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Technical note: First comparison of wind observations from ESA's satellite mission Aeolus and ground-based radar wind profiler network of China

机译:技术说明:欧安省卫星卫星景观和地面雷达风廓线器网络的风视比较

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Aeolus is the first satellite mission to directly observe wind profile information on a global scale. After implementing a set of bias corrections, the Aeolus data products went public on 12?May?2020. However, Aeolus wind products over China have thus far not been evaluated extensively by ground-based remote sensing measurements. In this study, the Mie-cloudy and Rayleigh-clear wind products from Aeolus measurements are validated against wind observations from the radar wind profiler (RWP) network in China. Based on the position of each RWP site relative to the closest Aeolus ground tracks, three matchup categories are proposed, and comparisons between Aeolus wind products and RWP wind observations are performed for each category separately. The performance of Mie-cloudy wind products does not change much between the three matchup categories. On the other hand, for Rayleigh-clear and RWP wind products, categories?1 and 2 are found to have much smaller differences compared with category?3. This could be due to the RWP site being sufficiently approximate to the Aeolus ground track for categories?1 and 2. In the vertical, the Aeolus wind products are similar to the RWP wind observations, except for the Rayleigh-clear winds in the height range of 0–1?km. The mean absolute normalized differences between the Mie-cloudy (Rayleigh-clear) and the RWP wind components are 3.06 (5.45), 2.79 (4.81), and 3.32 (5.72)?m/s at all orbit times and ascending and descending Aeolus orbit times, respectively. This indicates that the wind products for ascending orbits are slightly superior to those for descending orbits, and the observation time has a minor effect on the comparison. From the perspective of spatial differences, the Aeolus Mie-cloudy winds are consistent with RWP winds in most of east China, except in coastal areas where the Aeolus Rayleigh-clear winds are more reliable. Overall, the correlation coefficient R between the Mie-cloudy (Rayleigh-clear) wind and RWP wind component observation is 0.94 (0.81), suggesting that Aeolus wind products are in good agreement with wind observations from the RWP network in China. The findings give us sufficient confidence in assimilating the newly released Aeolus wind products in operational weather forecasting in China.
机译:Aeolus是第一个直接遵守全球规模风格信息的卫星任务。在实施一组偏置校正之后,Aeolus数据产品在12岁上市?5月2020年。然而,迄今为止,中国的Aeolus风产品未被基于地面的遥感测量进行广泛评估。在这项研究中,来自Ieolus测量的Mie-Cloudy和Rayleigh-Clear产品被验证了来自中国雷达风分析器(RWP)网络的风观察。基于每个RWP位点相对于最近的Aeolus地面轨道的位置,提出了三种比赛类别,并且分别为每个类别进行Aeolus风产品和RWP风观察的比较。 Mie-Cloudy Wind产品的性能在三个匹配类别之间不会发生多大。另一方面,对于Rayleigh-Clear和RWP风产品,与类别相比,发现类别?1和2具有更小的差异?3。这可能是由于RWP网站足够近似于类别的Aeolus地面轨道?1和2.在垂直方面,Aeolus风产品类似于RWP风观察,除了高度范围内的瑞利透明风0-1 km。 Mie-Cloudy(Rayleigh-Clear)和RWP风能组分之间的平均绝对归一化差异为3.06(5.45),2.79(4.81)和3.32(5.72)在所有轨道时段和升序和下降鸟类轨道上的3.32(5.72)?M / s分别。这表明用于上升轨道的风产品略微优于下降轨道,并且观察时间对比较有微小的影响。从空间差异的角度来看,Aeolus Mie-Cloudy Winds在华东大部分地区的RWP风中符合,除了沿海地区,沿海地区山脉瑞利风更可靠。总的来说,MIE-阴天(瑞利 - 透明)风和RWP风分量观察之间的相关系数r为0.94(0.81),表明Aeolus风产品与来自中国的RWP网络的风观察一致。调查结果让我们充分信心吸收新释放的山脉风产品在中国的运营天气预报中。

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