Few R, Matthies F. Flood hazards and health: responding to present and future risks. Taylor & Francis; 2013.
Melo-Merino SM, Reyes-Bonilla H, Lira-Noriega A. Ecological niche models and species distribution models in marine environments: A literature review and spatial analysis of evidence. Ecological Modelling. 2020; 415: 108837. doi: 10.1016/j.ecolmodel.2019.108837
Guria R, Mishra M, Dutta S, et al. Remote sensing, GIS, and analytic hierarchy process-based delineation and sustainable management of potential groundwater zones: a case study of Jhargram district, West Bengal, India. Environmental Monitoring and Assessment. 2023; 196(1). doi: 10.1007/s10661-023-12205-6
Sauquet E, Shanafield M, Hammond JC, et al. Classification and trends in intermittent river flow regimes in Australia, northwestern Europe and USA: A global perspective. Journal of Hydrology. 2021; 597: 126170. doi: 10.1016/j.jhydrol.2021.126170
Oudin L, Salavati B, Furusho-Percot C, et al. Hydrological impacts of urbanization at the catchment scale. Journal of Hydrology. 2018; 559: 774–786. doi: 10.1016/j.jhydrol.2018.02.064
Yousefi H, Moradi S, Zahedi R, et al. Developed analytic hierarchy process and multi criteria decision support system for wind farm site selection using GIS: A regional-scale application with environmental responsibility. Energy Conversion and Management: X. 2024; 22: 100594. doi: 10.1016/j.ecmx.2024.100594
Chukwuma EC, Okonkwo CC, Ojediran JO, et al. A GIS based flood vulnerability modelling of Anambra State using an integrated IVFRN-DEMATEL-ANP model. Heliyon. 2021; 7(9): e08048. doi: 10.1016/j.heliyon.2021.e08048
Zahedi R, Sadeghitabar E, Khazaee M, et al. Potentiometry of wind, solar and geothermal energy resources and their future perspectives in Iran. Environment, Development and Sustainability. 2024. doi: 10.1007/s10668-024-04633-2
Ghanbarpour MR, Saravi MM, Salimi S. Floodplain Inundation Analysis Combined with Contingent Valuation: Implications for Sustainable Flood Risk Management. Water Resources Management. 2014; 28(9): 2491–2505. doi: 10.1007/s11269-014-0622-2
Johnston R, Smakhtin V. Hydrological Modeling of Large river Basins: How Much is Enough? Water Resources Management. 2014; 28(10): 2695–2730. doi: 10.1007/s11269-014-0637-8
Tien Bui D, Khosravi K, Shahabi H, et al. Flood Spatial Modeling in Northern Iran Using Remote Sensing and GIS: A Comparison between Evidential Belief Functions and Its Ensemble with a Multivariate Logistic Regression Model. Remote Sensing. 2019; 11(13): 1589. doi: 10.3390/rs11131589
Qasimi AB, Isazade V, Enayat E, et al. Landslide susceptibility mapping in Badakhshan province, Afghanistan: a comparative study of machine learning algorithms. Geocarto International. 2023; 38(1). doi: 10.1080/10106049.2023.2248082
Koralay N, Kara Ö. Assessment of flood risk in Söğütlü stream watershed of Trabzon province in Turkey using geographic information systems and analytic hierarchy process approach. Natural Hazards. 2024; 120(11): 9977–10000. doi: 10.1007/s11069-024-06594-1
Estelaji F, Moniri N, Yari MH, et al. Earthquake, flood and resilience management through spatial planning, decision and information system. Future Technology. 2024; 3(2): 11–21. doi: 10.55670/fpll.futech.3.2.2
Khah MV, Zahedi R, Mousavi MS, et al. Forecasting renewable energy utilization by Iran’s water and wastewater industries. Utilities Policy. 2023; 82: 101546. doi: 10.1016/j.jup.2023.101546
Mehrzad K, Rahim Z, Reza F, et al. Potential assessment of renewable energy resources and their power plant capacities in Iran. Global Journal of Ecology. 2022; 7(2): 060–071. doi: 10.17352/gje.000062
Goodarzi MR, Niknam ARR, Sabaghzadeh M. Rainfall-runoff modeling using GIS: A case study of Gorganrood Watershed, Iran. Water Resource Modeling and Computational Technologies. 2022; 165–181. doi: 10.1016/b978-0-323-91910-4.00011-x
