TREND ANALYSIS ON HEAVY RAINFALL LEADING TO FLOOD DAMAGE AT 58 CLASS A RIVER BASINS
Author:
Affiliation:
1. 東京大学大学院 新領域創成科学研究科
2. 国立環境研究所
Publisher
Japan Society of Civil Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jscejer/78/6/78_II_77/_pdf
Reference33 articles.
1. 1) Imada, Y., Kawase, H., Watanabe, M., Arai, M., Shiogama, H. and Takayabu, I. : Advanced risk-based event attribution for heavy regional rainfall events, Climate and Atomospheric Science, 2020.
2. 2) Winsemius, C., Aerts, J., Van, Beek, L., Bierkens, M., Bouwman, A., Jongman, B., Kwadijk, J., Ligtvoet, W., Lucas, P., Van, V., D. and Ward, P. : Global drivers of future river flood risk, Nature Climate Change, Vol. 6, pp. 381-385, 2016.
3. 3) Trenberth, K. : Changes in precipitation with climate change, Climate Research, Vol. 47, pp. 123-138, 2011.
4. 4) 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, Vol. 3, pp. 816-821, 2013.
5. 5) 渡辺春樹,吉川沙耶花,瀬戸里枝,鼎信次郎:日本における極端降水頻度の変化率とClausius-Clapeyron式との関係,土木学会論文集 B1(水工学),Vol. 74,No. 4,pp. 145-150,2018.[Watanabe, H., Yoshikawa, S., Seto, R. and Kanae, S.: Relationship between change in frequency of extreme precipitation and Clausius-clapayron over Japan, The Journal of Japan Society of Civil Engineers, Ser. B1 (Annual Journal of Hydraulic Engineering), Vol. 74, No. 4, pp. 145-150, 2018.]
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