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논문 기본 정보

자료유형
학술저널
저자정보
Kim, Young-Oh (School of Civil, Urban and Geosystem Engineering, Seoul National University) Seo, Yong-Won (School of Civil, Urban and Geosystem Engineering, Seoul National University) Lee, Seung-Hyun (School of Civil, Urban and Geosystem Engineering, Seoul National University) Lee, Dong-Ryul (Korean Institute of Construction Technology)
저널정보
한국수자원학회 Water engineering research : international journal of KWRA Water engineering research : international journal of KWRA 제1권 제4호
발행연도
2000.1
수록면
267 - 277 (11page)

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This study reports an examination of the sensitivity of water resources in the Keum River basin to climate change. Assuming a doubling in $CO_2$ concentrations, a cooperative study provided four climate change scenarios for this study, which have been translated into temperature and precipitation scenarios on a basin scale. The study utilized these temperature and precipitation data for each climate change scenario as inputs to the NWS-PC model to generate the corresponding streamflow scenario over the Keum River basin. A reservoir simulation model for the Dae-Chung Dam in the Keum River basin has been developed with an object-oriented simulation environment, STELLA. For each streamflow scenario, the performance of the reservoir was assessed in terms of reliability, resiliency, and vulnerability. Although the simulation results are heavily dependent on the choice of the climate change scenarios, the following conclusions can be clearly concluded: (1) the future streamflow over the Dae-Chung Dam tends to decease during the dry period, which seriously increases competitive water use issues and (2) flood control issues predominate under the $2CO_2$-High case.

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