Future intensity-depth-frequency curves estimation in Korea under representative concentration pathway scenarios of Fifth assessment report using scale-invariance method

Author:

Choi Jeonghyeon1ORCID,Lee Okjeong1,Jang Juhyoung2,Jang Suhyung3,Kim Sangdan4ORCID

Affiliation:

1. Division of Earth Environmental System Science (Major of Environmental Engineering); Pukyong National University; Busan South Korea

2. Water Quality Assessment Research Division; National Institute of Environmental Research; Incheon South Korea

3. Water Resources Research Center; K-water Institute; Daejeon South Korea

4. Department of Environmental Engineering; Pukyong National University; Busan South Korea

Funder

Disaster and Safety Management Institute funded by Ministry of the Interior and Safety of Korean government

Publisher

Wiley

Subject

Atmospheric Science

Reference36 articles.

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2. Estimation of IDF curves of extreme rainfall by simple scaling in Slovakia;Bara;Contributions to Geophysics and Geodesy,2009

3. Assessing of IDF curves for hydrological design by simple scaling of 1-day precipitation totals;Bara;Slovak Journal of Civil Engineering,2010

4. A regional GEV scale invariant framework for intensity-duration-frequency analysis;Blanchet;Journal of Hydrology,2016

5. Statistical and dynamical downscaling of the Seine basin climate for hydro-meteorological studies;Boé;International Journal of Climatology,2007

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