Analytic network process model for landslide hazard zonation

Engineering Geology - Tập 85 - Trang 281-294 - 2006
K.M. Neaupane1, M. Piantanakulchai1
1Civil Engineering Program, Sirindhorn Int. Ins. of Technology, Thammasat University, Thailand

Tài liệu tham khảo

Aleotti, 1999, Landslide hazard assessment: summary review and new perspective, Bulletin of Engineering Geology and the Environment, 58, 21, 10.1007/s100640050066 Ayalew, 2004, Landslide susceptibility mapping using GIS-based weighted linear combination, the case in Tsugawa area of Agano River, Niigata Prefecture, Japan, Landslides, 1, 73, 10.1007/s10346-003-0006-9 Binaghi, 1998, Slope instability zonation: a comparison between certainty factor and fuzzy Dempster–Shafer approaches, Natural Hazards, 17, 77, 10.1023/A:1008001724538 Bughi, 1996, Slow movements of slopes interfering with pipelines: modeling vs. monitoring Chen, 1998, Environmental planning: analytical network process model for environmentally conscious construction planning, ASCE Journal of Construction Engineering and Management, 131, 92, 10.1061/(ASCE)0733-9364(2005)131:1(92) Dai, 2001, Assessment of landslide susceptibility on the natural terrain of Lantau Island, Hong Kong, Environmental Geology, 40, 381, 10.1007/s002540000163 Dai, 2001, Assessment of landslide susceptibility on the natural terrain of Lantau Island, Hong Kong, Environmental Geology, 61, 257, 10.1016/S0013-7952(01)00028-X Ercanoglu, 2002, Assessment of landslide susceptibility for a landslide-prone area (north of Yenice, NW Turkey) by fuzzy approach, Environmental Geology, 41, 720, 10.1007/s00254-001-0454-2 Erdogmus, 2006, Evaluation of alternative fuels for residential heating in Turkey using analytic network process (ANP) with group decision-making, Renewable and Sustainable Energy Reviews, 10, 269, 10.1016/j.rser.2004.09.003 Franks, 1999, Characteristics of some rainfall-induced landslides on natural slopes, Lantau Island, Hong Kong, The Quarterly Journal of Engineering Geology and Hydrogeology, 32, 247, 10.1144/GSL.QJEG.1999.032.P3.04 Hearn, 2002, Engineering geomorphology for road design in unstable mountainous areas: lessons learnt after 25 years in Nepal, The Quarterly Journal of Engineering Geology and Hydrogeology, 35, 143, 10.1144/1470-9236/2000-56 Hovious, 1998, Landslide-driven drainage network evolution in a pre-steady-state mountain belt; Finisterre Mountains, Papua New Guinea, Geology, 26, 1071, 10.1130/0091-7613(1998)026<1071:LDDNEI>2.3.CO;2 Hutchinson, 1995, Slow movements of slopes interfering with pipelines: modeling vs. monitoring Juang, 1992, Aggregating expert opinions by fuzzy entropy method, Journal of Civil Engineering Systems, 9, 89, 10.1080/02630259208970642 Juang, 1992, Mapping slope failure potential using fuzzy sets, Journal of Geotechnical Engineering, ASCE, 118, 475, 10.1061/(ASCE)0733-9410(1992)118:3(475) Karsak, 2002, Product planning in quality function deployment using a combined analytic network process and goal programming approach, Computers and Industrial Engineering, 44, 171, 10.1016/S0360-8352(02)00191-2 Komac, 2006, A landslide susceptibility model using the Analytical Hierarchy Process method and multivariate statistics in perialpine Slovenia, Geomorphology, 74, 17, 10.1016/j.geomorph.2005.07.005 Kumar, 2000, Subsurface soil-geology interpolation using fuzzy neural network, Journal of Geotechnical and Geoenvironmental Engineering, 126, 632, 10.1061/(ASCE)1090-0241(2000)126:7(632) Lee, 1992, Evaluation of failure potential in mudstone slopes using fuzzy sets, vol. 31, 1137 