Does statistical model perform at par with computationally expensive general circulation model for decadal prediction
Dados Bibliográficos
| ID | 15549839 |
|---|---|
| Autores | Rishi Sahastrabuddhe (0000-0002-9583-490X, Indian Institute of Technology Bombay), Subimal Ghosh (0000-0002-5722-1440, Indian Institute of Technology Bombay, autor correspondente) |
| Ano | 2021 |
| Volume | 16 |
| Fascículo | 6 |
| Páginas | 064028-064028 |
| Data de publicação | 2021-05-08 |
| Peer Reviewed | Sim |
| Open Access | Sim |
| Tipo | ARTICLE |
| Periódico | Environmental Research Letters (JOURNAL) |
| Identificadores do periódico | ISSN: 1748-9326 • E-ISSN: 1748-9326 |
| Editora | IOP Publishing (PUBLISHER • GB) |
| DOI | 10.1088/1748-9326/abfeed |
| OpenAlex | W3162606147 |
| Idioma | EN |
| Citações recebidas | 1 |
| Referências citadas | 88 |
Decadal predictions have gained immense importance over the last decade because of their use in near-term adaption planning. Computationally expensive coupled model intercomparison project phase 5 general circulation models (GCMs) are initialized every 5 years and they generate the decadal hindcasts with moderate skill. Here we test the hypothesis that computationally inexpensive data-driven models, such as multi-variate singular spectrum analysis (MSSA), which takes care of trends and oscillations, performs similar to GCMs. We pick up one of the most complex variables having low predictability, Indian summer monsoon rainfall (ISMR) and its possible causal sea surface temperatures (SST). We find that the MSSA approach performs similar to the GCMs in simulating SSTs beyond their nonlinear limits of predictability, which is ∼12 months. These SSTs are used for decadal predictions of ISMR and show improved skills compared to the GCMs. We conclude that data-driven models are possible alternatives to computationally expensive GCMs for decadal predictions
Climate change · Climatology · Econometrics · General Circulation Model · Geography · Meteorology · Predictability · Sea surface temperature · Statistics · Climate variability and models · Computer Science · Environmental Science · Mathematics · Meteorological Phenomena and Simulations · Oceanographic and Atmospheric Processes · Geology · Oceanography
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| Obras citantes distintas | 1 |
|---|---|
| Citações por ano | 0,2 |
| Intervalo de citações | 2021 - 2021 (1) |
| Velocidade de citação | historical |
| Altamente citado | Não |
| Tipos de citação | Neutras: 1 |