Toward predicting changes in the land monsoon rainfall a decade in advance

Predictions of changes of the land monsoon rainfall (LMR) in the coming decades are of vital importance for successful sustainable economic development. Current dynamic models, though, have shown little skill in the decadal prediction of the Northern Hemisphere (NH) LMR(NHLMR). The physical basis and predictability for such predictions remain largely unexplored. Decadal change of the NHLMR reflects changes in the total NH continental precipitation, tropical general circulation, and regional land monsoon rainfall over northern Africa, India, East Asia, and North America. Using observations from 1901 to 2014 and numerical experiments, it is shown that the decadal variability of the NHLMR is rooted primarily in (i) the north-south hemispheric thermal contrast in the Atlantic-Indian Ocean sector measured by the North Atlantic-south Indian Ocean dipole (NAID) sea surface temperature (SST) index and (ii) an east-west thermal contrast in the Pacific measured by an extended El Nino-Southern Oscillation (XEN) index. Results from a 500-yr preindustrial control experiment demonstrate that the leading mode of decadal NHLMR and the associated NAID and XEN SST anomalies may be largely an internal mode of Earth's climate system, although possibly modified by natural and anthropogenic external forcing. A 51-yr, independent forward-rolling decadal hindcast was made with a hybrid dynamic conceptual model and using the NAID index predicted by a multiclimate model ensemble. The results demonstrate that the decadal changes in the NHLMR can be predicted approximately a decade in advance with significant skills, opening a promising way forward for decadal predictions of regional land monsoon rainfall worldwide.

To Access Resource:

Questions? Email Resource Support Contact:

  • opensky@ucar.edu
    UCAR/NCAR - Library

Resource Type publication
Temporal Range Begin N/A
Temporal Range End N/A
Temporal Resolution N/A
Bounding Box North Lat N/A
Bounding Box South Lat N/A
Bounding Box West Long N/A
Bounding Box East Long N/A
Spatial Representation N/A
Spatial Resolution N/A
Related Links N/A
Additional Information N/A
Resource Format PDF
Standardized Resource Format PDF
Asset Size N/A
Legal Constraints

Copyright 2018 American Meteorological Society (AMS).


Access Constraints None
Software Implementation Language N/A

Resource Support Name N/A
Resource Support Email opensky@ucar.edu
Resource Support Organization UCAR/NCAR - Library
Distributor N/A
Metadata Contact Name N/A
Metadata Contact Email opensky@ucar.edu
Metadata Contact Organization UCAR/NCAR - Library

Author Wang, B.
Li, J.
Cane, M. A.
Liu, J.
Webster, P. J.
Xiang, Baoqiang
Kim, H.
Cao, J.
Ha, K.
Publisher UCAR/NCAR - Library
Publication Date 2018-04-01T00:00:00
Digital Object Identifier (DOI) Not Assigned
Alternate Identifier N/A
Resource Version N/A
Topic Category geoscientificInformation
Progress N/A
Metadata Date 2025-07-11T19:40:12.068945
Metadata Record Identifier edu.ucar.opensky::articles:21572
Metadata Language eng; USA
Suggested Citation Wang, B., Li, J., Cane, M. A., Liu, J., Webster, P. J., Xiang, Baoqiang, Kim, H., Cao, J., Ha, K.. (2018). Toward predicting changes in the land monsoon rainfall a decade in advance. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7zs3071. Accessed 02 August 2025.

Harvest Source