Lee, 2003, Debris flows as agents of morphological heterogeneity at low-order confluences, Olympic Mountains, Washington, GSA Bulletin, 115, 1110, 10.1130/B25265.1 Lee, 2003, Use of an artificial neural network for analysis of susceptibility to landslides at Boun, Korea, Environmental Geology, 34, 59 Lu, 2003, Artificial neural networks and grey systems for the prediction of slope stability, Natural Hazards, 30, 383, 10.1023/B:NHAZ.0000007168.00673.27 Neaupane, 2004, Use of backpropagation neural network for landslide monitoring: a case study in the higher Himalaya, Engineering Geology, 74, 213, 10.1016/j.enggeo.2004.03.010 Ni, 1995, A fuzzy neural network approach to evaluation of slope failure potential, Journal of microcomputers in Civil Engineering, 11, 59, 10.1111/j.1467-8667.1996.tb00309.x Niemura, 2004, An analytic network process model for financial-crisis forecasting, International Journal of Forecasting, 20, 573, 10.1016/j.ijforecast.2003.09.013 Nilaweera, 2004, Role of tree roots in slope stabilization, Bulletin of Engineering Geology and the Environment, 57, 337, 10.1007/s100640050056 Nilsen, 1976, Natural conditions that control land sliding in the San Francisco bay region: an analysis based on data from 1968–69 and 1972–73 rainy seasons, Geological Survey Bulletin, 1424 Pachauri, 1998, Landslide zoning in a part of the Garhwal Himalayas, Environmental Geology, 36, 325, 10.1007/s002540050348 Partovi, 2006, An analytic model for locating facilities strategically, Omega, 34, 41, 10.1016/j.omega.2004.07.018 Piantanakulchai, 2005, Analytic network process model for highway corridor planning, 10.13033/isahp.y2005.016 Roth, 1983, Factors affecting landslide susceptibility in San Mateo County, California, Bulletin of the Association of Engineering Geology, 4, 353 Saaty, 1980 Saaty, 1996 Saaty, 1999, Fundamentals of the analytic network process, 10.13033/isahp.y1999.038 Soeters, 1999, Slope stability: recognition, analysis and zonation, vol. 247 Suzen, 2004, A comparison of the GIS base landslide susceptibility assessment methods: multivariate versus bivariate, Environmental Geology, 45, 665, 10.1007/s00254-003-0917-8 Transport Research Laboratory (TRL), 1997 Tsaparas, 2002, A comparison of the GIS base landslide susceptibility assessment methods: multivariate versus bivariate, Computers and Geotechnics, 29, 1, 10.1016/S0266-352X(01)00019-2 Ulutas, 2005, Determination of the appropriate energy policy for Turkey, Energy, 30, 1146, 10.1016/j.energy.2004.08.009 Uromeihy, 2005, Landslide hazard zonation of the Khorshrostam area, Iran, Bulletin of Engineering Geology and the Environment, 58, 207, 10.1007/s100640050076 VanWesten, 1997, Prediction of the occurrence of slope instability phenomenal through GIS-based hazard zonation, Geologische Rundschau, 86, 404, 10.1007/s005310050149 Varnes, D.J., 1978. Slope movement types and process of landslides: Analysis and control. United States. National Academy of Sciences, National Research Council, Transportation Research Board Special Report pp 11–33. Varnes, 1984, Landslide hazard zonation — a review of principles and practice, 63 Wang, 1994, An engineering geology expert system of shearing zone Wislocki, 1991, An expert system for landslide hazard and risk assessment, Computers and Structures, 40, 169, 10.1016/0045-7949(91)90469-3 Wolfslehner, 2004, Application of the analytic network process in multi-criteria analysis of sustainable forest management, Forest Ecology and Management, 207, 157 Wu, 2004, Prediction and mapping of landslide hazard, vol. 37(4), 781