Abraham, L. Z., Roehrig, J., & Chekol, D. A. (2006). Climate change impact on Lake Ziway watershed water availability, Ethiopia. Institute for Technology in the Tropics, University of Applied Science: Cologne, Germany.
Abd Ellah, R. G. (2020). Water resources in Egypt and their challenges, Lake Nasser case study.
The Egyptian Journal of Aquatic Research, 46(1), 1-12.
https://doi.org/10.1016/j.ejar.2020.03.001
Abdo, K. S., Fiseha, B. M., Rientjes, T. H. M., Gieske, A. S. M., & Haile, A. T. (2009). Assessment of climate change impacts on the hydrology of Gilgel Abay catchment in Lake Tana basin, Ethiopia.
Hydrological Processes: An International Journal, 23(26), 3661-3669.
https://doi.org/10.1002/hyp.7363
Adamo, N., Al-Ansari, N., & Sissakian, V. (2021). Review of climate change impacts on human environment: past, present and future projections.
Engineering, 13(11), 605-630.
https://doi.org/10.4236/eng.2021.1311044
Ahmadian, M., & Montaseri, M. (2022). Evaluating Global Climate Models and Ranking them for Hydrological Simulation.
Water & Soil Science (Agricultural Science), 31(4), 69-84.
https://doi.org/10.22034/WS.2021.12255 (In Persian)
Almazroui, M., Saeed, S., Saeed, F., Islam, M.N., & Ismail, M. (2020). Projections of precipitation and temprature over the South Asia countries in CMPI6.
Earth Systems and Environment, 4, 297-320.
https://doi.org/10.1007/s40333-023-0050-3
Ashofteh, P.S., & Bozorg Hadad, O. (2014). A New Probabilistic Approach for Evaluation of the Effects of Climate Change on Water Resources.
Water Resources Engineering, 6(19), 51-66.
https://doi.org/20.1001.1.20086377.1392.6.17.4.2 (In Persian)
Ataei Giglu, I., Jalilvand, H., Pourmajidian, M.R., & Didar, R.. (2011). Agroforestry, new procedure to develop rural economy. Journal of Sciences and Techniques in Natural resources, 5(4), 49-61. (In Persian).
Babaeian, E., Nagafineik, Z., Zabolabasi, F., Habeibei, M., Adab, H., & Malbisei, S. (2009). Climate Change Assessment over Iran During 2010-2039 by Using Statistical Downscaling of ECHO- G Model.
Geography and Development,
7(16), 135152.
https://doi.org/10.22111/gdij.2009.1179 (In Persian)
Barber, V. A., Juday, G. P., & Finney, B. P. (2000). Reduced growth of Alaskan white spruce in the twentieth century from temperature-induced drought stress.
Nature, 405(6787), 668-673.
https://doi.org/10.1038/35015049
Bates, B. C., Kundzewicz, S. W., & Palutikof, J. P. 2008. Climate change and water. Technical paper of the Intergovernmental Panel on Climate Change. Geneva: IPCC Secretariat.
Bekele, A., Aticho, A., & Kissi, E. (2018). Assessment of community based watershed management practices: emphasis on technical fitness of physical structures and its effect on soil properties in Lemo district, Southern Ethiopia.
Environmental Systems Research, 7, 1-11.
https://doi.org/10.1186/s40068-018-0124-y
Breshears, D. D., Cobb, N. S., Rich, P. M., Price, K. P., Allen, C. D., Balice, R. G., ..., & Meyer, C. W. (2005). Regional vegetation die-off in response to global-change-type drought.
Proceedings of the National Academy of Sciences, 102(42), 15144-15148.
https://doi.org/10.1073/pnas.0505734102
Belay, H. (2021). Evaluation of Climate Change impacts on hydrology on selected catchments of Abbay Basin. MSc Thesis, Addis Ababa University School of Post Graduate Studies. Pp 60-67.
Burn, D. H., Buttle, J. M., Caissie, D., MacCulloch, G., Spence, C., & Stahl, K. (2008). The processes, patterns and impacts of low flows across Canada.
Canadian Water Resources Journal, 33(2), 107-124.
https://doi.org/10.4296/cwrj3302107
Chen, H., Sun, J., Lin, W., & Xu, H. (2020). Comparison of CMIP6 and CMIP5 models in simulating climate extremes.
Sci. Bull, 65(17), 1415-1418.
https://doi.org/10.1016/j.scib.2020.05.015
Cicerone, R.J. & Oremland, R. (1988). Biogeochemical aspects of atmospheric methane.
Global Biogeochemical Cycles, 2, 299-327.
https://doi.org/10.1029/GB002i004p00299
Conway, D. (2005). From headwater tributaries to international river: Observing and adapting to climate variability and change in the Nile basin.
