Impact of Rainfall Intensity Changes on Water Storage of Subsurface Dam
Author:
Affiliation:
1. Institute for Rural Engineering, National Agriculture and Food Research Organization
2. Secretariat of the Japanese Society of Irrigation, Drainage and Rural Engineering
Publisher
Journal of Rainwater Catchment Systems
Link
https://www.jstage.jst.go.jp/article/jrcsa/28/2/28_28_2_41/_pdf
Reference14 articles.
1. [1] Frank, S., Goeppert, N., and Goldscheider, N. (2021): Improved understanding of dynamic water and mass budgets of high-alpine karst systems obtained from studying a well-defined catchment area, Hydrological Processes, 35(4), e14033.
2. [2] IPCC (2021) Summary for Policymakers, Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press.
3. [3] Jameson, A., and Baker, T. (1983): Solution of the Euler equations for complex configurations, Proceeding of 6th AIAA Computational Fluid Dynamics Conference, 83-1929.
4. [4] 国土交通省水管理・国土保全局水資源部:令和3年版 日本の水資源の現況,https://www.mlit.go.jp/mizukokudo/mizsei/mizukokudo_mizsei_tk2_000028.html,(参照2021-12-16).
5. [5] 来間玄次・仲間勇栄・井上章二・木島真志・陳 碧霞 (2012): さんご石灰岩地帯におけるドリーネの浸透排水の解析とトンネル導入による排水対策工の効果予測―糸満市山城地区アシチャガーの事例,日本雨水資源化システム学会誌,18(1),pp.15-25.
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