Impact of the East Asian subtropical jet on summer precipitation in China and its response to Atlantic sea surface temperature

IF 3.5 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES International Journal of Climatology Pub Date : 2024-07-23 DOI:10.1002/joc.8583
Mengyao Wang, Lijuan Wang, Mingjian Zeng, Haiying Wu
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Abstract

ERA5 reanalysis data, precipitation data from China, and National Oceanic and Atmospheric Administration (NOAA) monthly sea surface temperature (SST) data are used to analyse the impact of the meridional position of the East Asian subtropical jet (EASJ) on summer precipitation in China and its correlation with Atlantic SST. The results indicate that when the EASJ significantly shifts northward, the western North Pacific subtropical high (WNPSH) weakens with an eastward displacement. Upper-level convergence and moisture divergence, corresponding to descending motion, lead to decreased precipitation in the Yangtze River Valley (YRV). Meanwhile, upper-level divergence occurs over South China (SC), the Hexi Corridor (HC), and Northeast China (NEC), where moisture converges and ascends, favouring an increase in precipitation. Conversely, when the EASJ undergoes a significant southward shift, the WNPSH strengthens and expands westward. Opposing atmospheric circulation patterns in these four regions result in reversed precipitation anomalies compared with those observed when the jet shifts northward. The meridional position of the EASJ is closely related to the summer subtropical Atlantic SST. The positive (negative) SST anomaly (SSTA) over the subtropical Atlantic induces negative (positive) geopotential height anomaly in the upper troposphere over the North Atlantic by modulating the atmospheric meridional circulation. Geopotential height anomalies trigger eastward-propagating Rossby waves, generating anomalous cyclones and anticyclones over East Asia. These anomalous cyclones and anticyclones lead to zonal wind anomalies, which alter the strength of the westerlies on both sides of the climatological jet axis, thereby changing the jet's meridional position. Additionally, the difference in the propagation direction of wave activity flux between positive and negative SSTA alters the distribution of wave energy convergence and divergence in the EASJ region, further affecting the intensity of the average westerly winds on both sides of the climatological jet axis, ultimately producing the changes in the meridional position of the EASJ.

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东亚副热带高压对中国夏季降水的影响及其对大西洋海面温度的响应
利用ERA5再分析资料、中国降水资料和美国国家海洋和大气管理局(NOAA)月海面温度(SST)资料,分析了东亚副热带高压(EASJ)子午线位置对中国夏季降水的影响及其与大西洋SST的相关性。结果表明,当东亚副热带高压显著北移时,北太平洋西部副热带高压(WNPSH)随之东移而减弱。与下降运动相对应的高层辐合和水汽辐散导致长江流域降水减少。同时,华南(SC)、河西走廊(HC)和中国东北(NEC)上空出现高层辐合,水汽辐合并上升,有利于降水增加。相反,当 EASJ 发生显著南移时,WNPSH 会增强并向西扩展。与喷流北移时观测到的降水异常相比,这四个区域相反的大气环流模式导致了相反的降水异常。EASJ 的子午线位置与夏季副热带大西洋海温密切相关。副热带大西洋上空正(负)的 SST 异常(SSTA)通过调节大气经向环流,导致北大西洋上空对流层上层负(正)的位势高度异常。位势高度异常触发向东传播的罗斯比波,在东亚上空产生异常气旋和反气旋。这些异常气旋和反气旋导致带风异常,改变了气候喷流轴两侧西风的强度,从而改变了喷流的经向位置。此外,正负 SSTA 之间波浪活动通量传播方向的差异改变了 EASJ 区域波浪能量汇聚和发散的分布,进一步影响了气候喷流轴两侧平均西风的强度,最终导致 EASJ 子午线位置的变化。
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来源期刊
International Journal of Climatology
International Journal of Climatology 地学-气象与大气科学
CiteScore
7.50
自引率
7.70%
发文量
417
审稿时长
4 months
期刊介绍: The International Journal of Climatology aims to span the well established but rapidly growing field of climatology, through the publication of research papers, short communications, major reviews of progress and reviews of new books and reports in the area of climate science. The Journal’s main role is to stimulate and report research in climatology, from the expansive fields of the atmospheric, biophysical, engineering and social sciences. Coverage includes: Climate system science; Local to global scale climate observations and modelling; Seasonal to interannual climate prediction; Climatic variability and climate change; Synoptic, dynamic and urban climatology, hydroclimatology, human bioclimatology, ecoclimatology, dendroclimatology, palaeoclimatology, marine climatology and atmosphere-ocean interactions; Application of climatological knowledge to environmental assessment and management and economic production; Climate and society interactions
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