Role of Sea Surface Temperature over the Kuroshio Extension Region on Heavy Rainfall Events over the Korean Peninsula

被引:0
作者
Yoo-Geun Ham
Hye-Yun Na
Seol-Hee Oh
机构
[1] Chonnam National University,Department of Oceanography
来源
Asia-Pacific Journal of Atmospheric Sciences | 2019年 / 55卷
关键词
Heavy rainfall over Korea; Changma; Marginal SST pre-cursor; Kuroshio Extension; East Sea SST variation;
D O I
暂无
中图分类号
学科分类号
摘要
This study examines the active role of sea surface temperature (SST) over the Kuroshio Extension region during heavy rainfall events over the Korean Peninsula within Changma period (June–July). While the overall synoptic patterns during the heavy rainfall events over Korea are similar to those during moderate rainfall events (i.e. between 0.5 and 1 standard deviation), the synoptic signals preceding heavy rainfall events are distinct from those of moderate rainfall events. A distinguishing feature is the maintenance of a high-pressure anomaly over the Kuroshio Extension region, which lead to persistent southerly winds and resultant heavy rainfall events over the Korean Peninsula, from roughly 1 week before the start of heavy rainfall events. On the other hand, the high-pressure anomaly associated with the moderate rainfall events is propagated from the west along the climatological westerly winds. It was found that positive SST anomalies over the Kuroshio Extension region (140–156°E, 28–35°N) play an important role in maintaining the high-pressure anomaly over the Kuroshio Extension region. None of heavy rainfall events was found when the positive geopotential height anomaly over the Kuroshio Extension region was co-located with a local negative SST anomaly. This probability increased to 62% when the positive geopotential height anomaly was co-located with a local positive SST anomaly. This shows that a positive SST anomaly over the Kuroshio Extension region can be a useful precursor to heavy rainfall events over the Korean Peninsula.
引用
收藏
页码:19 / 29
页数:10
相关论文
共 99 条
[21]  
Qiu B(1981)Frontogenesis and geostrophically forced secondary circulations in the vicinity of jet stream-frontal zone systems J. Atmos. Sci. 38 954-973
[22]  
Joyce TM(2005)Development mechanisms for the heavy rainfall of 6-7 August 2002 over the middle of the Korean peninsula J. Meteor. Soc. Japan 83 683-709
[23]  
Kwon YO(2008)Air–sea interaction over ocean fronts and eddies Dyn. Atmos. Oceans 45 274-319
[24]  
Cronin MF(2002)A numerical study of an intense quasi-stationary convection band over the Korean peninsula J. Meteorol. Soc. Japan 80 1221-1245
[25]  
Kosaka Y(2009)Ocean frontal effects on the vertical development of clouds over the western North Pacific: in situ and satellite observations* J. Clim. 22 4241-4260
[26]  
Nakamura H(2011)Deep atmospheric response to the spring Kuroshio over the East China Sea* J. Clim. 24 4959-4972
[27]  
Kuwano-Yoshida A(2017)Intraseasonal variability of air temperature over East Asia in boreal summer Front. Earth Sci. 5 63-undefined
[28]  
Minobe S(undefined)undefined undefined undefined undefined-undefined
[29]  
Xie SP(undefined)undefined undefined undefined undefined-undefined
[30]  
Kwon YO(undefined)undefined undefined undefined undefined-undefined