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Influence of South China Sea SST and the ENSO on Winter Rainfall over South China
by
周连童 Chi-Yung TAM 周文 Johnny C. L. CHAN
in
Atmospheric models
/ Atmospheric Sciences
/ Correlation analysis
/ Earth and Environmental Science
/ Earth Sciences
/ El Nino
/ ENSO事件
/ Geophysics/Geodesy
/ Marine
/ Meteorology
/ Rainfall
/ Rainfall measurement
/ Regression analysis
/ Sea
/ SST
/ 中国南部
/ 冬季降水
/ 冬小麦
/ 南中国海
/ 降雨影响
2010
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Influence of South China Sea SST and the ENSO on Winter Rainfall over South China
by
周连童 Chi-Yung TAM 周文 Johnny C. L. CHAN
in
Atmospheric models
/ Atmospheric Sciences
/ Correlation analysis
/ Earth and Environmental Science
/ Earth Sciences
/ El Nino
/ ENSO事件
/ Geophysics/Geodesy
/ Marine
/ Meteorology
/ Rainfall
/ Rainfall measurement
/ Regression analysis
/ Sea
/ SST
/ 中国南部
/ 冬季降水
/ 冬小麦
/ 南中国海
/ 降雨影响
2010
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Influence of South China Sea SST and the ENSO on Winter Rainfall over South China
by
周连童 Chi-Yung TAM 周文 Johnny C. L. CHAN
in
Atmospheric models
/ Atmospheric Sciences
/ Correlation analysis
/ Earth and Environmental Science
/ Earth Sciences
/ El Nino
/ ENSO事件
/ Geophysics/Geodesy
/ Marine
/ Meteorology
/ Rainfall
/ Rainfall measurement
/ Regression analysis
/ Sea
/ SST
/ 中国南部
/ 冬季降水
/ 冬小麦
/ 南中国海
/ 降雨影响
2010
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Influence of South China Sea SST and the ENSO on Winter Rainfall over South China
Journal Article
Influence of South China Sea SST and the ENSO on Winter Rainfall over South China
2010
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Overview
The present study investigates the influence of South China Sea (SCS) SST and ENSO on winter (January-February-March; JFM) rainfall over South China and its dynamic processes by using station observations for the period 1951-2003, Met Office Hadley Center SST data for the period 1900-2008, and ERA-40 reanalysis data for the period 1958-2002. It is found that JFM rainfall over South China has a sig- nificant correlation with Nio-3 and SCS SST. Analyses show that in El Nio or positive SCS SST anomaly years, southwesterly anomalies at 700 hPa dominate over the South China Sea, which in turn transports more moisture into South China and favors increased rainfall. A partial regression analysis indicates that the independent ENSO influence on winter rainfall occurs mainly over South China, whereas SCS SST has a larger independent influence on winter rainfall in northern part of South China. The temperature over South China shows an obvious decrease at 300 hPa and an increase near the surface, with the former induced by Nio-3 and the latter SCS SST anomalies. This enhances the convective instability and weakens the potential vorticity (PV), which explains the strengthening of ascending motion and the increase of JFM rainfall over South China.
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