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ENSEMBLES: a new multi-model ensemble for seasonal-to-annual predictions: Skill and progress beyond DEMETER in forecasting tropical Pacific SSTs

机译:ENSEMBLES:用于季节至年度预报的新的多模型合奏:在DEMETER预报热带太平洋海表温度方面的技巧和进步

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摘要

A new 46-year hindcast dataset for seasonal-to-annual ensemble predictions has been created using a multi-model ensemble of 5 state-of-the-art coupled atmosphere-ocean circulation models. The multi-model outperforms any of the single-models in forecasting tropical Pacific SSTs because of reduced RMS errors and enhanced ensemble dispersion at all lead-times. Systematic errors are considerably reduced over the previous generation (DEMETER). Probabilistic skill scores show higher skill for the new multi-model ensemble than for DEMETER in the 4–6 month forecast range. However, substantially improved models would be required to achieve strongly statistical significant skill increases. The combination of ENSEMBLES and DEMETER into a grand multi-model ensemble does not improve the forecast skill further. Annual-range hindcasts show anomaly correlation skill of ∼0.5 up to 14 months ahead. A wide range of output from the multi-model simulations is becoming publicly available and the international community is invited to explore the full scientific potential of these data.
机译:使用5个最先进的大气-海洋环流模型的多模型合奏,已经创建了一个新的46年后预报数据集,用于季节至年度的合奏预测。由于在所有交货时间均减小了RMS误差并增强了整体分散性,因此在预测热带太平洋海表温度时,多模型优于任何单模型。与上一代产品(DEMETER)相比,系统性错误已大大减少。在4-6个月的预测范围内,概率技能得分显示出与DEMETER相比,新的多模型总体技能更高。但是,将需要大量改进的模型来实现强大的统计显着技能提升。将ENSEMBLES和DEMETER组合成一个大型的多模型合奏并不能进一步提高预测技能。年距后预报显示在未来14个月之前,异常相关技能约为0.5。多模型仿真的广泛输出结果已公开提供,并邀请国际社会探索这些数据的全部科学潜力。

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