Page 18: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

210

Romana M, Serón JB, Montalar E (2001) La clasificación geomecánica SMR: aplicación experiencias y validación. In: CEDEX, UPM (Eds.), Proceedings of the V Simposio Nacional sobre taludes y laderas inestables. Centro de publicaciones, Secretaria General Técnica. Ministerio de Fomento, CEDEX, Madrid, pp.393–404 (in Spanish).

Romana M, Seron JB, Montalar E (2003) SMR Geomechanics classification: Application, experience and validation. In: the international symposium on role of rock mechanics, ISRM 2003 – Technology roadmap for rock mechanics, South African Institute of Mining and Metallurgy, pp.1-4.

Rotigliano E, Angesi V, Cappadonia C, Conoscenti C (2011) The role of diagnostic areas in the assessment of landslide susceptibility model: a test in the sicillan chain, Italy. Nat. Hazards, 58:981–999.

Rowbotham DN, Dudycha D (1998) GIS modellingof slope stability in Phewa Tal watershed, Nepal. Geomorphology, 26(1–3):151–170.

Saha AK, Gupta RP, Arora MK (2002) GIS-based landslide hazard zonation in the Bhagirathi (Ganga) Valley, Himalayas. International Journal of Remote Sensing, 23:357–369.

Saraf A, Das J, Rawat V (2009) Satellite based detection of early occurring of coseismic landslides. J. South Asia Disaster Stud. (Journal of SAARC Disaster Management Centre), 2(1):47–55.

Saranathan E, Rajesh Kumar, Kannan M, et al. (2010) Landslide Macro Hazard Zonation of the Yercaud Hill slopes ghat sections – km 10/4 to 29/6, Indian Landslides 3(1): 9-16.

Saranathan E, Kannan M, Victor Rajamanickam G (2012) Assessment of landslide hazard zonation mapping in Kodaikanal, Tamil Nadu – India. Disaster Advances, 5(4):42- 50.

Sarkar S, Anbalagan R (2008) Landslide Hazard Zonation Mapping and Comparative Analysis of Hazard Zonation Maps. Journal of Mountain Science, 5:232-240. DOI: 10.1007/s11629-008-0172-2.

Sarkar S, Kanungo DP, Mehrotra GS (1995) Landslide hazard zonation: A case study in Garhwal Himalaya, India. Mountain Research and Development, 15(4): 301-309. DOI: 10.2307/3673806.

Sarkar S, Kanungo DP (2004) An Integrated Approach for Landslide Susceptibility Mapping Using Remote Sensing and GIS. Photogrammetric Engineering & Remote Sensing, 70(5):617-625.

Sarkar S, Kanungo DP, Sandeep Kumar (2012) Rock Mass Classification and Slope Stability Assessment of Road Cut Slopes in Garhwal Himalaya, India.

Satty TL (1978) Exploring the interface between hierarchies, multiple objectives and fuzzy set. Fuzzy Sets Syst. 1:57-68.

Page 19: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

211

Schuster R (1996) Socioeconomic significance of landslides. In: Turner AK, Schuster RL (ed) Landslides: Investigation and Mitigation, Special Report, vol. 247. National Academic Press, Washington, DC, pp 12–36.

Seehra SS (2012) Slope Failures and Remedial Measures for Strategic Highway Construction in Hilly Terrain. NBM & CW.

Selby MJ (1980) A rock mass strength classification for geometric purposed: with test from Antartica and New zeland. Geomorphology, 24:31-50.

Sen Z, Sadagah H (2003) Modified rock mass classification system by continuous rating. Engineering Geology, 67:269–280.

Shahabi H, Ahmad BB, Khezri S (2012) Application of satellite remote sensing for detailed landslide inventories using frequency ratio model and GIS. Int. J. Comput. Sci. Issues 9, 108–117.

Sharma VK (2008) Macro-zonation of Landslide Hazard in the Environs of Baira Dam Project, Chamba District, Himachal Pradesh. Journal of the Geological Society of India, 71(3):425-432.

Sharma RK, Mehta BS (2012) Macro-zonation of landslide susceptibility in Garamaura-Swarghat-Gambhar section of national highway 21, Bilaspur District, Himachal Pradesh (India). Natural Hazards, 60:671-688. DOI: 10.1007/s11069-011-0041-0.

Sharma RK, Mehta BS, Jamwal CS (2013) Cut slope stability evaluation of NH-21 along Nalayan-Gambhrola section, Bilaspur district, Himachal Pradesh, India. Natural Hazards, 66:249-270.

