与多年拉尼娜现象有关的中国南方春季降水量差异

IF 1.4 3区 地球科学 Q3 OCEANOGRAPHY Acta Oceanologica Sinica Pub Date : 2024-02-29 DOI:10.1007/s13131-023-2147-0
Guangliang Li, Licheng Feng, Wei Zhuang, Fei Liu, Ronghua Zhang, Cuijuan Sui
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引用次数: 0

摘要

本研究进行了综合分析,以揭示 1901 至 2015 年间多年拉尼娜现象期间中国南方春季降水量的差异。结果发现,北方春季第一年降水量明显低于正常水平,而第二年降水量则高于正常水平。中国南方春季降水量的差异与北太平洋西部异常气旋(WNPC)的变化相关,而WNPC的变化又可归因于热带太平洋海面温度异常(SSTA)的不同。赤道中部和东部太平洋的负 SSTA 远距离强迫和北太平洋西部的局地海气相互作用是 WNPC 形成和维持的通常原因。第一个春季的 SSTA 强于第二个春季。因此,第一年的 WNPC 强度更大,更有可能通过改变水汽输送来减少华南地区的水汽,导致华南地区降水长期不足。然而,第二年的热带 SSTA 信号太弱,不足以诱发 WNPC 的形成和维持以及华南地区降水量低于正常水平。因此,在多年拉尼娜事件中,热带 SSTA 信号在连续两个春季之间的变化导致 WNPC 反应的不同,从而导致华南地区降水异常空间模式的明显差异。
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Differences in spring precipitation over southern China associated with multiyear La Niña events

Composite analyses were performed in this study to reveal the difference in spring precipitation over southern China during multiyear La Niña events during 1901 to 2015. It was found that there is significantly below-normal precipitation during the first boreal spring, but above-normal precipitation during the second year. The difference in spring precipitation over southern China is correlative to the variation in western North Pacific anomalous cyclone (WNPC), which can in turn be attributed to the different sea surface temperature anomaly (SSTA) over the Tropical Pacific. The remote forcing of negative SSTA in the equatorial central and eastern Pacific and the local air-sea interaction in the western North Pacific are the usual causes of WNPC formation and maintenance. SSTA in the first spring is stronger than those in the second spring. As a result, the intensity of WNPC in the first year is stronger, which is more likely to reduce the moisture in southern China by changing the moisture transport, leading to prolonged precipitation deficits over southern China. However, the tropical SSTA signals in the second year are too weak to induce the formation and maintenance of WNPC and the below-normal precipitation over southern China. Thus, the variation in tropical SSTA signals between two consecutive springs during multiyear La Niña events leads to obvious differences in the spatial pattern of precipitation anomaly in southern China by causing the different WNPC response.

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来源期刊
Acta Oceanologica Sinica
Acta Oceanologica Sinica 地学-海洋学
CiteScore
2.50
自引率
7.10%
发文量
3884
审稿时长
9 months
期刊介绍: Founded in 1982, Acta Oceanologica Sinica is the official bi-monthly journal of the Chinese Society of Oceanography. It seeks to provide a forum for research papers in the field of oceanography from all over the world. In working to advance scholarly communication it has made the fast publication of high-quality research papers within this field its primary goal. The journal encourages submissions from all branches of oceanography, including marine physics, marine chemistry, marine geology, marine biology, marine hydrology, marine meteorology, ocean engineering, marine remote sensing and marine environment sciences. It publishes original research papers, review articles as well as research notes covering the whole spectrum of oceanography. Special issues emanating from related conferences and meetings are also considered. All papers are subject to peer review and are published online at SpringerLink.
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