Relationships of Winter North Pacific Oscillation Anomalies with the East Asian Winter Monsoon and the Weather and Climate in China
Sun Zhao-bo
Abstract
Sun Zhao-bo
Abstract
By use of 1948—2000 monthly Northern Hemispheric sea level pressure data,the North Pacific oscillation index(I_(NPO)) and East Asian winter monsoon index(I_(EAWM)) are calculated.Results show that the winter I_(NPO) anomaly bears a close relation to the weather/climate of winter over the mainland of China.When a strong I_(NPO) occurs,the EAWM will become weaker,and China will experience an extensive high temperature,less rainfall in the middle-lower reach of the Yangtze River;and higher temperature and more rainfall in South China in winter.While a weak I_(NPO) occurs,EAWM will become stronger,and China will experience an extensive lower temperature and less rainfall in winter.It is also found that when the North Pacific oscillation is strong,the atmospheric circulation shows the weak WP pattern and strong EU teleconnection pattern,and vice versa.
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By use of 1948—2000 monthly Northern Hemispheric sea level pressure data,the North Pacific oscillation index(I_(NPO)) and East Asian winter monsoon index(I_(EAWM)) are calculated.Results show that the winter I_(NPO) anomaly bears a close relation to the weather/climate of winter over the mainland of China.When a strong I_(NPO) occurs,the EAWM will become weaker,and China will experience an extensive high temperature,less rainfall in the middle-lower reach of the Yangtze River;and higher temperature and more rainfall in South China in winter.While a weak I_(NPO) occurs,EAWM will become stronger,and China will experience an extensive lower temperature and less rainfall in winter.It is also found that when the North Pacific oscillation is strong,the atmospheric circulation shows the weak WP pattern and strong EU teleconnection pattern,and vice versa.
Key concepts: Teleconnection, Climatology, Anomaly (physics), Siberian High, China, Pacific decadal oscillation, East Asia, East Asian Monsoon