Global Environmental Change, 15(2), 99-114.
https://doi.org/10.1016/j.gloenvcha.2005.01.003
Diaz, A. (1996). Rangelands in a changing climate: impacts, adaptations, and mitigation.
Demissie, T. A., Saathoff, F., Sileshi, Y., & Gebissa, A. (2013). Climate change impacts on the streamflow and simulated sediment flux to Gilgel Gibe 1 hydropower reservoir–Ethiopia.
European International Journal of Science and Technology, 2(2), 63-77.
http://10.140.5.162//handle/123456789/1411
De Wit, M., & Stankiewicz, J. (2006). Changes in surface water supply across Africa with predicted climate change.
Science, 311(5769),1917-1921.
https://doi.org/10.1126/science.11199
Eltarabily, M. G., Abd-Elaty, I., Elbeltagi, A., Zeleňáková, M., & Fathy, I. (2023). Investigating climate change effects on evapotranspiration and groundwater recharge of the Nile delta aquifer, Egypt.
Water, 15(3), 572.
https://doi.org/10.3390/w15030572
Erol, A., & Randhir, T. O. (2012). Climatic change impacts on the ecohydrology of Mediterranean watersheds.
Climatic change. 114, 319-341.
https://doi.org/10.1007/s10584-012-0406-8
Eyring, V., Bony, S., Meehl, G.A., Senior, C.A., Stevens, B., Stouffer, R.J., & Taylor, K.E. 2016. Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organization.
Geoscientific Model Development, 9, 1937-1958.
https://doi.org/10.5194/gmd-9-1937-2016
Evangelista, A., Frate, L., Carranza, M. L., Attorre, F., Pelino, G., & Stanisci, A. (2016). Changes in composition, ecology and structure of high-mountain vegetation: a re-visitation study over 42 years.
AoB Plants, 8, plw004.
https://doi.org/10.1093/aobpla/plw004
Getu Engida, T., Nigussie, T. A., Aneseyee, A. B., & Barnabas, J. (2021). Land use/land cover change impact on hydrological process in the Upper Baro Basin, Ethiopia.
Applied and Environmental Soil Science. 2021, 1-15.
https://doi.org/10.1155/2021/6617541
Goitom, H., De Smedt, F., Yohannes, T. G., Walraevens, K., Gebrehiwot, K., Bauer, H., & Deckers, J. (2012). Modeling climate change impact in the Geba Basin, Ethiopia. In International Conference on Environmental. Biomedical and Biotechnology, 41, 240-244.
Goudarzian, P., Erfanifard, U., & Sadeghi, H. (2013). Detection and Classification of Available Agroforestry Systems in Fars Province (Case Study: Kazerun City). Journal of Agricultural Science and Sustainable Production, 23(1), 55-70. (In Persian)
Heidari, M., & Khazaei, M.R. (2018). Climate change impact assessment on extreme daily rainfalls in Kermanshah. Journal Of Water and Soil Resources Conservation, 7(2 ), 27-39. (In Persian)
Hughes, A., Mansour, M., Ward, R., Kieboom, N., Allen, S., Seccombe, D. ..., & Prudhomme, C. (2021). The impact of climate change on groundwater recharge: National-scale assessment for the British mainland.
Journal of Hydrology, 598, 126336.
https://doi.org/10.1016/j.jhydrol.2021.126336
Ikhlas, N., & Ramadan, B. S. (2023). Community-based watershed management (CBWM) for climate change adaptation and mitigation: Research trends, gaps, and factors assessment.
Journal of Cleaner Production, 140031.
https://doi.org/10.1016/j.jclepro.2023.140031
Ilbay-Yupa, M., Ilbay, F., Zubieta, R., García-Mora, M., & Chasi, P. (2021). Impacts of climate change on the precipitation and streamflow regimes in equatorial regions: Guayas river basin
. Water, 13(21), 3138.
https://doi.org/10.3390/w13213138
IPCC (2007).
The physical science basis – summary for Policymakers. Contribution of WG1 to the Fourth assessment report of the Intergovernmental Panel on Climate Change. Availableat:
http://www.ipcc.ch/ipccreports/ar4- wg1.htm
Karimi, H., Karami, G., & Mousavi, S. M. (2019). Investigating of characteristic and contexts of agroforestry system development.
Human & Environment, 17(2), 79-90.
https://doi.org/20.1001.1.15625532.1398.17.2.6.6 (In Persian)
Karimi, S. R., nasrolahi, A., & iranshahi, M. (2024). Investigating the effects of climate change on reference evapotranspiration based on the SSP scenarios. Iranian Journal of Soil and Water Research, 54(11), 1759-1777. https://doi.org/10.22059/ijswr.2023.358697.669493 (In Persian)
Kitabata, H., Nishizawa, K., Yoshida, Y., & Maruyama, K. (2006). Permafrost thawing in Circum-Arctic and highlands under climatic change scenario projected by community climate system model (CCSM3).
