Prioritization of potential soil erosion susceptibility region using fuzzy logic and analytical hierarchy process, upper Blue Nile Basin, Ethiopia

Water-Energy Nexus - Tập 4 - Trang 10-24 - 2021
Berhanu G. Sinshaw1,2, Abreham M. Belete1, Agumase K. Tefera1,2, Abebe Birara Dessie3, Belay B. Bizuneh4, Habtamu T. Alem1, Simir B. Atanaw1, Daniel G. Eshete1, Tsegaye G. Wubetu1, Haimanot B. Atinkut3,5, Mamaru A. Moges2,6
1School of Civil and Water Resource Engineering, University of Gondar, Gondar 196, Ethiopia
2Faculty of Civil and Water Resources Engineering, Bahir Dar Institute of Technology (BiT), Bahir Dar University, Bahir Dar 26, Ethiopia
3College of Agriculture and Environmental Sciences, University of Gondar, Gondar 196, Ethiopia
4Department of Hydraulic and Water Resource Engineering, Debre Markos University, Debre Markos 269, Ethiopia
5College of Economics and Management, Huazhong Agricultural University, Hubei Wuhan 430070, PR China
6Water, Irrigation, and Energy Bureau, Amhara Regional State, Bahir Dar, Ethiopia

Tài liệu tham khảo

Aher, 2013, Prioritization Of Watersheds Using Multicriteria Evaluation Through Fuzzy Analytical Hierarchy Process, Agricult. Eng. Int.: Cigr J., 15, 11 Al Raisi S.A.H, Sulaiman H, Abdallah O, Suliman FE 2014. Landfill Suitability Analysis Using Ahp Method And State Of Heavy Metals Pollution In Selected Landfills in Oman. European Scientific, 10, 17. Arabameri, 2018, Identification Of Erosion-Prone Areas Using Different Multicriteria Decision-Making Techniques And Gis. Geomatics, Nat. Hazards., 9, 1129, 10.1080/19475705.2018.1513084 Assefa E, and Hans-Rudolf B. (2016).Farmers' Perception of Land Degradation and Traditional Knowledge in Southern Ethiopia—Resilience and Stability. Land Degradation and Development. https://doi.org/10.1002/ldr.2364. Azareh, 2019, Modelling Gully-Erosion Susceptibility In A Semi-Arid Region, Iran: Investigation Of Applicability Of Certainty Factor And Maximum Entropy Models, Sci. Total Environ., 655, 684, 10.1016/j.scitotenv.2018.11.235 Budescu, 1986, A Comparison Of The Eigenvalue Method And The Geometric Mean Procedure For Ratio Scaling, Appl. Psychol. Meas., 10, 69, 10.1177/014662168601000106 Bui, 2012, Spatial Prediction Of Landslide Hazards In Hoa Binh Province (Vietnam): A Comparative Assessment Of The Efficacy Of Evidential Belief Functions And Fuzzy Logic Models, Catena, 96, 28, 10.1016/j.catena.2012.04.001 Chambers, 2014, Derivation Of Lowland Riparian Wetland Deposit Architecture Using Geophysical Image Analysis And Interface Detection, Water Resour. Res., 50, 5886, 10.1002/2014WR015643 Chen, 2017, Spatial Prediction Of Landslide Susceptibility Using An Adaptive Neuro-Fuzzy Inference System Combined With Frequency Ratio, Generalized Additive Model, And Support Vector Machine Techniques, Geomorphology, 297, 69, 10.1016/j.geomorph.2017.09.007 Danielson, T. 2013. Utilizing A High Resolution Digital Elevation Model (Dem) To Develop A Stream Power Index (Spi) For The Gilmore Creek Watershed In Winona County, Minnesota. Papers In Resource Analysis, 15. Demicco, 2003, Fozzy Logic in Geology. Center for Intelligent Systems. Binghamton University (Suny), New work, USA, Fozzy Logic in Geology Desalegn, 2014, Land-Use/Land-Cover (Lulc) Change And Socioeconomic Conditions Of Local Community In The Central Highlands Of Ethiopia, Int. J. Sustain. Dev. World Ecology, 21, 406, 10.1080/13504509.2014.961181 Elewa, 2013, Determining Groundwater Protection Zones For The Quaternary Aquifer Of Northeastern Nile Delta Using Gis-Based Vulnerability Mapping, Environ. Earth Sci., 68, 313, 10.1007/s12665-012-1740-x Gaikwad, 2017, Multi-Criteria Watershed Prioritization Of Kas Basin In Maharashtra India: Ahp And Influence Approaches, Hydrospatial Anal., 1, 41, 10.21523/gcj3.17010105 Garosi, 2018, Comparison Of Differences In Resolution And Sources Of Controlling Factors For Gully Erosion Susceptibility Mapping, Geoderma, 330, 65, 10.1016/j.geoderma.2018.05.027 Goshu, G. & Aynalem, S. 2017. Problem Overview Of The Lake Tana Basin. Social And Ecological System Dynamics. Springer. Halefom, 2019, Modelling And Mapping Of Erosion Potentiality Watersheds Using Ahp And Gis Technique: A Case Study Of Alamata Watershed, South Tigray, Ethiopia, Model. Earth Syst. Environ., 5, 819, 10.1007/s40808-018-00568-6 Jauniswal, R., Ghosh, N., Galkate, R. & Thomas, T. 2015. Multi Criteria