Geoscience Reference
In-Depth Information
McConnell RG, Brock RW (1904) Great landslides at Frank, Alberta. Canada Department of
interior annaul report, 17 pp
Melnikov M, Chensokov M (1969) Safety in open cast mining. Mir Publications, Moscow
Miller VC (1953) A quantitative geomorphic study of drainage basin characteristics in the Clinch
mountain area, Virginia and Tenneses, vol 3. Contract N60NR271-30, Technical Report,
Department of Geology, Columbia University, pp 1
30
Montgomery DR, Dietrich WE (1989) Source areas, drainage density and channel initiation. Water
Resour Res 25(8):1907
-
1918
Montgomery DR, Dietrich WE (1994) A physically based model for the topographic control on
shallow land sliding. Water Resour Res 30(4):1153
-
1171
Nithya ES, Prasanna RP (2010) An integrated approach with GIS and remote sensing technique for
landslide zonation. Int J Geomat Geosci 1(1):121
-
132
Pack RT, Tarboton DG, Goodwin CN (1998) Terrain stability mapping with SINMAP. Technical
description and users guide for version 1.00. http://www.engineering.usu.edu/dtarb/ . Accessed
15 June 2007
Pandey A, Dabral PP, Chowdhary VM, Yadav NK (2008) Landslide hazard zonation using remote
sensing and GIS: a case study of Dikrong river basin, Arunachal Pradesh, India. Environ Geol
54:1517 - 1529
Parise M, Jibson WR (2000) A seismic landslide susceptibility rating of geologic units based on
analysis of characteristics of landslides triggered by the 17 January, 1994 Northridge,
California earthquake. Eng Geol 58:251 - 270
Poesen J, De Poley J (1987) Geomorphological models theoritical and emperical aspects. Catena
Suppl 10:67
-
72
Pradhan B, Lee S (2010a) Delineation of landslide hazard areas on Penang Island, Malaysia, by
using frequency ratio, logistic regression, and artificial neural network models. Environ Earth
Sci 60:1037
-
1054
Pradhan B, Lee S (2010b) Landslide susceptibility assessment and factor effect analysis:
backpropagation artificial neural networks and their comparison with frequency ratio and
bivariate logistic regression modeling. Environ Modell Softw 25(6):747
-
759
Pradhan B, Lee S (2010c) Regional landslide susceptibility analysis using back-propagation neural
network model at Cameron Highland, Malaysia. Landslides 7(1):13
-
30
-
Prasad MK (1986) Kerala
s Western Ghats in the five year plans. In: Nair KSS, Ganaharan R,
Menon ARR, Ramachandran KK (eds) Proceedings of the seminar on Eco development of
Western Ghats. Kerala Forest Research Institute, Trivandrum, pp 288 - 292
Quinn P et al (1991) The prediction of hillslope flow paths for distributed hydrological modeling
using digital terrain models. Hydrol Process 5:59 - 79
Roy P, Chacko T (1986) The causes and control of landslides. In: Nair KSS, Ganaharan R, Menon
ARR, Ramachandran KK (eds) Proceedings of the seminar on Eco development of Western
Ghats. Kerala Forest Research Institute, Trivandrum, pp 244 - 246
Rautelal P, Lakhera RC (2000) Landslide risk analysis between Giri and Tons Rivers in Himachal
Himalaya (India). Int J Appl Earth Obs Geoinf 2:153
'
160
Rogan MR, Jackson JT (1980) Run-off synthesis using LANDSAT and SCS models. J Hydraulics
Div 106(5):667
-
678
Rowbotham D, Dudycha DN (1998) GIS Modelling of slope stability in Phewa Tal Watershed,
Nepal. Geomorphology 26:151
-
170
Sah MP, Bartarya SK (2002) The impach of March 29, 1999 Chamoli Earthquake on slope
stability and spring discharge in Chamoli and Rudraprayag districts of Garhwal Himalaya.
Himal Geol 23:121
-
133
Sah MP, Virdi NS, Bartarya SK (1996) Slope failure and damaging of river channels: some
examples from the Sutlej Valley, Himachal Pradesh. Himal Geol 17:183
-
191
Saha AK, Gupta RP, Arora MK (2002) GIS based landslide hazard zonation in the Bhagirathi
(Ganga) Valley, Himalayas. Int J Remote Sens 23(2):357 - 369
Sarkar S, Kanungo DP (2004) An integrated approach for landslide susceptibility mapping using
remote sensing and GIS. Photogram Eng Remote Sens 70(5):617 - 625
-
Search WWH ::




Custom Search