Sharp JC, Hoek E, Brawner CO (1972) Influence of ground water on the stability of rock masses – drainage systems for increasing the stability of slopes. Trans. Inst. Mining and Metallurgy, London Section A, 81(778): 19.

Shroder JF (1971) Landslides of Utah. Bulletin 90. Utah Geological and Mineralogical Survey. 50 pp.

Shuk T (1994) Key elements and applications of the natural slope methodology (NSM) with some emphasis on slope stability aspects. Proceedings of the 4th South American Congress on Rock Mechanics, 2. ISRM, Balkema, Rotterdam, pp.955–960.

Shuzui H (2001) Process of slip-surface development and formation of slip-surface clay in landslides in Tertiary volcanic rocks, Japan. Engineering geology, 61:199-220.

Sidle RC, Ochiai H (2006) Landslides: processes, prediction, and landuse. American Geophysical Union, Washington, D.C. Water Resources Monograph No.18: 312 pp.

Siegel RA, Kovacs WD, Lovell CW (1981) “Random Surface Generation in Stability Analysis,” American Society of Civil Engineering, Journal of the Geotechnical Engineering Division, 107(GT7):996-1002.

Singh B, Goel RK (2011) Engineering Rock Mass Classification-Tunneling Foundation, and Landslides. Butterworth Heinemann, Elsevier. p.382.

Page 20: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

212

Singh AK, Kainthola A, Singh TN (2012) Prediction of Factor of Safety of a Slope with an Advanced Friction Model, International Journal of Rock Mechanics and Mining Sciences, 55:164-167.

Singh PK, Kainthola A, Singh TN (2013) Rock mass assessment along the right bank of river Sutlej, Luhri, Himachal Pradesh, India. Geomatics, Natural Hazards and Risk, online: DOI: 10.1080/19475705.2013.834486.

Singh R, Umrao RK, Singh TN (2013) Stability evaluation of road-cut slopes in the Lesser Himalaya of Uttarakhand, India: conventional and numerical approaches. Bulletin of Engineering Geology and the Environment. DOI: 10.1007/s10064-013-0532-1.

Skempton AW, Delory EA (1957) Stability of natural slopes in London clay. In: Proceedings of 4 & International Conference on Soil Mechanics and Foundation Engineering, 4:379-381.

Smyth CG, Royle SA (2000) Urban landslide hazards: incidence and causative factors in Niteroi, Rio de Janeiro State, Brazil, Applied Geography, 20(2):95-118.

Sokolovski VV (1960) Statics of Soil Media, translated by Jones, D.H., and Schofield, A.N., Butterworths Scientific Publications, London.

Spang K, Egger P (1990) Action of fully grouted bolts in jointed rock and factor of influence. Rock Mechanics and Rock Engineering, 23(3):201-229.

Spencer E (1967) A Method of Analysis of the Stability of Embankments, Assuming Parallel Inter-slice Forces. Geotechnique, 17(1):11-26.

Srivastava V, Srivastava H, Lakhera RC (2010) Fuzzy gamma based geomatic modeling for landslide hazard susceptibility in a part of Tons river valley, northwest Himalaya, India. Geomatics, Natural Hazards and Risk, 1(3):225-242.

Sujatha ER, Rajamanickam GV, Kumaravel P (2012) Landslide susceptibility analysis using Probablistic Certainty Factor Approach: A case study on Tevankarai stream watershed, India. Journal of Earth System Sciences, 121(5):1337-1350.

Suzen ML, Doyuran V (2004) A comparison of the GIS based landslide susceptibility assessment methods: multivariate versus bivariate. Environmental Geology, 45:665-679.

Taheri A, Tani K (2010) Assessment of the stability of Rock Slopes by the Stability Rating Classification System. Rock Mech., Rock Eng., 43:321-333.

Tangestani MH (2004) Landslide susceptibility mapping using the fuzzy gamma approach in a GIS, Kakan catchments area, SW Iran. Australian Journal of Earth Sciences, 51:439–450.

Tangestani MH (2009) A comparative study of Dempster-Shafer and fuzzy models for landslide susceptibility mapping using a GIS: An experience from Zagros Mountains, SW Iran. Journal of Asian Earth Sciences. 35:66-73.

Page 21: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

213

Terlien MTJ (1998) The determination of statistical and deterministic hydrological landslide-triggering thresholds, Environ., Geology, 35:2–3.

