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Seasonal Forecasts of Tropical Cyclone Activity in a High-Atmospheric-Resolution Coupled Prediction System

机译:高大气分辨率耦合预报系统中热带气旋活动的季节性预报

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Seasonal forecast skill of the basinwide and regional tropical cyclone (TC) activity in an experimental coupled prediction system based on the ECMWF System 4 is assessed. As part of a collaboration between the Center for Ocean-Land-Atmosphere Studies (COLA) and the ECMWF called Project Minerva, the system is integrated at the atmospheric horizontal spectral resolutions of T319, T639, and T1279. Seven-month hindcasts starting from 1 May for the years 1980-2011 are produced at all three resolutions with at least 15 ensemble members. The Minerva system demonstrates statistically significant skill for retrospective forecasts of TC frequency and accumulated cyclone energy (ACE) in the North Atlantic (NA), eastern North Pacific (EP), and western North Pacific. While the highest scores overall are achieved in the North Pacific, the skill in the NA appears to be limited by an overly strong influence of the tropical Pacific variability. Higher model resolution improves skill scores for the ACE and, to a lesser extent, the TC frequency, even though the influence of large-scale climate variations on these TC activity measures is largely independent of resolution changes. The biggest gain occurs in transition from T319 to T639. Significant skill in regional TC forecasts is achieved over broad areas of the Northern Hemisphere. The highest-resolution hindcasts exhibit additional locations with skill in the NA and EP, including land-adjacent areas. The feasibility of regional intensity forecasts is assessed. In the presence of the coupled model biases, the benefits of high resolution for seasonal TC forecasting may be underestimated.
机译:在基于ECMWF系统4的实验性耦合预测系统中,评估了整个盆地和区域热带气旋(TC)活动的季节性预测技能。作为海洋-陆地-大气研究中心(COLA)与ECMWF之间的合作的一部分,该计划被称为密涅瓦计划(Project Minerva),该系统以T319,T639和T1279的大气水平光谱分辨率进行了集成。在所有三项决议中,从5月1日开始,从至少5个合奏成员中产生了七个月的后遗症。 Minerva系统证明了对北大西洋(NA),北太平洋东部(EP)和北太平洋西部的TC频率和累积气旋能量(ACE)进行回顾性预测的统计学上的重要技巧。虽然总体得分最高的是北太平洋,但北美地区的技能似乎受到热带太平洋多变性过强影响的限制。较高的模型分辨率可提高ACE的技能得分,并在较小程度上提高TC频率,即使大规模气候变化对这些TC活动指标的影响在很大程度上与分辨率变化无关。最大的增益发生在从T319到T639的过渡中。在北半球的广大地区都取得了区域TC预报的重要技能。分辨率最高的后铸物在北美地区和欧洲大陆地区展示了其他具有技能的位置,包括邻近的土地。评估了区域强度预报的可行性。在存在耦合模型偏差的情况下,可能会低估高分辨率对季节性TC预报的好处。

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