首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Large-Amplitude Mountain Waves in the Mesosphere Observed on 21 June 2014 During DEEPWAVE: 2. Nonlinear Dynamics, Wave Breaking, and Instabilities
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Large-Amplitude Mountain Waves in the Mesosphere Observed on 21 June 2014 During DEEPWAVE: 2. Nonlinear Dynamics, Wave Breaking, and Instabilities

机译:2014年6月21日在DeepWave期间观察到介质山波的大幅度山波:2.非线性动力学,波浪突破和稳定性

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Weak cross-mountain flow over the New Zealand South Island on 21 June 2014 during the Deep Propagating Gravity Wave Experiment (DEEPWAVE) led to large-amplitude mountain waves in the mesosphere and lower thermosphere. The mesosphere and lower thermosphere responses were observed by ground-based instruments in the lee of the Southern Alps supporting DEEPWAVE, including an Advanced Mesosphere Temperature Mapper, a Rayleigh lidar, an All-Sky Imager, and a Fabry-Perot Interferometer. The character of the mountain wave responses at horizontal scales of ~30-90 km reveals strong "sawtooth" variations in the temperature field suggesting large vertical and horizontal displacements leading to mountain wave overturning. The observations also reveal multiple examples of apparent instability structures within the mountain wave field that arose accompanying large amplitudes and exhibited various forms, scales, and evolutions. This paper employs detailed data analyses and results of numerical modeling of gravity wave instability dynamics to interpret these mountain wave dynamics, their instability forms, scales, and expected environmental influences. Results demonstrate apparently general instability pathways for breaking of large-amplitude gravity waves in environments without and with mean shear. A close link is also found between large-amplitude gravity waves and the dominant instability scales that may yield additional abilities to quantify gravity wave characteristics and effects.
机译:2014年6月21日在新西兰南岛对新西兰南岛的弱山流动期间,在深度传播的重力波实验期间导致了介质圈和较低的热层中的大幅度山波。在南方阿尔卑斯南部的李·阿尔卑斯河畔李·阿尔卑斯李的李液中观察了介体和较低的热圈响应,包括先进的Mesosphere温度映射器,瑞利丽达,全天成像仪和法布里珀罗干涉仪。水平尺度的山波响应的特征〜30-90 km揭示了温度场的强烈“锯齿”变化,表明导致山波翻转的大型垂直和水平位移。观察结果还揭示了在伴随着大幅度的山波场内的表观不稳定性结构的多个例子,并且表现出各种形式,尺度和演进。本文采用详细的数据分析和重力波不稳定动态的数值模拟结果来解释这些山波动态,其不稳定形式,尺度和预期的环境影响。结果表明,用于在没有和平均剪切的环境中破坏大幅度重力波的一般稳定性途径。在大幅度重力波和主要的不稳定性尺度之间也发现了一个紧密的链接,其可以产生额外的能力来量化重力波特性和效果。

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