Terlien MTJ, Van Asch TWJ, Van Westen CJ (1995) Deterministic modelling in GIS-based landslide hazard assessment. In: Carrara, A., and Guzzetti, F. (eds), Geographical information systems in assessing natural Hazards. Kluwer Academic Publishing, The Netherlands, 57-77 pp.

Terzaghi K (1946) "Rock Defects and Loads on Tunnel Support", in Rock Tunneling with Steel Supports, edited by Proctor RV, White T, Commercial Shearing Co., Youngstown, OH, pp.15-99.

Terzaghi K, Peck RB (1967) Soil Mechanics in Engineering Practice, Second Edition: John Wiley & Sons, New York, 729 p.

Thomas ME (1974) Tropical Geomorphology: A study of weathering and landform development in warm climates, Macmillan, London.

Tofani V, Segoni S, Agostini A, Catani F, Casagli N (2013) Use of remote sensing for landslide studies in Europe. Nat. Hazards Earth Syst., Sci., 13:299-309.

Tomás R, Delgado J, Serón JB (2007) Modification of slope mass rating (SMR) by continuous functions. International Journal of Rock Mechanics and Mining Sciences, 44:1062–1069.

Tomas R, Cuenca A, Cano, M, Garcia-Barba J (2012) A Graphical approach for slope mass rating (SMR).

Tunusluoglu MC, Gokceoglue C, Nefeslioglu HA, Sonmez H (2008) Extraction of potential debris source areas by logistic regression technique: a case study from Barla, Besparmak and Kapi mountains (NW Taurids, Turkey). Environmental Geology, 54(1):9-22.

Umrao RK, Singh R, Ahmad M, Singh TN (2011) Stability analysis of cut slopes using continuous slope mass rating and kinematic analysis in Rudraprayag district, Uttarakhand. Geomaterials, 1:79–87.

Ünal E (1996) Modified rock mass classification: M-RMR system. In: Bieniawski, Z.T. (Ed.), Milestones in rock engineering, The Bieniawski Jubilee Collection. Balkema, pp.203–223.

UNESCO (1973) Annual Summaries of Information on Natural Disasters, 1971-1975. Paris, Unesco.

Varnes DJ (1978) Slope Movement Types and Processes. In Special Report 176: Landslides: Analysis and Control (R.L. Schuster and R.J. Krizek, eds.), TRB, National Research Council, Washington, D.C., pp.11-33.

Varnes DJ (1981) Slope stability problems of the circum Pacific region as related to mineral and energy resource. Energy resources of the Pacific region, In: Halbouty MT (eds.), American Association of Petroleum Geologist. Tulsa, Okla. pp.489-505.

Varnes DJ, IAEG (1984) Landslide hazard zonation: A review of principles and practice. UNESCO Press. Paris.

Page 22: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

214

Van Westen CJ (1993) Application of Geographic Information Systems to Landslide Hazard Zonation. ITC Publication, Number 15.

van Westen CJ (1994) GIS in landslide hazard zonation: a review, with examples from the Andes of Colombia. In: Price M, Heywood I (eds) Mountain environments and geographic information system. Taylor and Francis, Basingstoke, UK, pp.135–165.

van Westen CJ (2000) Digital geomorphological landslide hazard mapping of Alpago, Italy. International Journal of Applied Earth Observation and Geoinformation, 2(1):51-60. DOI: 10.1016/S0303-2434(00)85026-6.

van Westen CJ (2004) Geo-information tools for landslide risk assessment: an overview of recent developments, in: Landslides Evaluation and stabilization, edited by: Lacerda WA, Ehrlich M, Fontoura AB, Sayo A, Balkema, 39–56.

van Westen CJ, Van Asch TWJ, Soeters R (2006) Landslide hazard and risk zonation - why is it still so difficult?. Bulletin of Engineering Geology and the Environment, 65:167–184.

Verstappen HT (1983) Applied Geomorphology: Geomorphological Surveys for Environmental Development. Elsevier Science Publishers, Amsterdam. pp.437.

Wakatsuki T, Tanaka Y, Matsukura Y (2005) Soil slips on weathering-limited slopes underlain by coarse-grained granite or fine-grained gneiss near Seoul, Republic of Korea. Catena, 60(2):181-203.

Wang SQ, Unwin DJ (1992) Modeling landslide distribution on loess soils in China: An investigation. International Journal of Geographical Information Systems, 6:391-405. DOI: 10.1080/02693799208901922.

