Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 Projection
The changes of agro-climate and heat extremes, and their impact on rice cultivation are assessed over South Korea in context of 2 and 3 °C global warming levels (GWL) compared to pre-industrial levels, with ensemble regional climate model projection produced under the Coordinated Regional Climate Do...
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doaj-ec0e723252e34ea391b8dba98e9693812020-12-10T00:02:48ZengMDPI AGAtmosphere2073-44332020-12-01111336133610.3390/atmos11121336Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 ProjectionSera Jo0Kyo-Moon Shim1Jina Hur2Yong-Seok Kim3Joong-Bae Ahn4Climate Change Assessment Division, National Institute of Agricultural Sciences, Wanju 55365, KoreaClimate Change Assessment Division, National Institute of Agricultural Sciences, Wanju 55365, KoreaClimate Change Assessment Division, National Institute of Agricultural Sciences, Wanju 55365, KoreaClimate Change Assessment Division, National Institute of Agricultural Sciences, Wanju 55365, KoreaDepartment of Atmospheric Sciences, Pusan National University, Busan 46241, KoreaThe changes of agro-climate and heat extremes, and their impact on rice cultivation are assessed over South Korea in context of 2 and 3 °C global warming levels (GWL) compared to pre-industrial levels, with ensemble regional climate model projection produced under the Coordinated Regional Climate Downscaling Experiment–East Asia (CORDEX-EA) phase 2 protocols. It is found that the mean temperature increase under global warming has not only positive effects such as the extension of vegetable and crop periods and the widening of the cultivatable regions but also negative effects due to the shortening of the reproductive growth period. On the other hand, extreme heat changes in the future clearly show a negative effect on rice cultivation via the increase of hot days during heat-sensitive stages (27.16% under 2 °C GWL, 54.59% under 3 °C GWL) among rice phenology which determines the rice yield in tandem with rice flowering, ripening, and sterility problems. The major type of heat extreme is dominated by nationwide warm anomalies covering entire S. Korea, and the proportion of this type is projected to increase from 35.8% to 49.5% (57.4%) under 2 °C (3 °C) GWL in association with the thermal expansion of atmosphere which links to the favorable environment for occurring barotropic anti-cyclonic system.https://www.mdpi.com/2073-4433/11/12/1336agro-climate changeParis agreementheat extreme2 °C warmingCORDEX-EA2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sera Jo Kyo-Moon Shim Jina Hur Yong-Seok Kim Joong-Bae Ahn |
spellingShingle |
Sera Jo Kyo-Moon Shim Jina Hur Yong-Seok Kim Joong-Bae Ahn Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 Projection Atmosphere agro-climate change Paris agreement heat extreme 2 °C warming CORDEX-EA2 |
author_facet |
Sera Jo Kyo-Moon Shim Jina Hur Yong-Seok Kim Joong-Bae Ahn |
author_sort |
Sera Jo |
title |
Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 Projection |
title_short |
Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 Projection |
title_full |
Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 Projection |
title_fullStr |
Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 Projection |
title_full_unstemmed |
Future Changes of Agro-Climate and Heat Extremes over S. Korea at 2 and 3 °C Global Warming Levels with CORDEX-EA Phase 2 Projection |
title_sort |
future changes of agro-climate and heat extremes over s. korea at 2 and 3 °c global warming levels with cordex-ea phase 2 projection |
publisher |
MDPI AG |
series |
Atmosphere |
issn |
2073-4433 |
publishDate |
2020-12-01 |
description |
The changes of agro-climate and heat extremes, and their impact on rice cultivation are assessed over South Korea in context of 2 and 3 °C global warming levels (GWL) compared to pre-industrial levels, with ensemble regional climate model projection produced under the Coordinated Regional Climate Downscaling Experiment–East Asia (CORDEX-EA) phase 2 protocols. It is found that the mean temperature increase under global warming has not only positive effects such as the extension of vegetable and crop periods and the widening of the cultivatable regions but also negative effects due to the shortening of the reproductive growth period. On the other hand, extreme heat changes in the future clearly show a negative effect on rice cultivation via the increase of hot days during heat-sensitive stages (27.16% under 2 °C GWL, 54.59% under 3 °C GWL) among rice phenology which determines the rice yield in tandem with rice flowering, ripening, and sterility problems. The major type of heat extreme is dominated by nationwide warm anomalies covering entire S. Korea, and the proportion of this type is projected to increase from 35.8% to 49.5% (57.4%) under 2 °C (3 °C) GWL in association with the thermal expansion of atmosphere which links to the favorable environment for occurring barotropic anti-cyclonic system. |
topic |
agro-climate change Paris agreement heat extreme 2 °C warming CORDEX-EA2 |
url |
https://www.mdpi.com/2073-4433/11/12/1336 |
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