Earth system model results by the MPI-ESM-LR of the MiKlip Decadal climate prediction experiment improved by ocean ensemble dispersion filtering, links to NetCDF files

Decadal predictions by Earth system models aim to capture the state and phase of the climate several years in advance. Atmosphere-ocean interaction plays an important role for such climate forecasts. While short-term weather forecasts represent an initial value problem and long-term climate projections represent a boundary condition problem, the decadal climate prediction falls in-between these two timescales. In recent years, more precise initialization techniques of coupled Earth system models and increased ensemble sizes have improved decadal predictions. However, climate models in general start losing the initialized signal and its predictive skill from one forecast year to the next. Here we show that the climate prediction skill of an Earth system model can be improved by a shift of the ocean state towards the ensemble mean of its individual members at seasonal intervals. We found that this procedure, called ensemble dispersion filter, results in more accurate results than the standard decadal prediction. Global mean and regional temperature, precipitation, and winter cyclone predictions show an increased skill up to 5 years ahead. Furthermore, the novel technique outperforms predictions with larger ensembles and higher resolution. Our results demonstrate how decadal climate predictions benefit from ocean ensemble dispersion filtering towards the ensemble mean.

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Cite this as

Kadow, Christopher, Illing, Sebastian, Kröner, Igor, Ulbrich, Uwe, Cubasch, Ulrich (2017). Dataset: Earth system model results by the MPI-ESM-LR of the MiKlip Decadal climate prediction experiment improved by ocean ensemble dispersion filtering, links to NetCDF files. https://doi.org/10.1594/PANGAEA.874231

DOI retrieved: 2017

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-SA-3.0
Source https://doi.org/10.1594/PANGAEA.874231
Author Kadow, Christopher
Given Name Christopher
Family Name Kadow
More Authors
Illing, Sebastian
Kröner, Igor
Ulbrich, Uwe
Cubasch, Ulrich
Source Creation 2017
Publication Year 2017
Resource Type text/tab-separated-values - filename: Kadow-etal_2017
Subject Areas
Name: Atmosphere

Related Identifiers
Title: Decadal climate predictions improved by ocean ensemble dispersion filtering
Identifier: https://doi.org/10.1002/2016MS000787
Type: DOI
Relation: IsSupplementTo
Year: 2017
Source: Journal of Advances in Modeling Earth Systems
Authors: Kadow Christopher , Illing Sebastian , Kröner Igor , Ulbrich Uwe , Cubasch Ulrich .