Geoscience Reference
In-Depth Information
Carson MA (1977) Angles of repose, angles of shearing resistance at angle of talus slopes. Earth
Surf Processes 2:363 - 380
Catlos EJ, Harrison TM, Kohn MJ, Grove M, Ryerson FJ, Manning CE, Upreti BN (2001)
Geochronologic and thermobarometric constraints on the evolution on the main central thrust,
central Nepal Himalaya. J Geophys Res 106:16177 - 16204
Chow VT (1951) General formula for hydrologic frequency analysis. Am Geophys Union Trans
32:231
237
Chow VT (1954) The long-probability law and its engineering applications. ASCE 80:1
-
25
-
(Separate No. 536)
Chow VT (ed) (1964) Handbook of applied hydrology. Mc Grow-Hill Book Company, New York
Congalton R (1991) A review of assessing the accuracy of classi cation of remotely sensed data.
Remote Sens Environ 37:35
46
Crozier MJ (1986) Landslides: causes, consequences and environment. Croom Helm Australia Pty
Ltd., London, 252p
Dai FC, Lee CF (2002) Landslide characteristics and slope instability modeling using GIS; Lantau
Island, Hong Kong. Geomorphology 42:213 - 228
Dhakal AS, Amada T, Aniya M (2000) Landslide hazard mapping and its evaluation using GIS: an
investigations of sampling schemes for a grid-cell based quantitative method. Photogram Eng
Remote Sens 66(8):981 - 989
Donati L, Turrini MC (2002) An objective and method to rank the importance of the factors
predisposing to landslides with the GIS methodology, application to an area of the Apennines
(Valnerina; Perugia, Italy). Eng Geol 63:277 - 289
Dutta KK (1966) Landslips in Darjeeling and neighbouring hills slopes in June 1950. Bulletin of
the geological survey of India. Ser B 15(1):7
-
30
Einstein HH (1988) Landslide risk assessment procedure. In: Proceedings of the fifth international
symposium on landslides, pp 1075
-
1090
Ghosh S, Van Westen CJ, Carranza E, Jetten V (2009) Generation of event- based landslide
inventory maps in a data-scarce environment; case study around Kurseong, Darjiling district,
West Bengal, India. In: Malet JP, Remaitre A, Bogaard T (eds) Landslide processes: from
geomorphologic mapping to dynamic modeling: proceedings of the landslide processes.
European centre on geomorphological hazards (CERG), Strasbourg, pp 37
-
44
Gokceoglu C, Sonmez H, Ercanoglu M (2000) Discontinuity controlled probabilistic slope failure
risk map of the Altindag (settlement) region in Turkey. Eng Geol 55:277
-
296
Guzzetti F, Carrara A, Cardinali M, Reichenbach P (1999a) Landslide hazard evaluation: a review
of current techniques and their application in a multi-scale study, Central Italy. J Geomorphol
31:181 - 216 (Elsevier, London)
Guzzetti F, Cardinali M, Reichenbach P, Carrara A (1999b) Comparing landslide maps; a case
study in the upper Tiber River basin, central Italy. Environ Manage 18:623 - 633
Guzzetti F, Cardinali M, Reichenbach P, Carrara A (1999c) Landslide hazard evaluation: an aid to
a sustainable development. Geomorphology 31:181 - 216
Intarawichian N, Dasananda S (2011) Frequency Ratio model based landslide susceptibility
mapping in lower Mae Chaem watershed, Northern Thailand. Environ Earth Sci 64:2271
-
2285
Jadda M (2009) Landslide susceptibility evaluation and factor analysis. Eur J Sci Res 1450-
216X33(4):654
-
668
Jibson WR, Edwin LH, John AM (2000) A method for producing digital probabilistic seismic
landslide hazard maps. Eng Geol 58:271
-
289
Kamp U, Growley BJ, Khattak GA, Owen LA (2008) GIS based landslide susceptibility mapping
for the 2005 Kashmir earthquake region. Geomorphology 101:631
-
642
Komac M (2006) A landslide susceptibility model using the analytical hierarchy process method
and multivariate statistics in perialpine Slovenia. Geomorphology 74:17
-
28
Lee S, Choi U (2003) Development of GIS based geological hazard information system and its
application for landslide analysis in Korea. Geosci J 7:243 - 252
-
Search WWH ::




Custom Search