Effect of spring soil moisture over the Indo-China Peninsula on the following summer extreme precipitation events over the Yangtze River basin

Author:

Gao Chujie,Li GenORCID,Xu Bei,Li Xinyu

Funder

Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Atmospheric Science

Reference68 articles.

1. Bellucci A, Haarsma R, Bellouin N, Booth B, Cagnazzo C, van den Hurk B, Keenlyside N, Koenigk T, Massonnet F, Materia S, Weiss M (2015) Advancements in decadal climate predictability: the role of nonoceanic drivers. Rev Geophys 53:165–202

2. Cen S, Gong Y, Lai X, Peng L (2015) The relationship between the atmospheric heating source/sink anomalies of Asian monsoon and flood/drought in the Yangtze River basin in the Meiyu period. J Trop Meteorol 21:352–360

3. Chen J, Chen L (1991) Influence of ocean–continent distribution in the south part of Asia on the formation of Asian summer monsoon. J Appl Meterol Sci 2:355–361 (in Chinese)

4. Chen Y, Zhai P (2013) Persistent extreme precipitation events in China during 1951–2010. Clim Res 57:143–155

5. Chen Y, Zhai P (2015) Synoptic-scale precursors of the East Asia/Pacific teleconnection pattern responsible for persistent extreme precipitation in the Yangtze River Valley. Q J R Meteorol Soc 141:1389–1403

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