Climate-mode initialization for decadal climate predictions

被引:0
作者
Iuliia Polkova
Armin Köhl
Detlef Stammer
机构
[1] Universität Hamburg,Institut für Meereskunde
[2] CEN,undefined
来源
Climate Dynamics | 2019年 / 53卷
关键词
Decadal prediction; Initialization; Climate mode;
D O I
暂无
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学科分类号
摘要
In the context of decadal climate predictions, a climate-mode initialization method is being tested by which ocean ORAS4 reanalysis is projected onto dominant modes of variability of the Earth System Model from the Max Planck Institute for Meteorology (MPI-ESM). The method aims to improve the prediction skill of the model by filtering out dynamically unbalanced noise during the initialization step. Used climate modes are calculated as statistical 3-D modes based on the bivariate empirical orthogonal function (EOF) analysis applied to temperature and salinity anomalies from an ensemble of historical simulations from the MPI-ESM. The climate-mode initialization method shows improved surface temperature skill, particularly over the tropical Pacific Ocean at seasonal-to-interannual timescales associated with the improved zonal momentum balance. There, the new initialization somewhat outperforms the surface temperature skill of the anomaly initialization also for lead years 2–5. In other parts of the world ocean, both initialization methods currently are equivalent in skill. However, only 44% of variance in the original ORAS4 reconstruction remains after the projection on model modes, suggesting that the ORAS4 modes are not fully compatible with the model modes. Moreover, we cannot dismiss the possibility that model modes are not sufficiently sampled with the data set underlying the EOF analysis. The full potential of the climate-mode initialization method for future decadal prediction systems therefore still needs to be quantified based on improved modal representation.
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页码:7097 / 7111
页数:14
相关论文
共 58 条
  • [21] Hazeleger W(2018)Full-field initialized decadal predictions with the MPI Earth System Model: an initial shock in the North Atlantic Clim Dyn 51 2593-378
  • [22] Hurrell J(2017)Impact of in-consistency between the climate model and its initial conditions on climate prediction Clim Dyn 49 1061-2394
  • [23] Jungclaus J(2013)Evaluation of forecast strategies for seasonal and decadal forecasts in presence of systematic model errors Clim Dyn 41 2393-1485
  • [24] Kim WM(1989)Initialization and data assimilation experiments with a primitive equation model Dyn Atmos Oceans 13 349-267
  • [25] Kröger J(2016)MiKlip-a national research project on decadal climate prediction Bull Am Meteorol Soc 97 2379-972
  • [26] Liu X(2009)Decadal prediction: can it be skillful? Bull Am Meteorol Soc 90 1467-3910
  • [27] Magnusson L(2014)Decadal climate prediction: an update from the trenches Bull Am Meteorol Soc 95 243-4644
  • [28] Malanotte-Rizzoli P(2012)An assessment of two-dimensional past sea level reconstructions over 1950–2009 based on tide-gauge data and different input sea level grids Surv Geophys 33 945-1413
  • [29] Marotzke J(2016)Multiyear climate prediction with initialization based on 4d-var data assimilation Geophys Res Lett 43 3903-1781
  • [30] Meehl G(2015)Origin and impact of initialization shocks in coupled atmosphere-ocean forecasts Monthly Weather Rev 143 4631-ES172