Sola, 2, 53-56.
https://doi.org/10.2151/sola.2006-014
Kundzewicz, Z. W., Graczyk, D., Maurer, T., Pińskwar, I., Radziejewski, M., Svensson, C., & Szwed, M. (2005). Trend detection in river flow series: 1. Annual maximum flow/Détection de tendance dans des séries de débit fluvial: 1. Débit maximum annuel.
Hydrological Sciences Journal, 50(5), 810.
https://doi.org/10.1623/hysj.2005.50.5.797
Le Maitre, D. C., Scott, D. F., & Colvin, C. (1999). Review of information on interactions between vegetation and groundwater.WATER SA, 25 (2), 137-152.
Li, C., & Fang, H. (2021). Assessment of climate change impacts on the streamflow for the Mun River in the Mekong Basin, Southeast Asia: Using SWAT model.
Catena, 201, 105199.
https://doi.org/10.1016/j.catena.2021.105199
Loukas, A., Vasiliades, L., & Dalezios, N. R. (2002). Climatic impacts on the runoff generation processes in British Columbia, Canada.
Hydrology and Earth System Sciences, 6(2), 211-228.
https://doi.org/10.5194/hess-6-211-2002
Malekmohammadi, B., Uvo, C. B., Moghadam, N. T., Noori, R., & Abolfathi, S. (2023). Environmental risk assessment of wetland ecosystems using Bayesian belief networks.
Hydrology, 10(1), 16.
https://doi.org/10.3390/hydrology10010016
Malmir, M., Mohamadrezapour, O., Sharifazari, S., & Ghandehari, G.H. (2016). The effect of climate change on stream flow used Statistical downscaling of HADCM3 model and Artificial Neural Networks.
Journal of Water and Soil Conservation,
23(3), 317-326.
https://doi.org/10.22069/jwfst.2016.3201 (In Persian)
Mansouri, B., Ahmadzadeh, H., Massah Bavani, A., morid, S., Delavar, M., & Lotfi, S. (2016). Assessment of climate change impacts on water resources in Zarrinehrud basin using SWAT model.
Water and Soil. 28(6), 1203-1291.
https://doi.org/10.22067/jsw.v0i0.35633 (In Persian)
Mboka, J.J.M., Kouna, S.B., Chouto, S., Djuidje, F.K., Nguy, E.B., Fotso‐Kamga, G., Matsaguim, C.N., Fotso‐Nguemo, T.C., Nghonda, J.P., Vondou, D.A. & Yepdo, Z.D. (2021). Simulated impact of global warming on extreme rainfall events over Cameroon during the 21st century.
Weather, 76(10), 347-353.
https://doi.org/10.1002/wea.3867
Mosier, A.R., Schimel, D., Valentine, D.K. Bronson, K., & Parton, W. (1991). Methane and nitrous oxide fluxes in native, fertilized and cultivated grasslands.
Nature, 350, 330-332.
https://doi.org/10.1038/350330a0
Mollaie, F., Hosseini, S.M., Hejazi, S.V., & Pishbin, S. A.R. (2018). Explaining the Adaptation Strategies of Farmers to Climate Change in South Khorasan Province.
Iranian Agricultural Extension and Education Journal, 14(2), 83-105. https://doi.org/
20.1001.1.20081758.1400.17.0.8.2 (In Persian)
Mortazavifar, S. M., Mobin, M. H., Mokhtari, M. H., Ekrami, M., & Rfiei Sardoii, E. (2019). Evaluation of the impact of climate change on precipitation and temperature variables based on the RCP scenarios: A case study of the east of Mazandaran Province, Iran. Journal of Meteorology and Atmospheric Science, 1(4), 351-364. (In Persian)
Ojima, D.S., Galvin, K.A., & Turner, B.L. (1994). The global impact of landuse change.
Bioscience, 44(5), 300-304.
https://doi.org/10.2307/1312379
Poormohammadi, S., Dastorani, M.T., Massah Bavani, A.R., Gudarzi, M., Jafari, H., & Rahimian, M.H. (2017). Effects of Climate Change on River Runoff and Compatible Solutions (CaseStudy: Tuyserkan Basin, Hamedan). Iranian Journal of Soil and Water Research, 11(37), 1-12. (In Persian)
Saeedifar, Z., Khosroshahi, M., Jalili, A., Razavizadeh, S., Dargahian, F., Zandifar, S., Lotfinasabasl, S., Gohardust, A., Teimuri, S., & Fayaz, M. (2021). Analysis of the Effect of Climatic Factors and Drought on Inflow and Outflow from the Khuzestan Plain in the Karun Basin.