Taherizadeh M, Niknam A, Nguyen-Huy T, et al. Flash flood-risk areas zoning using integration of decision-making trial and evaluation laboratory, GIS-based analytic network process and satellite-derived information. Natural Hazards. 2023; 118(3): 2309–2335. doi: 10.1007/s11069-023-06089-5
Estelaji F, Aghajari AA, Zahedi R. Flood zoning and developing strategies to increase resilience against floods with a crisis management approach. Asian Review of Environmental and Earth Sciences. 2023; 10(1): 14–27. doi: 10.20448/arees.v10i1.4439
Estelaji F, Naseri A, Keshavarzzadeh M, et al. Potential measurement and spatial priorities determination for gas station construction using WLC and GIS. Future Technology. 2023; 2(4): 24–32. doi: 10.55670/fpll.futech.2.4.3
Estelaji F, Naseri A, Zahedi R. Evaluation of the Performance of Vital Services in Urban Crisis Management. Advances in Environmental and Engineering Research. 2022; 03(04): 1–19. doi: 10.21926/aeer.2204057
Mirzavand H, Aslani A, Zahedi R. Environmental impact and damage assessment of the natural gas pipeline: Case study of Iran. Process Safety and Environmental Protection. 2022; 164: 794–806. doi: 10.1016/j.psep.2022.06.042
Pettorelli N. The normalized difference vegetation index. Oxford University Press; 2013.
Chemweno P, Pintelon L, Van Horenbeek A, et al. Development of a risk assessment selection methodology for asset maintenance decision making: An analytic network process (ANP) approach. International Journal of Production Economics. 2015; 170: 663–676. doi: 10.1016/j.ijpe.2015.03.017
Dwyer L, Gill A, Seetaram N, et al. Handbook of research methods in tourism: Quantitative and qualitative approaches. Edward Elgar Publishing; 2012.
Teng J, Jakeman AJ, Vaze J, et al. Flood inundation modelling: A review of methods, recent advances and uncertainty analysis. Environmental Modelling & Software. 2017; 90: 201–216. doi: 10.1016/j.envsoft.2017.01.006
Liu S, Wang Y, An Z, et al. Watershed spatial heterogeneity of soil saturated hydraulic conductivity as affected by landscape unit in the critical zone. CATENA. 2021; 203: 105322. doi: 10.1016/j.catena.2021.105322
Ghorbani M, Ghaderi N, Estelaji F, et al. Evaluating Surface Water Collection Infrastructure for Management of Urban Flood Risk: Integrating HEC-RAS with GIS in Overland Flow Modeling and Flood Hazard Zone Mapping within the Kan River Watershed of Tehran. AGU24. https://agu.confex.com/agu/agu24/prelim.cgi/Paper/1594722
Murphy PNC, Ogilvie J, Arp P. Topographic modelling of soil moisture conditions: a comparison and verification of two models. European Journal of Soil Science. 2009; 60(1): 94–109. doi: 10.1111/j.1365-2389.2008.01094.x
Estelaji F, Zahedi R, Gitifar A, et al. Integrating HEC-RAS, GIS, and LISREL for assessing and enhancing urban building resilience against flood threats: Comprehensive model and analysis. Heliyon. 2024; 10(20): e39463. doi: 10.1016/j.heliyon.2024.e39463
Mishra SK, Singh VP. Soil Conservation Service Curve Number (SCS-CN) Methodology. Springer Netherlands; 2003.
Young AF, Papini JA. How can scenarios on flood disaster risk support urban response? A case study in Campinas Metropolitan Area (São Paulo, Brazil). Sustainable Cities and Society. 2020; 61: 102253. doi: 10.1016/j.scs.2020.102253
Huang M, Gallichand J, Dong C, et al. Use of soil moisture data and curve number method for estimating runoff in the Loess Plateau of China. Hydrological Processes. 2006; 21(11): 1471–1481. doi: 10.1002/hyp.6312
Daly C, Halbleib M, Smith JI, et al. Physiographically sensitive mapping of climatological temperature and precipitation across the conterminous United States. International Journal of Climatology. 2008; 28(15): 2031–2064. doi: 10.1002/joc.1688
Hu C, Wright AL, Lian G. Estimating the Spatial Distribution of Soil Properties Using Environmental Variables at a Catchment Scale in the Loess Hilly Area, China. International Journal of Environmental Research and Public Health. 2019; 16(3): 491. doi: 10.3390/ijerph16030491