Future changes in summer precipitation in regional climate simulations over the Korean Peninsula forced by multi-RCP scenarios of HadGEM2-AO

被引:0
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作者
Dong-Hyun Cha
Dong-Kyou Lee
Chun-Sil Jin
Gayoung Kim
Yonghan Choi
Myoung-Seok Suh
Joong-Bae Ahn
Song-You Hong
Seung-Ki Min
Seong-Chan Park
Hyun-Suk Kang
机构
[1] Ulsan National Institute of Science and Technology,School of Urban and Environmental Engineering
[2] Seoul National University,School of Earth and Environmental Sciences
[3] Kongju National University,Department of Atmospheric Science
[4] Pusan National University,Department of Atmospheric Sciences
[5] Korea Institute of Atmospheric Prediction Systems,School of Environmental Science and Engineering
[6] Pohang University of Science and Technology,School of Urban and Environmental Engineering
[7] Korea Meteorological Administration,undefined
[8] National Institute of Meteorological Science,undefined
[9] Ulsan National Institute of Science & Technology,undefined
关键词
Climate change; summer precipitation; Korean Peninsula; regional climate model; HadGEM2-AO; multi-RCP scenarios;
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学科分类号
摘要
In this study, the regional climate of the Korean Peninsula (KP) was dynamically downscaled using a high-resolution regional climate model (RCM) forced by multi- representative concentration pathways (RCP) scenarios of HadGEM2-AO, and changes in summer precipitation were investigated. Through the evaluation of the present climate, the RCM reasonably reproduced long-term climatology of summer precipitation over the KP, and captured the sub-seasonal evolution of Changma rain-band. In future projections, all RCP experiments using different RCP radiative forcings (i.e., RCP2.6, RCP4.5, RCP6.0, and RCP8.5 runs) simulated an increased summer precipitation over the KP. However, there were some differences in changing rates of summer precipitation among the RCP experiments. Future increases in summer precipitation were affected by future changes in moisture convergence and surface evaporation. Changing ranges in moisture convergences among RCP experiments were significantly larger than those in surface evaporation. This indicates that the uncertainty of changes in summer precipitation is related to the projection of the monsoon circulation, which determines the moisture convergence field through horizontal advection. Changes in the sub-seasonal evolution of Changma rain-band were inconsistent among RCP experiments. However, all experiments showed that Changma rain-band was enhanced during late June to early July, but it was weakened after mid-July due to the expansion of the western North Pacific subtropical high. These results indicate that precipitation intensity related to Changma rain-band will be increased, but its duration will be reduced in the future.
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页码:139 / 149
页数:10
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