Comparison of COSMO and ICON-LAM high-resolution numerical forecast for Romanian territory: Case studies and evaluation

Atmósfera Pub Date : 2024-03-11 DOI:10.20937/atm.53305
Amalia Iriza-Burca, R. Dumitrache, B. Maco, Mihăiţă-Cristinel Hustiu, Felix Fundel, Daniel Rieger, Roland Potthast
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Abstract

This paper aims to offer the first detailed inter-comparison of the performance from the numerical weather prediction models Consortium for Small-scale Modeling (COSMO) and Icosahedral Nonhydrostatic General Circulation Model, Limited Area Mode (ICON-LAM), integrated for the Romanian territory at the horizontal resolution of 2.8 km. As the ICON numerical model is set to replace COSMO, a comparison is carried out between the operational configurations of the two models. First, two cases with severe weather (strong atmospheric instability, observed heavy precipitation, and strong wind) are analyzed: February 3-6, 2020 (heavy precipitation [snow] and very strong wind) and May 3-5, 2020 (heavy precipitation). This is followed by a statistical inter-comparison between the two models for the summer of 2020 (June, July, August). A statistical evaluation of the forecast quality from the two models is performed objectively, through statistical scores computed using surface observations from all available meteorological stations on the Romanian territory. Stratifications depending on station altitude and location are carried out, with emphasis on stations of particular interest, depending on the evolution of the synoptic situation. Following the statistical evaluation, results for the precipitation forecast do not show significant improvement in favor of either model. However, ICON-2.8 km mostly outperforms COSMO-2.8 km for surface parameters.
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罗马尼亚境内 COSMO 和 ICON-LAM 高分辨率数值预报的比较:案例研究与评估
本文旨在首次详细比较罗马尼亚境内的小尺度建模联合会(COSMO)和二十面体非静水压大气环流有限区域模式(ICON-LAM)数值天气预报模式在 2.8 千米水平分辨率下的性能。由于 ICON 数值模式将取代 COSMO,因此对两种模式的运行配置进行了比较。首先,分析了两种恶劣天气(强大气不稳定性、观测到的强降水和强风)的情况:2020 年 2 月 3-6 日(强降水[雪]和大风)和 2020 年 5 月 3-5 日(强降水)。随后,对 2020 年夏季(6 月、7 月和 8 月)的两个模式进行了统计相互比较。通过使用罗马尼亚境内所有气象站的地面观测数据计算出的统计分数,对两个模式的预报质量进行了客观的统计评估。根据气象站的高度和位置进行了分层,重点放在特别重要的气象站上,这取决于天气形势的演变。经过统计评估,降水预报结果显示,两种模式都没有明显改善。不过,在地表参数方面,ICON-2.8 km 大多优于 COSMO-2.8 km。
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