CLIMATE CHANGE IMPACT ASSESSMENT METHOD IN OBSERVATION DATA SCARCE BASIN

Author:

MARUYA Yasuyuki,HIPSEY Matthew R.1,WATANABE Satoshi,ADIYANTI Sri1,TACHIKAWA Yasuto

Affiliation:

1. School of Earth and Environment, The University of Western Austlalia

Publisher

Japan Society of Civil Engineers

Reference12 articles.

1. 1) Twelfth Session of Working Group I : Working Group I Contribution to the IPCC Fifth Assessment Report Climate Change 2013: The Physical Science Basis Summary for Policymakers, 2013, http://www.climatechange2013.org/images/uploads/WGIAR5-SPM_Approved27Sep2013.pdf.

2. 3) Hirabayashi, Y., Mahendran, R., Kirala, S., Konoshima, L., Yamazaki, D., Watanabe, S., Kim, H. and Kanae, S. : Global flood risk under climate change, Nature Climate Change, Vol. 3, pp. 816-821, 2013, doi:10.1038/NCLIMATE1911.

3. 5) Watanabe, S., Kanae, S., Seto, S., Yeh, P. J. F., Hirabayashi, Y. and Oki, T. : Intercomperison of bias-correction methods for monthly temperature and precipitation simulated by multiple climate models, Journal of Geophysical Research, Vol. 117, D23114, doi:10.1029/2012JD018192, 2012.

4. 6) Nakayama, K., Maruya, Y., Nakaegawa, T., Komai, K., Kokubo, K., Ishida, T. and Okada, T. : Projection of “strong wind” events related to recovery from hypoxia in Tokyo Bay, Japan, Hydrological Processes, 2013, DOI:10.1002/hyp. 9829.

5. 7) Heikkilä, U., Sandvik, A.and Sorteberg, A. : Dynamical downscaling of ERA-40 in complex terrain using the WRF regional climate model, Climate Dynamics, Vol. 37, pp. 551-1564, 2011, DOI:10.1007/s00382-010-0928-6.

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