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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >OH and OI airglow layer modulation by ducted short-period gravity waves: Effects of trapping altitude
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OH and OI airglow layer modulation by ducted short-period gravity waves: Effects of trapping altitude

机译:哦,OI大气光层调制导管短周期重力波:捕获的影响高度

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摘要

Perturbations to the OH and OI O(~1S) 557.7 nm airglow layers by ducted gravity waves near the Brunt-Vaisala period are investigated using a 2-D numerical model. Airglow signatures of these waves are strongly determined by perturbations of O, O_3, and H, which exhibit peak densities near and above mesopause. Strong periodic vertical wind components of short-period gravity waves induce opposite relative density perturbations above and below the layer density peaks. Airglow signatures for ducted waves depend on the specific vertical shapes and altitudes of the wave packets relative to ambient species density profiles; waves perturbing only the bottoms or tops of the layers produce signatures differing from those able to perturb the entire layer thickness. Line-of-sight cancellation occurs between opposite perturbations above and below airglow layer peaks, even for standing waves without vertical phase progression. Integrated brightness-weighted temperature and intensity can thus appear in-phase or antiphase for standing waves, depending on the wave-packet altitude relative to the density gradients. Comparisons of OH and OI layer intensities also reveal in-phase or antiphase relative intensity responses and do not directly indicate the phase of the wave perturbations at layer peak altitudes. Despite this ambiguity, simultaneous brightness-weighted temperature measurements may provide additional insight into wave structure, amplitude, and trapping altitude. For waves of sufficient amplitude that perturb steep density gradients, nonlinearity of the airglow response may be observable; this effect is most prominent when strong cancellation of the linear signature occurs.
机译:扰动哦,OI (O (~ 1 s) 557.7 nm)大气光层通过导管附近的重力波使用二维Brunt-Vaisala时期了数值模型。波强烈扰动的决定和H O, O_3,表现出峰值密度附近和中气层顶之上。短周期重力波的风组件产生相反的相对密度的扰动上面和下面层密度峰值。签名为导管依赖特定的垂直的形状和高度相对于环境的物种密度波包配置文件;不同层产生的签名从那些能够扰乱整个层厚度。上级和下级之间相反的扰动大气光层峰,甚至对驻波没有垂直的阶段发展。brightness-weighted温度和强度从而为站出现同相或反相波,根据波包的高度相对密度梯度。哦和OI层强度也揭示同相或反相相对强度响应和做没有直接表示波的相位扰动层峰海拔。这个模棱两可,同时brightness-weighted温度测量可以提供额外的了解波结构、振幅和捕获的高度。振幅,扰乱陡峭的密度梯度,大气光响应的非线性看得见的;强烈的线性签名取消发生。

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