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Spatial and seasonal variability of medium- and high-frequency gravity waves in the lower atmosphere revealed by US radiosonde data

机译:美国探空仪数据揭示低空中高频引力波的空间和季节变化

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We extended the broad spectral method proposed by Zhang et al. (2013) for the extraction of medium- and high-frequency gravity waves (MHGWs). This method was applied to 11 years (1998a??2008) of radiosonde data from 92 stations in the Northern Hemisphere to investigate latitudinal, continuous vertical and seasonal variability of MHGW parameters in the lower atmosphere (2a??25 km). The latitudinal and vertical distributions of the wave energy density and horizontal momentum fluxes as well as their seasonal variations exhibit considerable consistency with those of inertial gravity waves. Despite the consistency, the MHGWs have much larger energy density, horizontal momentum fluxes and wave force, indicating the more important role of MHGWs in energy and momentum transportation and acceleration of the background. For the observed MHGWs, the vertical wavelengths are usually larger than 8 km; the horizontal wavelengths peak in the middle troposphere at middlea??high latitudes. These characteristics are obviously different from inertial gravity waves. The energy density and horizontal momentum fluxes have similar latitude-dependent seasonality: both of them are dominated by a semiannual variation at low latitudes and an annual variation at middle latitudes; however at high latitudes, they often exhibit more than two peaks per year in the troposphere. Compared with the inertial GWs, the derived intrinsic frequencies are more sensitive to the spatiotemporal variation of the buoyancy frequency, and at all latitudinal regions they are higher in summer. The wavelengths have a weaker seasonal variation; an evident annual cycle can be observed only at middle latitudes.
机译:我们扩展了张等人提出的广谱方法。 (2013年)提取中高频引力波(MHGWs)。该方法应用于北半球92个台站11年(1998a→2008)的无线电探空仪数据,以研究低层大气(2a×25 km)中MHGW参数的纬度,纬度和纬度的连续性。波能量密度和水平动量通量的纬度和垂直分布及其季节性变化与惯性重力波具有相当的一致性。尽管具有一致性,但MHGW的能量密度,水平动量通量和波浪力要大得多,这表明MHGW在能量和动量传输以及背景加速中具有更重要的作用。对于观测到的MHGW,垂直波长通常大于8 km。在中纬度高纬度的对流层中,水平波长达到峰值。这些特性明显不同于惯性重力波。能量密度和水平动量通量具有相似的纬度相关性季节性:二者均以低纬度的半年变化和中纬度的年变化为主导。但是,在高纬度地区,它们通常每年在对流层出现两个以上的高峰。与惯性GWs相比,推导的固有频率对浮力频率的时空变化更为敏感,并且在所有纬向地区,它们在夏季都较高。波长的季节变化较弱;仅在中纬度地区才能观察到明显的年周期。

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