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Local decadal prediction according to statistical/dynamical approaches
Dario Redolat1,2, Robert Monjo1,3, Cesar Paradinas1
1Climate Research Foundation (FIC) Madrid Spain.
Teleconnection indices improve near-term climate prediction for temperature and precipitation up to 30 years. This statistical-dynamical approach offers better decadal climate predictability than dynamical models alone.
Area of Science:
- Climate Science
- Meteorology
- Oceanography
Background:
- Dynamical climate models struggle with initialization due to limited deep ocean data.
- Teleconnection indices, derived from climate variable patterns, can enhance model assimilation.
- Near-term climate predictability is crucial for effective adaptation strategies.
Purpose of the Study:
- To analyze the near-term climate predictability of temperature and precipitation for Barcelona, Bristol, and Lisbon.
- To compare a statistical-dynamical approach using teleconnection indices with drift-corrected dynamical model outputs.
- To assess the effectiveness of teleconnection indices in improving decadal climate projections.
Main Methods:
- Utilized Fourier and wavelet analyses to evaluate the predictability of seven teleconnection indices.
- Employed a cross-validation process with distinct training and validation periods.
- Compared teleconnection-based predictions against a multi-model ensemble from the Coupled Model Intercomparison Project Phase 5.
Main Results:
- Teleconnection-based approaches provide adequate decadal predictions (20-30 years) for both temperature and precipitation.
- Temperature is better predicted within a 5-year horizon using drift-corrected dynamical model outputs.
- The statistical-dynamical method demonstrated superior performance for longer-term predictions.
Conclusions:
- Teleconnection indices are valuable tools for improving the initialization and accuracy of climate models.
- A combination of teleconnection indices and long-term projections enhances local-scale climate predictability.
- The study highlights the potential of teleconnection-based methods for reliable decadal climate forecasting.
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