Journal of Water and Sustainable Development, 8(3), 43-54.
https://doi.org/10.22067/jwsd.v8i3.2102.1020 (In Persian)
Sanchez-Gomez, A., Martinez-Perez, S., Leduc, S., Sastre-Merlin, A., & Molina-Navarro, E. (2023). Streamflow components and climate change: Lessons learnt and energy implications after hydrological modeling experiences in catchments with a Mediterranean climate.
Energy Reports, 9, 277-291.
https://doi.org/10.1016/j.egyr.2022.11.191
Svensson, C., Kundzewicz, Z. W., & Maurer, T. (2005) Trend detection in river flow series: 2. Flood and low-flow index series.
Hydrological Sciences Journal, 50(5), 811–824.
https://doi.org/10.1623/hysj.2005.50.5.811
Sodaeizadeh, H., & Jebali, A. (2020). Monitoring Changes in Agricultural Land Area under Agroforestry Practices (A Case Study of Bagh-Baghoueiyeh in Jiroft).
Land Management Journal, 8(1), 13-26.
https://doi.org/10.22092/lmj.2020.122308 (In Persian)
Soliman, E.S., Sayed, M.A., & Jeuland, M. (2009). Impact assessment of future climate change for the Blue Nile basin using a RCM nested in a GCM. Nile Basin Water Engineering Scientific Magazine, 2, 15-30.
Pike, R.G., Spittlehouse, D.L., Bennett, K.E., Egginton, V.N., Tschaplinski, P.J., Murdock, T.Q., & Werner, A.T. (2008). Climate change and watershed hydrology: part I—recent and projected changes in British Columbia. Streamline Watershed Management Bulletin, 11(2), 1-8.
Stewart, I. T., Cayan, D. R., & Dettinger, M. D. (2004). Changes in snowmelt runoff timing in western North America under abusiness as usual'climate change scenario.
Climatic Change, 62(1), 217-232.
https://doi.org/10.1023/B:CLIM.0000013702.22656.e8
Sun, Y., Sun, Y., Yao, S., Akram, M.A., Hu, W., Dong, L., Li, H., Wei, M., Gong, H., Xie, S. & Aqeel, M. (2021). Impact of climate change on plant species richness across drylands in China: From past to present and into the future.
Ecological Indicators, 132, 108288.
https://doi.org/10.1016/j.ecolind.2021.108288
Tarekegn, D., & Tadege, A. (2006). Assessing the Impact of Climate Change on the Water Resource of Lake Tana Sub-Basin Using the WATBAL Model, Ethiopia.
Tarolli, P., Zuecco, G., & Picco, L. (2023). Watershed resilience to climate change: From hillslopes to rivers and coasts.
Evolving Earth, 1, 100010.
https://doi.org/10.1016/j.eve.2023.100010
Tesfaye, E., Abate, B., Alemayehu, T., & Dile, Y. (2023). Evaluating the skills of the CMIP5 global climate models using multicriteria decision-making analysis in Ethiopia.
Heliyon, 9(10), e20320.
https://doi.org/10.1016/j.heliyon.2023.e20320
Toews, M. W., Allen, D. M., & Whitfield, P. H. (2009). Recharge sensitivity to local and regional precipitation in semiarid midlatitude regions. Water resources research, 45(6).
Wang, K., Dickinson, R. E., & Liang, S. (2012). Global atmospheric evaporative demand over land from 1973 to 2008.
Journal of Climate 25(23), 8353-8361.
https://doi.org/10.1175/JCLI-D-11-00492.1
Wang, S. J., Lee, C. H., Yeh, C. F., Choo, Y. F., & Tseng, H. W. (2021). Evaluation of climate change impact on groundwater recharge in groundwater regions in Taiwan.
Water. 13(9), 1153.
https://doi.org/10.3390/w13091153
Yaghoobzadeh, M., Ahmadi, M., Boroumandnasab, S., & Haghayeghi Moghadam, A. (2017). Impact of Climate Change on Changing Trend of Evapotranspiration during the Growth Period of Irrigated and Rainfed Field Crops by AOGCM Models.
Journal of Water Research in Agriculture,
30(4), 511-523.
https://doi.org/10.22092/jwra.2017.109013 (In Persian)
Zareian, M. (2022). Effects of Climate Change on Temperature and Precipitation in Yazd Province Based on Combined Output of CMIP6 Models.
Journal of Water and Soil Science. 26 (2):91-105.
https://doi.org/10.47176/jwss.26.2.31501 (In Persian)