Decision Analysis (Mcda) For Watershed Prioritization. Jaiswal, 2014, Watershed Prioritization Using Saaty's Ahp Based Decision Support For Soil Conservation Measures, Water Resour. Manage., 28, 475, 10.1007/s11269-013-0494-x Kakembo, 2009, Topographic Thresholds In Gully Development On The Hillslopes Of Communal Areas In Ngqushwa Local Municipality, Eastern Cape, South Africa, Geomorphology, 110, 188, 10.1016/j.geomorph.2009.04.006 Kayastha, 2013, Application Of The Analytical Hierarchy Process (Ahp) For Landslide Susceptibility Mapping: A Case Study From The Tinau Watershed, West Nepal, Comput. Geosci., 52, 398, 10.1016/j.cageo.2012.11.003 A. Kindie Kindie, A. 2018. Spatial Analysis Of Groundwater Potential Using Gis Based Multicriteria Evaluation Method, In Lake-Tana Basin, Ethiopia. Loucks, D. P. & Van Beek, E. 2017. Water Resource Systems Planning And Management: An Introduction To Methods, Models, And Applications, Springer. Kebede Y.S., Sinshaw, BG, Endalamaw NT., Atinkut, HB .2020. Modeling soil erosion using RUSLE and GIS at watershed level in the upper beles, Ethiopia. Environmental Challenges, 2, 100009. Malczewski, 1999 Minale, 2017 Moratalla, 2011, Evaluation Of A Gis-Based Integrated Vulnerability Risk Assessment For The Mancha Oriental System (Se Spain), Water Resour. Manage., 25, 3677, 10.1007/s11269-011-9876-0 T. Nyerges Nyerges, T. 2004. Chapter Eleven Progress In Spatial Decision Making Using Geographic Information Systems. Geographic Information Research: Transatlantic Perspectives, 121. Pourghasemi, 2020 Pradeep, 2015, Identification Of Critical Soil Erosion Prone Areas And Annual Average Soil Loss In An Upland Agricultural Watershed Of Western Ghats, Using Analytical Hierarchy Process (Ahp) And Rusle Techniques, Arabian J. Geosci., 8, 3697, 10.1007/s12517-014-1460-5 Rahmati, 2016, Gully Erosion Susceptibility Mapping: The Role Of Gis-Based Bivariate Statistical Models And Their Comparison, Nat. Hazards, 82, 1231, 10.1007/s11069-016-2239-7 Saaty, 2001 Saha, 2019, Identification Of Soil Erosion-Susceptible Areas Using Fuzzy Logic And Analytical Hierarchy Process Modeling In An Agricultural Watershed Of Burdwan District, India, Environ. Earth Sci., 78, 649, 10.1007/s12665-019-8658-5 Sajedi-Hosseini, 2018, Spatial Prediction Of Soil Erosion Susceptibility Using A Fuzzy Analytical Network Process: Application Of The Fuzzy Decision Making Trial And Evaluation Laboratory Approach, Land Degrad. Dev., 29, 3092, 10.1002/ldr.3058 Setegn, SG, Dargahi B., Srinivasan, R., Melesse, AM, 2010. Modeling of Sediment Yield from Anjeni‐Gauged Watershed, Ethiopia Using SWAT Model.. Journal of the American Water Resource Association. Scherr, SJ. and Yadav, SN. 1996. Land degradation in the developing world: Implications for food, agriculture, and the environment to 2020. Working or Discussion Paper. Setegn , SG., Dargahi B., Srinivasan, R., Melesse, AM. 2010. Modeling of Sediment Yield from Anjeni‐Gauged Watershed, Ethiopia Using SWAT Model. Journal of the American Water Resource Association. Scherr, 1996 Setegn, 2010, Modeling of Sediment Yield from Anjeni‐Gauged Watershed, Ethiopia Using SWAT Model., Journal of the American Water Resource Association, 10.1111/j.1752-1688.2010.00431.x Sinshaw, 2019, 294 Taha, 2012, A Hybrid Fuzzy Ahp-Promethee Decision Support System For Machine Tool Selection In Flexible Manufacturing Cell, J. Intell. Manuf., 23, 2137, 10.1007/s10845-011-0560-2 Tilahun SA., Guzman CD., Zegeye AD., Ayana ES., Collick AS., Yitaferu B., Steenhuis TM. 2014. Spatial and temporal patterns of soil erosion in the semi-humid Ethiopian highlands: A case study of Debre Mawi watershed. In: Melesse A., Abtew W., Setegn S. (eds) Nile River Basin. Springer, Cham. https://doi.org/10.1007/978-3-319-02720-3_9Demicco RV. and Klir, GJ. 2003. Fozzy Logic in Geology. Center for Intelligent Systems. Binghamton University (Suny), New work, USA. Wind, 1980, Marketing Applications Of The Analytic Hierarchy Process, Manage. Sci., 26, 641, 10.1287/mnsc.26.7.641 Young, 2004, Impacts Of Hydro-Dams, Irrigation Schemes And River Control Works, Freshwat. New Zealand, 37, 15 Zabihi, M., Mirchooli, F., Motevalli, A., Darvishan, A. K., Pourghasemi, H. R., Zakeri, M. A. & Sadighi, F. 2018. Spatial Modelling Of Gully Erosion In Mazandaran Province, Northern Iran. Catena, 161, 1-13. Zadeh, L. A. 1965. Fuzzy Sets. Informat. Control, 8, 338-353.