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Evaluation of uncertainty in gravity wave potential energy calculations through GPS radio occultation measurements

机译:通过GPS无线电掩星测量评估重力波势能计算的不确定性

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摘要

The application of the Global Positioning System (GPS) radio occultation (RO) method to the atmosphere enables the determination of height profiles of temperature, among other variables. From these measurements, gravity wave activity is usually quantified by calculating the potential energy through the integration of the ratio of perturbation and background temperatures between two given altitudes in each profile. The uncertainty in the estimation of wave activity depends on the systematic biases and random errors of the measured temperature, but also on additional factors like the selected vertical integration layer and the separation method between background and perturbation temperatures. In this study, the contributions of different parameters and variables to the uncertainty in the calculation of gravity wave potential energy in the lower stratosphere are investigated and quantified. In particular, a Monte Carlo method is used to evaluate the uncertainty that results from different GPS RO temperature error distributions. In addition, our analysis shows that RO data above 30 km height becomes dubious for gravity waves potential energy calculations.
机译:全球定位系统(GPS)无线电掩星(RO)方法在大气中的应用可以确定温度的高度分布以及其他变量。根据这些测量结果,通常通过对每个剖面中两个给定高度之间的摄动和背景温度之比进行积分来计算势能,从而对重力波活动进行量化。估算波活动的不确定性取决于测量温度的系统偏差和随机误差,还取决于其他因素,例如所选的垂直积分层以及背景温度和摄动温度之间的分离方法。在这项研究中,研究和量化了低平流层重力波势能计算中不同参数和变量对不确定性的贡献。特别是,使用蒙特卡洛方法评估由不同GPS RO温度误差分布导致的不确定性。此外,我们的分析表明,对于重力波势能计算,高于30 km的RO数据变得令人怀疑。

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