4.7 Article

Multidecadal Variability of North China Aridity and Its Relationship to PDO during 1900-2010

期刊

JOURNAL OF CLIMATE
卷 27, 期 3, 页码 1210-1222

出版社

AMER METEOROLOGICAL SOC
DOI: 10.1175/JCLI-D-13-00235.1

关键词

Atmosphere-ocean interaction; Drought; Pacific decadal oscillation; Climate change; Multidecadal variability

资金

  1. Chinese Academy of Sciences [XDA05090103]
  2. R&D Special Fund for Public Welfare Industry (meteorology) [GYHY201006022]
  3. Arid Meteorology science research fund of Institute of Arid Meteorology, CMA, Lanzhou
  4. Key Open Laboratory of Arid Climate Change and Disaster Reduction of CMA [IAM201008]
  5. National Natural Science Foundation of China [41125017]

向作者/读者索取更多资源

North China has undergone a severe drying trend since the 1950s, but whether this trend is natural variability or anthropogenic change remains unknown due to the short data length. This study extends the analysis of dry-wet changes in north China to 1900-2010 on the basis of self-calibrated Palmer drought severity index (PDSI) data. The ensemble empirical mode decomposition method is used to detect multidecadal variability. A transition from significant wetting to significant drying is detected around 1959/60. Approximately 70% of the drying trend during 1960-90 originates from 50-70-yr multidecadal variability related to Pacific decadal oscillation (PDO) phase changes. The PDSI in north China is significantly negatively correlated with the PDO index, particularly at the 50-70-yr time scale, and is also stable during 1900-2010. Composite differences between two positive PDO phases (1922-45 and 1977-2002) and one negative PDO phase (1946-76) for summer exhibit an anomalous Pacific-Japan/East Asian-Pacific patternlike teleconnection, which may develop locally in response to the PDO-associated warm sea surface temperature anomalies in the tropical Indo-Pacific Ocean and meridionally extends from the tropical western Pacific to north China along the East Asian coast. North China is dominated by an anomalous high pressure system at mid-low levels and an anticyclone at 850 hPa, which are favorable for dry conditions. In addition, a weakened land-sea thermal contrast in East Asia from a negative to a positive PDO phase also plays a role in the dry conditions in north China by weakening the East Asian summer monsoon.

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