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Analysis of atmospheric and ionospheric structures using the GPS/MET and CHAMP radio occultation database: a methodological review

机译:使用GPS / MET和CHAMP无线电掩星数据库分析大气和电离层结构:方法学综述

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Since 1995, the global positioning system (GPS) has been exploited by the means of the radio occultation (RO) method to obtain the vertical profiles of refractivity, temperature, pressure, and water vapor in the neutral atmosphere and electron density in the ionosphere. Applying the RO method to the study of the Earth's atmosphere was demonstrated for the first time with the GPS/MET experiment. Since then, several satellites with GPS receivers, suitable for RO experiments, have been launched including Oersted, SUNSAT, CHAMP, SAC-C, and GRACE. Future RO investigations that are planned now include FORMOSAT3/COSMIC and Terra-SAR missions. New elements in the RO technology are required to meet the goals of improving the accuracy and broadening the potential of the RO method. In this paper, a methodological review of RO investigations is presented to emphasize new directions in applying the RO method: measuring the vertical gradients of the refractivity in the atmosphere and electron density in the lower ionosphere, determination of the temperature regime in the upper stratosphere, investigation of the internal wave activity in the atmosphere, and study of the ionospheric disturbances on a global scale. These new directions may be relevant for investigating the relationships between processes in the atmosphere and mesosphere, the study of thermal regimes in the intermediate heights of the upper stratosphere-lower mesosphere, and the analysis of the influence of the space weather phenomena on the lower ionosphere.
机译:自1995年以来,通过无线电掩星(RO)方法开发了全球定位系统(GPS),以获取中性大气中折射率,温度,压力和水蒸气以及电离层电子密度的垂直剖面图。 GPS / MET实验首次证明了将RO方法应用于地球大气研究。从那时起,已经发射了几颗带有GPS接收机的卫星,这些卫星适合进行RO实验,包括Oersted,SUNSAT,CHAMP,SAC-C和GRACE。现在计划进行的未来RO调查包括FORMOSAT3 / COSMIC和Terra-SAR任务。需要RO技术中的新元素,才能达到提高准确性和扩大RO方法潜力的目标。本文对反渗透研究进行了方法学综述,以强调反渗透方法应用的新方向:测量大气中折射率的垂直梯度和电离层下部的电子密度,确定平流层上部的温度状态,研究大气中的内部波活动,并在全球范围内研究电离层扰动。这些新的方向可能对研究大气和中层大气过程之间的关系,研究高平流层-较低中层中间高度的热态以及分析空间天气现象对下层电离层的影响有关。 。

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