Wang HB, Sassa K (2005) Comparative evaluation of landslide susceptibility in Minamata area, Japan. Environmental Geology, 47:956-966.

Wang SQ, Unwin DJ (1992) Modeling landslide distribution on loess soils in China: An investigation. International Journal of Geographical Information Systems, 6:391-405. DOI: 10.1080/02693799208901922.

Wen BP, Duzgoren-Aydin NS, Aydin A (2004) Geochemical characteristics of the slip zones of a landslide in granitic saprolite, Hong Kong: implications for their development and microenvironments. Environmental Geology, 47(1):140-154.

Wickham GE, Tiedemann HR, Skinner EH (1972) “Support determination based on geological predictions,” Proc. Rapid Excav. Tunneling Conference, AIME, New York: 43-64.

Wieczorek GF (1984) Preparing a detailed landslide-inventory map for hazard evaluation and reduction. Bulletin Association Engineering Geology, 21:337-342.

Page 23: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

215

Williamson DA (1984) "Unified Rock Classification System", Bull. Assoc. Eng. Geol, 21(3):345-354.

Wilson RC, Wieczorek GF (1995) Rainfall thresholds for the initiation of debris flow at La Honda, California, Environ. Eng. Geosci., 1(1):11–27.

Wines DR, Lilly PA (2002) Measurement and analysis of rock mass discontinuity spacing and frequency in part of the Fimiston Open Pit operation in Kalogeria, Western Australia: a case study, International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstract: 39:589-602.

WP/WLI, (1993) A suggested method for describing the activity of a landslide. Bulletin of the International Association of Engineering Geology, 47:53-57.

Wu TH, Sangrey DA (1978) Strength properties and their measurement, in Schuster RL, Krizek RJ eds. Landslides: Transport. Res. Board, Nat. Acad. Sci. Spec. Rep., 176, pp.139-154.

Yasilnacar E, Suzen ML (2006) A land-cover classification for landslide susceptibility mapping by using feature components. International Journal of Remote Sensing, 27(2):253-275.

Yeon Y, Han J, Ryu K (2010) Landslide susceptibility mapping in Injae, Korea using a decision tree. Engineering Geology, 166:274–283.

Yilmaz I (2009) A case study from Koyulhisar (Sivas-Turkey) for landslide susceptibility mapping by artificial neural networks. Bulletin of Engineering Geology and the Environment 68:297-306.

Yilmaz I, Keskin I (2009) GIS based statistical and physical approaches to landslide susceptibility mapping (Sebinkarahisar, Turkey). Bulletin of Engineering Geology and the Environment, 68:459-471.

Yilmaz I, Marschalko M, Bednarik M (2013) An assessment on the use of bivariate, multivariate and soft computing techniques for collapse susceptibility in GIS environ. J. Earth Syst. Sci., 122(2):371-388.

Yilmaz I, Marschalko M, Bednarik M (2012) Comments on “Landslide susceptibility zonation study using remote sensing and GIS technology in the Ken-Betwa River Link area, India” by Avtar R, Singh CK, Singh G, Verma RL, Mukherjee S, Sawada H in Bulletin of Engineering Geology and the Environment (doi:10.1007/s10064-011-0368-5). pp 803-804. Bulletin of Engineering Geology and the Environment 71:803- 805.

Yin KL, Yan TZ (1988) Statistical prediction model for slope instability of metamorphosed rocks. In: Proceedings of the 5th International Symposium on Landslides, vol. 2. Lausanne. pp.1269-1272.

Yokota S, Iwamatsu A (1999) Weathering distribution in a steep slope of soft pyroclastic rocks as an indicator of slope instability. Eng. Geol. 55:57–68.

Zadeh LA (1965) Fuzzy sets. IEEE Information and Control, 8:125-151.

Page 24: REFERENCES - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/60312/20/20_reference.pdf · 198 Cruden DM (1978) Discussion of G.Hocking’s paper A method for distinguishing between

216

Zheng G, Lang Y, Takano B, Matsuo M, Kuno A, Tsushima H (2002) Iron speciation of sliding mud in Toyama Prefecture, Japan. Journal of Asian Earth Science, 20:955-963.

Zienkiewicz OC, Humpheson C, Lewis RW (1975) Associated and non-associated viscoplasticity and plasticity in soil mechanics. Geotechnique, 25:671-689.

Zika P, Rubar J, Kudma Z (1988) Empirical approach to the evaluation of the stability on high slopes, Proceedings of the 5th International Symposium on Landslides, Lausanne, 2:1273-1275.