Potential landslide susceptibility mapping using weighted overlay model (WOM)

Pravat Kumar Shit1, Gouri Sankar Bhunia2, Ramkrishna Maiti3
1Department of Geography, Raja N.L.Khan Women’s College, Gope Palace, Medinipur, 721102, West Bengal, India
2Bihar Remote Sensing Application Centre, IGSCPlanetarium, Bailey Road, Patna, 800001, India
3Department of Geography and Environment Management, Vidyasagar University, Medinipur, 721102, West Bengal, India

Tóm tắt

Từ khóa


Tài liệu tham khảo

Ahmed MF, Rogers JD, Ismail EH (2014) A regional level preliminary landslide susceptibility study of the upper Indus river basin. Euro J Remote Sensing 47:343–373

Anbalagan R (1992) Landslide hazard evaluation and zonation mapping in mountainous terrain. Eng Geol 32:269–277

Bachri S, Shresta RP (2010) Landslide hazard assessment using analytic hierarchy processing (AHP) and geomorphic information system in Kaligrsing area of Central Java Province Indonesia. In: 5th Annual International Workshop and Expo on Sumatra Tsunami Disaster and Recovery, pp 107–112

Cardinali M, Reichenbach P, Guzzetti F, Ardizzone F, Antonini G, Galli M, Cacciano M, Castellani M, Salvati P (2002) A geomorphological approach to estimation of landslide hazards and risks in Umbria, Central Italy. Nat Hazards Earth Syst Sci 2:57–72

Courture R (2011) Landslide Terminology—National Technical Guidelines and Best Practices on Landslides. Geological Survey of Canada. p 12 (Open File 6824)

EM-DAT (2007, 2010) Reports the international disaster database: the Centre for Research on the Epidemiology of Disasters (CRED)

Erener A, Uzgeun HSBD (2008) Analysis on landslide hazard mapping methods: regression models versus weight rating. The international archives of the photogrammetry, remote sensing and spatial sciences, vol. 37 (Part B8), Beijing

Foody GM (2002) Status of land cover classification accuracy assessment. Remote Sens Environ 80:185–201

Ghorai D, Maiti S, Paul AK (2015) Landslide susceptibility mapping: a case study of cauvery basin and east flowing rivers south of cauvery basin, India. J Remote Sensing GIS 6(1):24–36

Gupta RP, Anbalagan R (1995) Landslide hazard zonation, mapping of Tehri Pratapnagar area, Garhwal Himalayas. J Rock Mech Tunnel Technol India 1(1):41–58

Gupta RP, Saha AK, Arora MK, Kumar A (1999) Landslide hazard zonation in the part of Bhagirathi Valley, Garwal Himalaya, using integrated remote sensing-GIS. Himal Geol 20:71–85

Hoek E, Bray JW (1981) Rock slope engineering, 3rd edn. Institute of Mining and Metallurgy, London, p 358

Howard AD (1997) Badland morphology and evolution: interpretation using a simulation model. Earth Surf Process Landf 22:211–227

Intarawichian N, Dasananda S (2010) Analytical hierarchy process for landslide susceptibility mapping in lower Mae Cheam watershed, northern Thailand. Suranaree J Sci Technol 17(3):277–292

Nagarajan R, Roy A, Vinodkumar R, Khire M (2000) Landslide hazard susceptibility mapping based on terrain and climatic factors for tropical monsoon region. Eng Geol 58:275–287

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

Pardeshi SD, Autade SE, Pardeshi SS (2013) Landslide hazard assessment: recent trends and Techniques. SpringerPlus 2:1–11. doi: 10.1186/2193-1801-2-523

Pareta K, Kumar J, Pareta U (2012) Landslide hazard zonation using quantitative methods in GIS. Int J Geospatial Eng Technol 1(1):1–9

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

Pham BT, Bui DT, Pourghasemi HR, Indras P, Dholakia MB (2015) Landslide susceptibility assesssment in the Uttarakhand area (India) using GIS: a comparison study of prediction capability of naïve bayes, multilayer perceptron neural networks, and functional trees methods. DOI, Theor Appl Climatol. doi: 10.1007/s00704-015-1702-9

Prakash C, Agarwal KK, Sharma VK (2015) Structural control of landslides in Eastern Kumaun Himalaya: case study from Sukhidhang-Ladhiya Section. J Geol Soc India 86(5):507–512

Preuth T, Glade T, Demoulin A (2010) Stability analysis of a human-influenced landslides in eastern Belgium. Geophys J Roy Astron Soc 120:4–98

Raghuvanshi TK, Ibrahim J, Ayalew D (2014a) Slope stability susceptibility evaluation parameter (SSEP) rating scheme—an approach for landslide hazard zonation. J. Afr. Earth Sci. 99:595–612

Raghuvanshi TK, Ibrahim J, Ayalew D (2014b) Slope stability susceptibility evaluation parameter (SSEP) rating scheme—an approach for landslide hazard zonation. J Afr Earth Sci 99:595–612

Rawat MS, Uniyal DP, Dobhal R, Joshi V, Rawat BS, Bartwal A, Singh D, Aswal A (2015) Study of landslide hazard zonation in Mandakini Valley, Rudraprayag district, Uttarakhand using remote sensing and GIS. Curr Sci 109(1):158–170

Sarkar S, Kanungo DP (2004) An integrated approach for landslide susceptibility mapping using remote sensing and GIS. Photogramm Eng Remote Sens 70(5):617–625

Sarkar S, Kanungo D, Mehrotra G (1995) Landslide hazard zonation: a case study of garhwal Himalaya, India. Mt Res Dev 15:301–309

Sharma VK, Attre JK, Sharma A (1996) Slope mass rating techniques in Landslide susceptibility evaluation in parts of Nainital area, Kumaun Himalaya. Jour. Engg. Geology, xxv(1–4):289–295

Tucker GE, Bras RL (1998) Hillslope processes, drainage density, and landscape morphology. Water Resour Res 34(10):2751–2764

Varnes D, IAEG (1984) Landslide hazard zonation: a review of principles and practice. U N Sci Cult Organ, Paris, pp 1–6

Wang X, Niu R (2009) Spatial forecast of landslides in three gorges based on spatial data mining. Sensors 9:2035–2061

Yalcin A (2008) GIS-based landslide susceptibility mapping using analytical hierarchy process and bivariate statistics in Ardesen (Turkey): comparisons of results and confirmations. Catena 72:1–12