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Enhanced thermodynamic drivers of recent ENSO teleconnections

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DataONE2025-02-27 更新2025-04-26 收录
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The magnitude of western and central Pacific atmospheric heating, precipitation and total precipitable water extremes provide a valuable means of measuring the strength of El Nino and La Nina events in a warming world. This data set brings together information from eight different sources: This data set draws from eight widely used sources:1. The NOAA Extended Reconstruction sea surface temperature data set (version 5), 2. ERA5 Reanalysis atmospheric heating, precipitation and total precipitable water,3. MERRA2 Reanalysis atmospheric heating, precipitation and total precipitable water, 4. JRA55 Reanalysis precipitation and total precipitable water,5. NCEP2 Reanalysis precipitation and total precipitable water, 6. NOAA Physical Sciences Division CAM5.1 precipitation, 7. Global Precipitation Climatology Project version 3.2 precipitation, and 8. Remote Sensing Systems total precipitable water. These seasonal time series can be used to confirm that the atmospheric forcing associated with El..., , , # Enhanced thermodynamic drivers of recent ENSO teleconnections --- This data set contains the time series supporting the major results presented in 'Enhanced Thermodynamic Drivers Of Recent ENSO Teleconnections'. The bulk of the major findings are based on time-series, and hence easily verified by readers and reviewers. This data set draws from five widely used sources: * The NOAA Extended Reconstruction sea surface temperature data set (version 5): Boyin Huang, Peter W. Thorne, Viva F. Banzon, Tim Boyer, Gennady Chepurin, Jay H. Lawrimore, Matthew J. Menne, Thomas M. Smith, Russell S. Vose, and Huai-Min Zhang (2017): NOAA Extended Reconstructed Sea Surface Temperature (ERSST), Version 5. NOAA National Centers for Environmental Information. DOI:[10.7289/V5T72FNM](10.7289/V5T72FNM). * ERA5 Reanalysis atmospheric heating, precipitation and total precipitable water: Hersbach, H., et al. (2017): Complete ERA5 from 1940: Fifth generation of ECMWF atmospheric reanalyses of the glob...

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2025-02-28
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