Assessing hydrologic response to climate change of a stream watershed using SLURP hydrological model

Author:

Ahn So Ra,Park Geun Ae,Jung In Kyun,Lim Kyoung Jae,Kim Seong Joon

Publisher

Springer Science and Business Media LLC

Subject

Civil and Structural Engineering

Reference38 articles.

1. Ahn, J. H., Yoo, C. S., and Yoon, Y. N. (2001). “An analysis of hydrologic changes in Daechung dam basin using GCM simulation results due to global warming.” Journal of Korean Water Resources Association, Vol. 34, No. 4, pp. 335–345.

2. Alcamo, J., Döll, P., Kaspar, F., and Siebert, S. (1997). Global change and global scenarios of water use and availability: An application of Water GAP 1.0. Report A9701, Center for Environmental Systems Research, University of Kassel, Germany.

3. Aleix S. C., Juan, B. V., Javier, G. P., Kate, B., Luis, J. M., and Thomas, M. (2007). “Modeling climate change impacts-and uncertainty-on the hydrology of a riparian system.” Journal of Hydrology, Vol. 347, Nos. 1–2, pp. 48–66.

4. Andersen, J., Dybkjaer, G., Jensen, K. H., Refsgaard, J. C., and Rasmussen, K. (2002). “Use of remotely sensed precipitation and leaf area index in a distributed hydrological model.” Journal of Hydrology, Vol. 264, Nos. 1–4, pp. 34–50.

5. Andersson, L., Wilk, J., Todd, M. C., Hughes, D. A., Earle, A., Kniveton, D., Layberry, R., and Savenije, H. G. (2006). “Impact of climate change and development scenarios on flow patterns in the Okavango River.” Journal of Hydrology, Vol. 331, Nos. 1–2, pp. 43–57.

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