Spatiotemporal Patterns of Temperature, Precipitation, Wind, and Sunshine Extremes in the Seomjin and Yeongsan River Basins (2020--2023)
Abstract
Keywords
Full Text:
PDFReferences
Bita, C.E., and Gerats, T., 2013: Plant Tolerance to High Temperature in a Changing Environment: Scientific Fundamentals and Production of Heat Stress-Tolerant Crops. Frontiers in Plant Science 4, 273.
Ebi, K. L., Capon, A., Berry, P., Broderick, C., de Dear, R., Havenith, G., and Jay, O. 2021: Hot weather and heat extremes: health risks. The Lancet, 398(10301), 698--708.
Field, C.B., et al., 2012: Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation: Summary for Policymakers. IPCC SREX.
Intergovernmental Panel on Climate Change, 2021: Climate Change 2021: The Physical Science Basis. Cambridge University Press.
Intergovernmental Panel on Climate Change, 2022: IPCC Special Report on the Ocean and Cryosphere in a Changing Climate.
Kim, D. J., 2021: Past, present and future of geospatial scheme based on topo-climatic model and digital climate map. Korean Journal of Agricultural and Forest Meteorology, 23(4), 268--279.
Korea Meteorological Administration, 2025: Real-time Weather Data.
Korea Rural Economic Institute, 2017: Shifts in precipitation patterns and their impact on agricultural sustainability and rural economic recovery.
The Academy of Korean Studies, n.d.: Yeongsan River.
Korean Society of Agricultural and Forest Meteorology, 2023: Technical Guide for Early Warning Services on Agricultural Meteorological Disasters (Revised Edition).
Konno, S., and Sugiura, T., 2024: Experimental Study on Cold Tolerance Thresholds in Field Grown Subtropical Fruit Trees. Journal of Agricultural Meteorology 80(3), 90--97.
Lavell, A., Oppenheimer, M., Diop, C., Hess, J., Lempert, R., Li, J., and Myeong, S., 2012: Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation. IPCC.
Lee, K.H., Ryu, Y.W., and Park, J.S., 2020: Investigation of Flood Damage and Cause Analysis in the Yeongsan and Seomjin River Basins in August 2020. Journal of Korean Society of Water Resources 53(11), 21--48.
Lee, Y.H., Kim, J., and Park, K., 2022: Characteristics of Extreme High Temperature Events in South Korea. Climate Dynamics 55(1), 1685--1696.
Ministry of Environment, Yeongsan River Basin Environmental Office. Available online.
Ministry of Interior and Safety, 2021: Climate Change and Its Impact on Extreme Weather Events.
National Academies of Sciences, Engineering, and Medicine, 2016: Attribution of Extreme Weather Events in the Context of Climate Change. National Academies Press.
Parker, L.E., Mc Elrone, A.J., Ostoja, S.M., and Forrestel, E.J., 2020: Extreme Heat Effects on Perennial Crops and Strategies for Sustaining Future Production. Plant Science 295, 110397.
Stott, P., 2016: How Climate Change Affects Extreme Weather Events. Science 352, 1517--1518.
Yun, J. I., 2010: Agroclimatic maps augmented by a GIS technology. Korean Journal of Agricultural and Forest Meteorology 12(1), 63--73. (in Korean with English abstract).
Additional references added for methodological context:
Daly, C., Neilson, R.P., & Phillips, D.L. (1994). A Statistical-Topographic Model for Mapping Climatological Precipitation over Mountainous Terrain. Journal of Applied Meteorology, 33, 140--158.
Daly, C., Taylor, G.H., & Gibson, W.P. (1997). The PRISM Approach to Mapping Precipitation and Temperature. Proc. 10 th AMS Conf. on Applied Climatology, Reno, NV.newpage
ETCCDI. Definitions of the 27 Core Climate Extremes Indices (TNn, TXx, Rx 1 day, Rx 5 day, etc.). (Accessed 2025).
Refbacks
- There are currently no refbacks.
© 2008 Mathematical and Computational Forestry & Natural-Resource Sciences


