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首页> 外文期刊>Annales Geophysicae >Winds and tides of the Extended Unified Model in the mesosphere and lower thermosphere validated with meteor radar observations
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Winds and tides of the Extended Unified Model in the mesosphere and lower thermosphere validated with meteor radar observations

机译:介于Mesehery和较低的热层中的扩展统一模型的风和潮汐与流星雷达观测

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摘要

The mesosphere and lower thermosphere (MLT) is a critical region that must be accurately reproduced in general circulation models (GCMs) that aim to include the coupling between the lower and middle atmosphere and the thermosphere. An accurate representation of the MLT is thus important for improved climate modelling and the development of a whole atmosphere model. This is because the atmospheric waves at these heights are particularly large, and so the energy and momentum they carry is an important driver of climatological phenomena through the whole atmosphere, affecting terrestrial and space weather. The Extended Unified Model (ExUM) is the recently developed version of the Met Office’s Unified Model which has been extended to model the MLT. The capability of the ExUM to model atmospheric winds and tides in the MLT is currently unknown. Here, we present the first study of winds and tides from the ExUM. We make a comparison against meteor radar observations of winds and tides from 2006 between 80 and 100 km over two radar stations – Rothera (68? S, 68? W) and Ascension Island (8? S, 14? W). These locations are chosen to study tides in two very different tidal regimes – the equatorial regime, where the diurnal (24 h) tide dominates, and the polar regime, where the semi-diurnal (12 h) tide dominates. The results of this study illustrate that the ExUM is capable of reproducing atmospheric winds and tides that capture many of the key characteristics seen in meteor radar observations, such as zonal and meridional wind maxima and minima, the increase in tidal amplitude with increasing height, and the decrease in tidal phase with increasing height. In particular, in the equatorial regime some essential characteristics of the background winds, tidal amplitudes and tidal phases are well captured but with significant differences in detail. In the polar regime, the difference is more pronounced. The ExUM zonal background winds in austral winter are primarily westward rather than eastward, and in austral summer they are larger than observed above 90 km. The ExUM tidal amplitudes here are in general consistent with observed values, but they are also larger than observed values above 90 km in austral summer. The tidal phases are generally well replicated in this regime. We propose that the bias in background winds in the polar regime is a consequence of the lack of in situ gravity wave generation to generate eastward fluxes in the MLT. The results of this study indicate that the ExUM has a good natural capability for modelling atmospheric winds and tides in the MLT but that there is room for improvement in the model physics in this region. This highlights the need for modifications to the physical parameterization schemes used in the model in this region – such as the non-orographic spectral gravity wave scheme – to improve aspects such as polar circulation. To this end, we make specific recommendations of changes that can be implemented to improve the accuracy of the ExUM in the MLT.
机译:介质圈和下热层(MLT)是必须在一般循环模型(GCMS)中必须准确地再现的关键区域,该模型旨在包括下层和中大气和热层之间的耦合。因此,MLT的精确表示对于改善气候建模和整个大气模型的发展是重要的。这是因为这些高度的大气波是特别大的,因此它们携带的能量和动量是通过整个大气层,影响陆地和空间天气的重要驾驶员。扩展统一模型(EXUM)是最近开发的MET Office统一模型的版本,该模型已经扩展到模拟MLT。目前未知,卓越模型模型大气风和潮汐的潮汐。在这里,我们展示了对卓越的浪潮和潮汐研究。我们对2006年的风速和潮汐的流星雷达观测比较,在两个雷达站的80到100公里之间 - Rothera(68?S,68?W)和升降岛(8?S,14次)。选择这些地点以研究两个非常不同的潮汐制度 - 赤道政权,昼夜(24小时)潮汐占主导地位的赤道制度,以及半岛(12小时)潮汐占主导地位的极地制度。本研究的结果说明了卓越能够再现大气风和潮汐,以捕获流星雷达观测中所看到的许多关键特征,例如地形和子午线和子午线和最小值,高度增加的潮汐幅度的增加潮汐相下降,高度增加。特别地,在赤道政权中,背景风的一些基本特征,潮汐幅度和潮汐相是很好的捕获,但细节有显着差异。在极地政权中,差异更加明显。澳大利亚冬季的埃姆居民背景风主要是向西而不是东方,在南夏天,它们比在90公里以上观察到。这里的辉煌潮汐幅度一般与观察到的值一致,但它们也比观察到的值大于澳大利亚夏季90公里的值。潮汐阶段通常在这方面复制很好。我们建议极地制度中的背景风中的偏差是缺乏原位重力波浪产生以产生MLT中的向东通量的结果。该研究的结果表明,卓越具有良好的自然能力,可以在MLT中建模大气风和潮汐,但是该地区的模型物理学有所改善。这突出了对该区域中模型中使用的物理参数化方案的需要修改 - 例如非面貌光谱重力波方案 - 改善诸如极性循环的方面。为此,我们提出了可以实施的更改建议,以提高MLT中卓越的准确性。

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