- Alexander, L. V., & Arblaster, J. M. (2017). Historical and projected trends in temperature and precipitation extremes in Australia in observations and CMIP5. Weather and Climate Extremes, 15(January), 34–56.
- Ashraf Vaghefi, S., Abbaspour, N., Kamali, B., & Abbaspour, K. C. (2017). A toolkit for climate change analysis and pattern recognition for extreme weather conditions – Case study: California-Baja California Peninsula. Environmental Modelling and Software, 96, 181–198.
- Brêda, J. P. L. F., de Paiva, R. C. D., Collischon, W., Bravo, J. M., Siqueira, V. A., & Steinke, E. B. (2020). Climate change impacts on South American water balance from a continental-cale hydrological model driven by CMIP5 projections. Climatic Change, 159(4), 503–522.
- Dong, T. Y., Dong, W. J., Guo, Y., Chou, J. M., Yang, S. L., Tian, D., & Yan, D. D. (2018). Future temperature changes over the critical Belt and Road region based on CMIP5 models. Advances in Climate Change Research, 9(1), 57–65.
- Doulabian, S., Golian, S., Toosi, A. S., & Murphy, C. (2021). Evaluating the effects of climate change on precipitation and temperature for Iran using RCP scenarios. Journal of Water and Climate Change, 12(1), 166–184.
- Gaitán, E., Monjo, R., Pórtoles, J., & Pino-Otín, M. R. (2019). Projection of temperatures and heat and cold waves for Aragón (Spain) using a two-step statistical downscaling of CMIP5 model outputs. Science of the Total Environment, 650, 2778–2795.
- Gorguner, M., Kavvas, M. L., & Ishida, K. (2019). Assessing the impacts of future climate change on the hydroclimatology of the Gediz Basin in Turkey by using dynamically downscaled CMIP5 projections. Science of the Total Environment, 648, 481–499.
- Hempel, S., Frieler, K., Warszawski, L., Schewe, J., & Piontek, F. (2013). A trend-preserving bias correction–the ISI-MIP approach. Earth System Dynamics, 4(2), 219–236.
- Hussain, M., Yusof, K. W., Mustafa, M. R., Mahmood, R., & Shaofeng, J. (2017). Projected changes in temperature and precipitation in sarawak state of Malaysia for selected CMIP5 climate scenarios. International Journal of Sustainable Development and Planning, 12(8), 1299–1311.
- Liu, S., Xie, Z., Liu, B., Wang, Y., Gao, J., Zeng, Y., … Qin, P. (2020). Global river water warming due to climate change and anthropogenic heat emission. Global and Planetary Change, 193, 103289.
- Petrie, M. D., Bradford, J. B., Lauenroth, W. K., Schlaepfer, D. R., Andrews, C. M., & Bell, D. M. (2020). Non-analog increases to air, surface, and belowground temperature extreme events due to climate change. Climatic Change, 163(4), 2233–2256.
- Riahi, K., Rao, S., Krey, V., Cho, C., Chirkov, V., Fischer, G., … Rafaj, P. (2011). RCP 8.5-A scenario of comparatively high greenhouse gas emissions. Climatic Change, 109(1), 33– 57.
- Sa’adi, Z., Shiru, M. S., Shahid, S., & Ismail, T. (2020). Selection of general circulation models for the projections of spatio-temporal changes in temperature of Borneo Island based on CMIP5. Theoretical and Applied Climatology, 139(1–2), 351–371.
- Sadeqi, A., & Kahya, E. (2021). Spatiotemporal analysis of air temperature indices, aridity conditions, and precipitation in Iran. Theoretical and Applied Climatology, 1–14.
- Shiru, M. S., Chung, E. S., Shahid, S., & Alias, N. (2020). GCM selection and temperature projection of Nigeria under different RCPs of the CMIP5 GCMS. Theoretical and Applied Climatology, 141(3–4), 1611–1627.
- Stocker, T. F., Qin, D., Plattner, G.-K., Tignor, M. M. B., Allen, S. K., Boschung, J., … Midgley, P. M. (2014). Climate Change 2013: The physical science basis. contribution of working group I to the fifth assessment report of IPCC the intergovernmental panel on climate change. USA. Cambridge University Press.
- Tan, M. L., Ibrahim, A. L., Yusop, Z., Chua, V. P., & Chan, N. W. (2017). Climate change impacts under CMIP5 RCP scenarios on water resources of the Kelantan River Basin, Malaysia. Atmospheric Research, 189, 1–10.
- Van Vuuren, D. P., Edmonds, J. A., Kainuma, M., Riahi, K., & Weyant, J. (2011). A special issue on the RCPs. Climatic Change, 109(1), 1–4.
- Van Vuuren, D. P., Edmonds, J., Kainuma, M., Riahi, K., Thomson, A., Hibbard, K., … Lamarque, J.-F. (2011). The representative concentration pathways: an overview. Climatic Change, 109(1), 5–31.
- Woolway, R. I., Kraemer, B. M., Lenters, J. D., Merchant, C. J., O’Reilly, C. M., & Sharma, S. (2020). Global lake responses to climate change. Nature Reviews Earth & Environment, 1(8), 388–403.
- Yousefi, H., Moridi, A., Yazdi, J., & KhazaiePoul, A. (2020). Investigating the effect of climate change on discharge, NO3 load, and agricultural products yield upstream of Esteghlal dam. Iran-Water Resources Research, 16(2), 35-49. (In Persian)
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