과제정보
이 논문은 2023년 교육부와 한국연구재단의 지원을 받아 수행된 연구임(NRF-RS-2023-00280330).
참고문헌
- Adnan, S., Ullah, K., Shuanglin, L., Gao, S., Khan, A. K., and Rashed, M. (2018). "Comparison of various drought indices to monitor drought status in Pakistan." Climate Dynamics, Vol. 51, pp. 1885-1899. https://doi.org/10.1007/s00382-017-3987-0
- An, S., Park, G., Jung, H., and Jang, D. (2022). "Assessment of future drought index using SSP scenario in Rep. of Korea." Sustainability, Vol. 14, No. 7, 4252.
- Do, Y., and Kim, G. (2018). "Analysis of the change of dam inflow and evapotranspiration in the Soyanggang Dam basin according to the AR5 climate change scenarios." Journal of The Korean Society of Agricultural Engineers, Vol. 60, No. 1, pp. 89-99. (in Korean) https://doi.org/10.5389/KSAE.2018.60.1.089
- Ghafouri-Azar, M., and Bae, D.-H. (2018). "Streamflow response to climate change during the wet and dry seasons in South Korea under a CMIP5 climate model." Journal of Korea Water Resources Association, Vol. 51, No. S-1, pp.1091-1103. (in Korean)
- Guo, L., Chen, S., Kong, D., Yan, S., Xu, Y., Majid, K., and Fatemeh, G. (2021). "Prediction of the effects of climate change on hydroelectric generation, electricity demand, and emissions of greenhouse gases under climatic scenarios and optimized ANN model." Energy Reports, Vol. 7, pp. 5431-5445. https://doi.org/10.1016/j.egyr.2021.08.134
- Kankam-Yeboah, K., Obuobie, E., Amisigo, B., and Opoku-Ankomah, Y. (2013). "Impact of climate change on streamflow in selected river basins in Ghana." Hydrological Sciences Journal, Vol. 58, No. 4. pp. 773-788. https://doi.org/10.1080/02626667.2013.782101
- Kim, J., Byun, S., Yoo, J., and Kim, T.W. (2023). "Investigating the effects of meteorological disasters on hydroelectric power generation using a structural equation modeling." Journal of the Korean Society of Civil Engineers, Vol. 43, No. 1, pp. 33-41. (in Korean)
- Kim, S., Masoud, A., and Tricia, A.S. (2022a). "Climate change impact on water supply and hydropower generation potential in Northern Manitoba." Journal of Hydrology: Regional Studies, Vol. 41. 101077.
- Kim, Y., Kim, Y., Hwang, S., and Kim, D. (2022b). "Prospect of future water resources in the basins of Chungju Dam and Soyang-gang Dam using a physics-based distributed hydrological model and a deep-learning-based LSTM model." Journal of Korea Water Resources Association, Vol. 55, No. 12, pp. 1115-1124. (in Korean)
- Korean Statistical Information Service (KOSIS) (2023). South Korea, accessed 26 April 2024, <https://kosis.kr/search/search.do?query=발전량>.
- Labedzki, L. (2007). "Estimation of local drought frequency in central Poland using the standardized precipitation index SPI." Irrig. and Drain, Vol. 56, pp.67-77. https://doi.org/10.1002/ird.285
- Mlynski, D., Ksiqzek, L., and Bogdal, A. (2024). "Meteorological drought effect for central Europe's hydropower potential." Renewable and Sustainable Energy Reviews, Vol. 191. 114175.
- Park, M., Shin, H., Park, G, and Kim, S. (2010). "Assessment of future hydrological behavior of Soyanggang Dam watershed using SWAT." Journal of The Korean Society of Civil Engineers, Vol. 30, pp. 337-346. (in Korean)
- Pieter, D., Clemente, A., Antonio, S., Roger, D., Asher, K., and Ednildo, A. (2018). "Hydroelectric production from Brazil's Sao Francisco River could cease due to climate change and inter-annual variability." Science of The Total Environment, Vol. 634, pp. 1540-1553. https://doi.org/10.1016/j.scitotenv.2018.03.256
- Qin, P., Xu, H., Liu, M., Du, L., Xiao, C., Liu, L., and Tarroja, B. (2020a). "Climate change impacts on Three Gorges Reservoir impoundment and hydropower generation." Journal of Hydrology, Vol. 580. 123922.
- Qin, P., Xu, H., Liu, M., Xiao, C., Forrest, K.E., Samuelsen, S., and Tarroja, B. (2020b). "Assessing concurrent effects of climate change on hydropower supply, electricity demand, and greenhouse gas emissions in the Upper Yangtze River Basin of China." Applied Energy, Vol. 279. 115694.
- Roger, G., and Eddie, R. (2023). 2023 Hydropower Status Report, International Hydropower Association 2023, accessed 26 April 2024, <https://www.hydropower.org/publications/2023-world-hydropower-outlookt>.
- Shiru, M., and Chung, E.S. (2021). "Performance evaluation of CMIP6 global climate models for selecting models for climate projection over Nigeria." Theoretical and Applied Climatology, Vol. 146, pp.599-615. https://doi.org/10.1007/s00704-021-03746-2
- The Joong Booilbo (TJB) (2022) Persistent spring drought... Chungju Dam water levels significantly drop, accessed 8 April 2024, <https://www.jbnews.com/news/articleView.html?idxno=1363485>.
- The Korea Economic Daily (TKED) (2022). Soyang Dam water level plunges due to drought, 11 meters lower than last year, accessed 8 April 2024, <https://www.hankyung.com/article/202206137355Y>.
- The Kukmin Daily (TKD) (2015). The worst drought in 42 years... Report on the situation of Chungju Dam and Soyang Dam Crisis of changing riverbeds and suspension of cruise ships... Threat to residents livelihoods, accessed 1 April 2024, <https://www.kmib.co.kr/article/view.asp?arcid=0923016840>.
- Wagner, T., Themebl, M., Schuppel, A., Gobiet, A., Stigler, H., and Birk, S. (2017). "Impacts of climate change on stream flow and hydro power generation in the Alpine region." Environmental Earth Sciences, Vol. 76, No. 4, pp.1-22. https://doi.org/10.1007/s12665-016-6318-6
- Zhao, X., Huang, G., Li, Y., and Lu, C. (2023). "Responses of hydroelectricity generation to streamflow drought under climate change." Renewable and Sustainable Energy Reviews, Vol. 174, 113141.