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Limited-area ensemble predictions at the Norwegian Meteorological Institute

机译:挪威气象学院的有限区域总体预报

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This study aims at improving 0-3 day probabilistic forecasts of precipitation events in Norway. For this purpose a limited-area ensemble prediction system (LAMEPS) is tested. The horizontal resolution of LAMEPS is 28 km, and there are 31 levels in thevertical. The state variables provided as initial and lateral boundary conditions for the limited-area forecasts are perturbed using a dedicated version of the European Centre for Medium-Range Weather Forecasts (ECMWF) global ensemble prediction system,TEPS. These are constructed by combining initial and evolved singular vectors that at final time (48 h) are targeted to maximize the total energy in a domain containing northern Europe and adjacent sea areas. The resolution of TEPS is T255 with 40 levels. The test period includes 45 cases with 21 ensemble members in each case. We focus on 24 h accumulated precipitation rates with special emphasis on intense events. We also investigate a combination of TEPS and LAMEPS resulting in a system (NORLAMEPS) with 42 ensemble members. NORLAMEPS is compared with the 21-member LAMEPS and TEPS as well as the regular 51-member EPS run at ECMWF. The benefit of using targeted singular vectors is seen by comparing the 21-member TEPS with the 51-member operational EPS, as TEPS has considerably larger spread between ensemble members. For other measures, such as Brier Skill Score (BSS) and Relative Operating Characteristic (ROC) curves, the scores of the two systems are for most cases comparable, despite the differencein ensemble size. NORLAMEPS has the largest ensemble spread of all four ensemble systems studied in this paper, while EPS has the smallest spread. Nevertheless, EPS has higher BSS with NORLAMEPS approaching for the highest precipitation thresholds. Forthe area under the ROC curve, NORLAMEPS is comparable with or better than EPS for medium to large thresholds.
机译:这项研究旨在改善挪威降水事件的0-3天概率预报。为此,测试了有限区域集成预测系统(LAMEPS)。 LAMEPS的水平分辨率为28 km,垂直方向有31个级别。使用专用版本的欧洲中程天气预报中心(ECMWF)全球总体预报系统TEPS扰动了有限区域预报的初始和横向边界条件所提供的状态变量。这些是通过组合初始和演化的奇异矢量构建而成的,这些矢量在最终时间(48小时)的目标是最大化包含北欧和邻近海域的区域中的总能量。 TEPS的分辨率为40级的T255。测试期间包括45个案例,每个案例中有21个合奏成员。我们专注于24小时累积降水率,特别着重于强烈事件。我们还研究了TEPS和LAMEPS的组合,从而形成具有42个合奏成员的系统(NORLAMEPS)。将NORLAMEPS与21个成员的LAMEPS和TEPS以及在ECMWF运行的常规51个成员的EPS进行了比较。通过将21个成员的TEPS与51个成员的可操作EPS进行比较,可以看出使用目标奇异向量的好处,因为TEPS在集合成员之间的分布要大得多。对于其他指标,例如“普通技能得分”(BSS)和“相对操作特征”(ROC)曲线,尽管合奏大小有所不同,但在大多数情况下,两个系统的得分是可比较的。在本文研究的所有四个集成系统中,NORLAMEPS的集成扩散最大,而EPS的扩散最小。尽管如此,EPS的BSS较高,而NORLAMEPS接近最高降水阈值。对于ROC曲线下的区域,对于中到大阈值,NORLAMEPS与EPS相当或更好。

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