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Volume 369 | Copyright
Proc. IAHS, 369, 81-86, 2015
https://doi.org/10.5194/piahs-369-81-2015
© Author(s) 2015. This work is distributed under
the Creative Commons Attribution 3.0 License.

  11 Jun 2015

11 Jun 2015

The effect on river discharge estimation by considering an interaction between land surface process and river routing process

K. Yorozu and Y. Tachikawa
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Cited articles
Hirabayashi, Y., Mahendran, R., Koirala, S., Konoshima, L., Yamazaki, D., Watanabe, S., Kim, H., and Kanae, S.: Global flood risk under climate change, Nature Climate Change, 3, 816–821, 2013.
Homma, K. and Horie, T.: The Present Situation and the Future Improvement of Fertilizer Applications by Farmers in Rainfed Rice Culture, in: Fertilizers: Properties, Applications and Effects, edited by: Elsworth, L. R. and Paley, W. O., Nova Science Publishers, Inc., Chapter VII, 147–180, 2009.
Lehner, B., Verdin, K., and Jarvis, A.: New global hydrography derived from spaceborne elevation data, EOS T. Am. Geophys. Un., 89, 93–94, 2008.
Masson, V., Champeaux, J. L., Chauvin, F., Meriguet, C., and Lacaze, R.: A global database of land surface parameters at 1-km resolution in meteorological and climate models, J. Climate, 16, 1261–1282, 2003.
Middelkoop, H., Daamen, K., Gellens, D., Grabs, W., Kwadijk, J. C. J., Lang, H., Parmet, B. W. A. H., Schädler, B., Schulla, J., and Wilke, K.: Impact of Climate Change on Hydrological Regimes and Water Resources Management in the Rhine Basin, Climatic Change, 49, 105–128, 2001.
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Short summary
In this study, a distributed hydrologic model considering the interaction between flow routing and land surface processes was developed, and its effect on river discharge estimation was investigated. The results of this study suggest that considering hydrologic interaction in a numerical model could affect both flood and drought estimation.
In this study, a distributed hydrologic model considering the interaction between flow routing...
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