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Assessing drought impacts for adaptive response

                   Dev Sustain. 2019;21(6):2963-2977.                   doi: 10.1007/s11269-020-02703-4
                   doi: 10.1007/s10668-018-0173-4                   13.  Edwards, B., Gray, M., Hunter, B. The social and economic
                2.  Mirzaei A, Azarm H, Yazdanpanah M, Najafabadi MM.   impacts of drought. Aust J Soc Issues. 2019;54(1):22-31.
                   Socio-economic,  social-capital, and psychological      doi: 10.1002/ajs4.52
                   characteristics and climate change adaptive behavior of   14.  Bruinsma J. World Agriculture: Towards 2015/2030: An
                   farmers in Iran. Clim Res. 2022;87:1-12.             FAO Perspective. UK: Routledge; 2017.
                   doi: 10.3354/cr01683                             15.  Hadizadeh F, Allahyari MS, Damalas CA, Yazdani MR.
                3.  Udmale P, Ichikawa  Y, Manandhar S, Ishidaira H,    Integrated management of agricultural water resources
                   Kiem AS. Farmers’ perception of drought impacts, local   among  paddy farmers  in Northern Iran.  Agric  Water
                   adaptation  and administrative  mitigation  measures  in   Manag. 2018;200:19-26.
                   Maharashtra  State,  India.  Int J Disaster Risk  Reduct.      doi: 10.1016/j.agwat.2017.12.031
                   2014;10:250-269.                                 16.  Mardani Najafabadi M, Mirzaei A, Azarm H, Nikmehr S.
                   doi: 10.1016/j.ijdrr.2014.09.011                     Managing  water supply  and  demand  to  achieve
                4.  Bento  VA, Gouveia  CM,  DaCamara  CC,  Trigo  IF.   economic and environmental objectives: Application of
                   A climatological assessment of drought impact        mathematical programming and ANFIS models. Water
                   on vegetation  health  index.  Agric For Meteorol.   Resour Manag. 2022;36(9):3007-3027.
                   2018;259:286-295.                                    doi: 10.1007/s11269-022-03178-1
                   doi: 10.1016/j.agrformet.2018.05.014             17.  Yazdanpanah M, Forouzani M., Abdeshahi A, Jafari A.
                5.  Ngondjeb  YD.  Agriculture and climate  change in   Investigating the effect of moral norm and self-identity
                   Cameroon:  An assessment of impacts  and adaptation   on the  intention toward water conservation  among
                   options. Afr J Sci Technol Innov Dev. 2013;5(1):85-94.  Iranian young adults. Water Policy. 2016;18(1):73-90.
                   doi: 10.1080/20421338.2013.782151                    doi: 10.2166/wp.2015.031
                6.  Pakmehr S,  Yazdanpanah M, Baradaran M. How     18.  D’Odorico P, Carr J, Dalin C, et al. Global virtual water
                   collective  efficacy  makes  a  difference  in  responses  to   trade  and the hydrological  cycle:  Patterns, drivers,
                   water shortage due to climate change in southwest Iran.   and socio-environmental  impacts.  Environ Res Lett.
                   Land Use Policy. 2020;99:104798.                     2019;14(5):053001.
                   doi: 10.1016/j.landusepol.2020.104798                doi: 10.1088/1748-9326/ab05f4
                7.  Wilhite DA, Svoboda MD, Hayes MJ. Understanding the   19.  Khalili D. Challenges facing water resources management
                   complex impacts of drought: A key to enhancing drought   under drought conditions in Iran. Strateg Res J Agric Sci
                   mitigation  and preparedness.  Water Resour Manag.   Nat Resour. 2016;1(2):149-164.
                   2007;21(5):763-774.                                  doi: 10.22047/SRJASNR.2016.110542
                   doi: 10.1007/s11269-006-9076-5                   20.  National Climate Change Office. Iran Second National
                8.  Eliasson J. The rising pressure of global water shortages.   Communication  to  UNFCC. National  Climate  Change
                   Nature. 2015;517(7532):6.                            Office at the Department of Environment on Behalf of
                   doi: 10.1038/517006a                                 the Government of the Islamic Republic of Iran; 2010.
                9.  Li M, Fu Q, Singh VP, Ma M, Liu X. An intuitionistic   21.  Nazari MR.  The economic impacts  of climate  change
                   fuzzy multi-objective  non-linear programming model   on Iranian agricultural  sector. In:  Technical  Workshop
                   for sustainable irrigation  water allocation  under the   of  Investigating Climate  Change  Related  Challenges
                   combination  of dry and wet conditions.  J  Hydrol.   and Implementing  the  United  Nations  Framework
                   2017;555:80-94.                                      Convention on Climate Change in Iran, Tehran; 2015.
                   doi: 10.1016/j.jhydrol.2017.09.055                   (In Persian)
                10.  Lu H, Li J, Ren L, Chen Y. Optimal groundwater security   22.  Sadeghi SH, Moghadam ES, Delavar M, Zarghami M.
                   management policies by control of inexact health risks   Application  of  water-energy-food nexus  approach  for
                   under dual uncertainty  in slope factors.  Chemosphere.   designating optimal agricultural management pattern at a
                   2018;198:161-173.                                    watershed scale. Agric Water Manag. 2020;233:106071.
                   doi: 10.1016/j.chemosphere.2018.01.121               doi: 10.1016/j.agwat.2020.106071
                11.  Mirzaei  A,  Azarm H, Naghavi S. Optimization  of   23.  Ashraf  Vaghefi  S,  Mousavi  SJ,  Abbaspour  KC,
                   cropping pattern under seasonal fluctuations of surface   Srinivasan R, Yang H. Analyses of the impact of climate
                   water using multistage  stochastic  programming.  Water   change on water resources components, drought and
                   Supply. 2022;22(6):5716-5728.                        wheat yield in semiarid regions: Karkheh River Basin in
                   doi: 10.2166/ws.2022.224                             Iran. Hydrol Processes. 2014;28(4):2018-2032.
                12.  Mirzaei  A,  Zibaei  M.  Water  conflict  management      doi: 10.1002/hyp.9747
                   between agriculture and wetland under climate change:   24.  Mirzaei  A, Zibaei  M. Investigation  of adaptation
                   Application  of   economic-hydrological-behavioral   strategies for agricultural water resources management
                   modelling. Water Resour Manag. 2021;35(1):1-21.      under climate change in Halil-rud river basin. J Agric



                Volume 22 Issue 2 (2025)                       111                                 doi: 10.36922/ajwep.8381
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