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A Method for Determination of Internal Gravity Wave Parameters from a Vertical Temperature or Density Profile Measurement in the Earth's Atmosphere

机译:一种从地球大气垂直温度或密度剖面测量中确定内部重力波参数的方法

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摘要

A method for determination of internal gravity wave (IGW) parameters from a single vertical temperature or density profile measurement in the Earth's atmosphere has been developed. This method may be used for the analysis of profiles measured by any techniques in which the accuracy is enough to measure small (~1%) amplitudes of the temperature or density fluctuations in the atmosphere. The criterion for the IGW identification has been formulated and argued. In the case when this criterion is satisfied then analyzed fluctuations can be considered as wave-induced. The method is based upon the analysis of relative amplitude thresholds of the temperature or density wave field and upon linear IGW saturation theory in which amplitude thresholds are restricted by dynamical instability processes in the atmosphere. In order to approbate the method we have used data of simultaneous radiosonde measurements of the temperature and wind velocity in the Earth's stratosphere where the saturated IGW propagation has been detected. It is shown that the application of the method to radio occultation temperature data gives the possibility to identify IGWs in the Earth's lower stratosphere and to determine values of key wave parameters.
机译:已经开发了一种用于从地球大气中的单个垂直温度或密度分布测量值确定内部重力波(IGW)参数的方法。该方法可用于分析通过任何技术测量的轮廓,在这些技术中,精度足以测量较小(〜1%)幅度的温度或大气中的密度波动。 IGW识别的标准已经制定并提出了争论。在满足此标准的情况下,则可以将分析的波动视为波动引起的。该方法基于对温度或密度波场的相对幅度阈值的分析,以及基于线性IGW饱和度理论,在该理论中,幅度阈值受大气中动态不稳定性过程的限制。为了证实该方法,我们使用了同时探测到探测到的IGW饱和传播的地球平流层中温度和风速的探空仪数据。结果表明,该方法在无线电掩星温度数据中的应用提供了识别地球低空平流层中IGW并确定关键波参数值的可能性。

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  • 来源
    《Cosmic research》 |2012年第1期|p.21-31|共11页
  • 作者单位

    Kotelnikov Institute of Radio Engineering and Electronics, Russian Academy of Sciences, Fryazino, Moscow oblast, Russia;

    Kotelnikov Institute of Radio Engineering and Electronics, Russian Academy of Sciences, Fryazino, Moscow oblast, Russia;

    Kotelnikov Institute of Radio Engineering and Electronics, Russian Academy of Sciences, Fryazino, Moscow oblast, Russia;

    Kotelnikov Institute of Radio Engineering and Electronics, Russian Academy of Sciences, Fryazino, Moscow oblast, Russia;

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