首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >A search for mountain waves in MLS stratospheric limb radiances from the winter Northern Hemisphere: Data analysis and global mountain wave modeling - art. no. D03107
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A search for mountain waves in MLS stratospheric limb radiances from the winter Northern Hemisphere: Data analysis and global mountain wave modeling - art. no. D03107

机译:从北半球冬季搜寻MLS平流层肢体辐射中的山波:数据分析和全球山波建模-艺术。没有。 D03107

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摘要

Despite evidence from ground-based data that flow over mountains is a dominant source of gravity waves (GWs) for the Northern Hemisphere winter middle atmosphere, GW-related signals in global limb radiances from the Microwave Limb Sounder (MLS) on the Upper Atmosphere Research Satellite (UARS) have shown little direct evidence of mountain waves. We address this issue by combining a renewed analysis of MLS limb-track and limb-scan radiances with global mountain wave modeling using the Naval Research Laboratory Mountain Wave Forecast Model (MWFM). MLS radiance variances show characteristics consistent with mountain waves, such as enhanced variance over specific mountain ranges and annual variations that peak strongly in winter. However, direct comparisons of MLS variance maps with MWFM-simulated mountain wave climatologies reveal limited agreement. We further develop a detailed "MLS GW visibility function'' that accurately specifies the three-dimensional in-orbit sensitivity of the MLS limb-track radiance measurement to a spectrum of GWs with different wavelengths and horizontal propagation directions. On postprocessing MWFM-generated mountain wave fields through these MLS visibility filters, we generate MWFM variance maps that agree substantially better with MLS radiance variances. This combined data analysis and MLS-filtered MWFM modeling leads us to conclude that many MLS variance enhancements can be associated with mountain waves forced by flow over specific mountainous terrain. These include mountain ranges in Europe (e.g., Scandinavia; Alps; Scotland; Ural, Putoran, Altai, Hangay and Sayan Mountains; Yablonovyy, Stanovoy, Khingan, Verkhoyansk and Central Ranges), North America (e.g., Brooks Range, MacKenzie Mountains, Colorado Rockies), southeastern Greenland, and Iceland. Our results show that given careful consideration of the in-orbit sensitivity of the instrument to GWs, middle atmospheric limb radiances measured from UARS MLS, as well as from the new MLS instrument on the Earth Observing System (EOS) satellite, can provide important global information on mountain waves in the extratropical Northern Hemisphere stratosphere and mesosphere. [References: 62]
机译:尽管有地面数据证明流过高山是北半球冬季中层大气的主要重力波(GWs)来源,但上层大气研究的微波四肢测深仪(MLS)在全球肢体辐射中产生了与GW相关的信号卫星(UARS)几乎没有直接的山浪迹象。我们通过使用海军研究实验室山波预报模型(MWFM)将MLS肢体轨迹和肢体扫描辐射的最新分析与全局山浪建模相结合来解决此问题。 MLS辐射方差显示出与山波一致的特征,例如特定山脉的方差增加,并且年度变化在冬季强烈达到峰值。但是,MLS方差图与MWFM模拟的山浪气候的直接比较显示出有限的一致性。我们进一步开发了详细的“ MLS GW可见性函数”,该函数准确地指定了MLS肢体轨迹辐射度测量对不同波长和水平传播方向的GW光谱的三维在轨灵敏度。通过这些MLS可见性滤波器产生的波场,我们生成了与MLS辐射方差基本更好地一致的MWFM方差图,结合数据分析和MLS滤波后的MWFM建模,我们得出结论,许多MLS方差的增强可以与水流强迫产生的山波有关在特定的山区地形上,包括欧洲的山脉(例如,斯堪的那维亚,阿尔卑斯山,苏格兰,乌拉尔,普托兰,阿尔泰,汉吉和萨彦山脉;亚布洛维尼,斯塔诺沃,欣欣,韦尔霍扬斯克和中部山脉),北美洲(例如,布鲁克斯山脉) ,麦肯齐山脉,科罗拉多洛矶山脉,格陵兰东南部和冰岛。如果仪器对GW的在轨敏感性,从UARS MLS以及从地球观测系统(EOS)卫星上的新MLS仪器测得的中等大气肢体辐射度,可以提供有关温带山波的重要全球信息北半球平流层和中层。 [参考:62]

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