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首页> 外文期刊>Atmospheric chemistry and physics >Observations of OH airglow from ground, aircraft, and satellite: investigation of wave-like structures before a minor stratospheric warming
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Observations of OH airglow from ground, aircraft, and satellite: investigation of wave-like structures before a minor stratospheric warming

机译:从地面,飞机和卫星的OH防空的观察:在轻微的平坦气压前对波样结构进行调查

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摘要

In January and February 2016, the OH airglow camera system FAIM (Fast Airglow Imager) measured during six flights on board the research aircraft FALCON in northern Scandinavia. Flight 1 (14 January 2016) covering the same ground track in several flight legs and flight 5 (28 January 2016) along the shoreline of Norway are discussed in detail in this study. The images of the OH airglow intensity are analysed with a two-dimensional FFT regarding horizontal periodic structures between 3 and 26 km horizontal wavelength and their direction of propagation. Two ground-based spectrometers (GRIPS, Ground-based Infrared P-branch Spectrometer) provided OH airglow temperatures. One was placed at ALOMAR, Northern Norway (Arctic Lidar Observatory for Middle Atmosphere Research; 69.28° N, 16.01° E) and the other one at Kiruna, northern Sweden (67.86° N, 20.24° E). Especially during the last third of January 2016, the weather conditions at Kiruna were good enough for the computation of nightly means of gravity wave potential energy density. Coincident TIMEDSABER (Thermosphere Ionosphere Mesosphere Energetics Dynamics–Sounding of the Atmosphere using Broadband Emission Radiometry) measurements complete the data set. They allow for the derivation of information about the Brunt– V?is?l? frequency and about the height of the OH airglow layer as well as its thickness. The data are analysed with respect to the temporal and spatial evolution of mesopause gravity wave activity just before a minor stratospheric warming at the end of January 2016. Wave events with periods longer (shorter) than 60 min might mainly be generated in the troposphere (at or above the height of the stratospheric jet). Special emphasis is placed on small-scale signatures, i.e. on ripples, which may be signatures of local instability and which may be related to a step in a wave-breaking process. The most mountainous regions are characterized by the highest occurrence rate of wave-like structures in both flights.
机译:2016年1月和2月,OH Airglow相机系统Faim(快速防空成像仪)在斯堪的纳维亚州北部的研究飞机猎鹰队的六个航班中测量。在这项研究中,在几个飞行腿和5月5日(2016年1月28日)沿着挪威海岸线(2016年1月28日)的航班,在这项研究中讨论了挪威海岸线。用关于3至26km水平波长的水平周期结构的二维FFT分析OH释放强度的图像,以及它们的传播方向。两个地基光谱仪(夹具,基于地基红外P谱光谱仪)提供了OH FIRGLOW温度。一个被置于挪威北部的Alomar(北极LIDAR Mediofal Vealthatoring; 69.28°N,16.01°E)和瑞典北部Kiruna(67.86°N,20.24°E)的另一个。特别是在2016年1月的最后三分之一,Kiruna的天气状况足以计算夜间重力波势能密度的夜间手段。重合的分段器(热圈电离层Messephyshey能量学动力学 - 使用宽带发射辐射测量的大气探测)测量完成数据集。他们允许衍生关于Brunt-V的信息?是吗?l?频率和大约OH气泡层的高度以及其厚度。关于在2016年1月底的轻微地流层升温之前,在微不足道的重力波活动的时间和空间演变方面分析了数据。在对流层中可能主要产生具有时间越长(短)的波浪事件(较短)或高于平流层喷射的高度)。特别强调放置在小规模签名上,即在涟漪上,这可能是局部不稳定性的签名,并且可能与波浪过程中的步骤有关。最山区地区的特点是两次飞行中波状结构的最高速度。

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