The Behavior of Inflow to the Seimareh Dam in the Face of Climate Change Impacts
Subject Areas : environmental managementMohammadreza Goodarzi 1 , Hamed Vagheei 2 , Mirrahim Mousavi 3
1 - Assistant Professor, Department of Civil Engineering, Yazd University, Yazd, Iran. * (Corresponding Author)
2 - Ph.D Student in Civil and Environmental Engineering, Politecnico di Torino, Turin, Italy.
3 - Assistant Professor, Department of Engineering, Ayatollah Ozma Borujerdi University, Borujerd, Iran.
Keywords: Downscaling, Climate Change, Hydrological model, Seimareh Dam,
Abstract :
Background and Objective: The importance of environment protection has caused different countries benefit from renewable and clean sources to generate electricity. This has led to the development of hydropower plants around the world. Also, there are different hydroelectric projects in Iran that the Seimareh Dam & Hydropower Plant is amongst them. Since climate change can alter the hydrologic conditions of different areas and the performance of hydraulic structures, this study aims to examine the impacts of this phenomenon on the inflow to the Seimareh Dam. Method: Climate conditions in the future period (2040 to 2069) are predicted for the study area using HadCM3 model under A2 and B2 scenarios as well as CanESM2 model under RCP2.6, RCP4.5 and RCP8.5 scenarios by the Statistical DownScaling Method (SDSM model). Also, this study uses HEC-HMS hydrologic model to simulate river flow. Findings: The results of the present study show that temperature of the area increases in the future period to different scenarios, in such a way that the highest amount of increase for maximum and minimum temperature in the future period has been predicted for RCP8.5 respectively about 1.2 and 1.3 Centigrade. It is predicted that the mean annual amount of rainfall will reduce as well. Also, the assessment of simulated river flow shows that inflow to the Seimareh Dam will decrease about 5.2 to 13.4 percent in the future period. Discussion and Conclusion: The results of the present study show the importance and necessity of considering the climate change impacts in designing important hydraulic structures such as dams and hydropower plants.
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- Hamlet, A.F., Lettenmaier, D.P., 2007. Effects of 20th century warming and climate variability on flood risk in the western U.S. Journal of Water Resources Research 43, W06427.
- IPCC 2007. Climate Change 2007: Synthesis report. Contribution of working groups I, II and III to the fourth assessment report of the Intergovernmental Panel on Climate Change [Core writing team, Pachauri RK, Reisinger A, (eds.)]. IPCC, Geneva, Switzerland, 104p.
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- Lettenmaier, D.P., Wood, A.W., Palmer, R.N., Wood, E.F., Stakhiv, E.Z., 1999. Water resources implications of global warming: a U.S. regional perspective. Journal of Climatic Change 43: 537-579.
- Pruski, F.F., Nearing, M.A., 2002. Runoff and soil-loss responses to changes in precipitation: A computer simulation study. Journal of Soil and Water Conservation 57: 7-16.
- Rosenberg, N.J., Brown, R.A., Izaurralde, R.C., Thomson, A.M., 2003. Integrated assessment of Hadley Centre (HadCM2) climate change projections on agricultural productivity and irrigation water supply in the conterminous United States: I. Climate change scenarios and impacts on irrigation water supply simulated with the HUMUS model. Journal of Agricultural and Forest Meteorology 117: 73-96.
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- Abbaspour, K.C., Faramarzi, M., Ghasemi, S.S., Yang, H., 2009. Assessing the impact of climate change on water resources in Iran. Journal of Water Resources Research 45, W10434.
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- Wilby, R.L., Dawson, C.W., Barrow, E.M., 2002. SDSM-Adecision support tool for the assessment of regionalclimate change impacts. Journal of Environmental Modelling& Software 17: 145–157.
- Chen, J., Brissette, F.P., Leconte, R., 2012. Coupling statistical and dynamical methods for spatial downscaling of precipitation. Journal of Climate Change 114: 509-526.
- Wilby, R.L., Dawson, C.W., 2013. The Statistical DownScaling Model: insights from one decade of application. International Journal of Climatology 33: 1707-1719.
- Alizadeh, A., 2011. Principles of applied hydrology, 32th ed. Imam Reza University, Mashhad.(In Persian)
- HEC 2000. Hydrologic modeling system HEC–HMS: Technical reference manual, U.S. Army Corps of Engineers, Hydrologic Engineering Center, Davis, Calif, 157p.