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Low-level jets over the North Sea based on ERA5 and observations: together they do better

机译:基于ERA5和观察的北海射门射频:在一起,他们一起做得更好

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Ten years of ERA5 reanalysis data are combined with met-mast and lidar observations from 10 offshore platforms to investigate low-level jet characteristics over the Dutch North Sea. The objective of this study is to combine the best of two worlds: (1)?ERA5 data with a large spatiotemporal extent but inherent accuracy limitations due to a relatively coarse grid and an incomplete representation of physical processes and (2)?observations that provide more reliable estimates of the measured quantity but are limited in both space and time. We demonstrate the effect of time and range limitations on the reconstructed wind climate, with special attention paid to the impact on low-level jets. For both measurement and model data, the representation of wind speed is biased. The limited temporal extent of observations leads to a wind speed bias on the order of ±1 m s?1 as compared to the long-term mean. In part due to data-assimilation strategies that cause abrupt discontinuities in the diurnal cycle, ERA5 also exhibits a wind speed bias of approximately 0.5 m s?1. The representation of low-level jets in ERA5 is poor in terms of a one-to-one correspondence, and the jets appear vertically displaced (“smeared out”). However, climatological characteristics such as the shape of the seasonal cycle and the affinity with certain circulation patterns are represented quite well, albeit with different magnitudes. We therefore experiment with various methods to adjust the modelled low-level jet rate to the observations or, vice versa, to correct for the erratic nature of the short observation periods using long-term ERA5 information. While quantitative uncertainty is still quite large, the presented results provide valuable insight into North Sea low-level jet characteristics. These jets occur predominantly for circulation types with an easterly component, with a clear peak in spring, and are concentrated along the coasts at heights between 50 and 200 m. Further, it is demonstrated that these characteristics can be used as predictors to infer the observed low-level jet rate from ERA5 data with reasonable accuracy.
机译:10年的ERA5再分析数据与来自10个海上平台的Met-Mast和Lidar观测相结合,以调查荷兰北海的低级别喷射特性。本研究的目的是将最好的两个世界中最好的:(1)?ERA5数据具有大的时空范围,但由于相对粗略的网格和物理过程的不完全表示和(2)的不完全表示,具有固有的精度限制更可靠的测量量估计,但在空间和时间内都有限。我们展示了时间和范围限制对重建风气氛的影响,特别注意对低级喷射的影响。对于测量和模型数据,风速的表示偏置。与长期平均值相比,观察的有限时间范围导致风速偏置为±1 ms≤1。部分原因是由于在昼夜循环中导致突然不连续的数据同化策略,ERA5也表现出大约0.5 m S?1的风速偏差。在ERA5中的低级喷射器的表示在一对一的对应关系方面差,喷射器出现垂直移位(“涂抹”)。然而,诸如季节性循环的形状和与某些循环模式的亲和性的气候特征相当好,尽管具有不同的大小。因此,我们试验各种方法来调整模型的低级喷射率,或者反之亦然,以使用长期ERA5信息来校正短观察期的不稳定性质。虽然定量不确定性仍然相当大,但所展示的结果提供了对北海低级喷射特性的宝贵洞察力。这些喷气机主要出现,主要用于循环类型,并在春天具有透明峰,并在50到200米之间的高度沿海岸浓缩。此外,证明这些特性可以用作预测因子,以通过合理的精度从ERA5数据推断观察到的低级喷射率。

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