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A method to improve the determination of wave perturbations close to the tropopause by using a digital filter

机译:一种通过使用数字滤波器来改善对流层顶附近波扰动的确定的方法

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摘要

GPS radio occultation satellite data allowed to analyze in the last decade for the first time a large amount of atmospheric temperature profiles including both the troposphere and the stratosphere all over the globe. Wave amplitude enhancements have been systematically observed around tropopause levels, which are apparently due to artifacts generated by any digital filter used to isolate the wave components from these data. We present a new filtering method which can be equally applied to temperature or refractivity profiles. It was tested with synthetic temperature data based on NCEP reanalyes and observed wave climatologies and it was also statistically validated with GPS radio occultation profiles from the COSMIC mission. The suggested technique significantly reduces artificial enhancements around the tropopause, mainly at low latitudes, where a sharp lapse rate change usually exists. This represents an improvement in comparison to previous applications of standard filters. In addition it would allow the study of longer vertical wavelengths than previously done with other filtering procedures.
机译:GPS无线电掩星卫星数据在过去十年中首次允许分析全球范围内的大量大气温度曲线,包括对流层和平流层。已经在对流层顶水平附近系统地观察到波幅增强,这显然是由于任何用于将波分量与这些数据隔离的数字滤波器所产生的伪影所致。我们提出了一种新的滤波方法,该方法可以同等地应用于温度或折射率曲线。使用基于NCEP再分析和观测波气候的合成温度数据对它进行了测试,并使用COSMIC任务中的GPS无线电掩星图对它进行了统计验证。所建议的技术显着减少了对流层顶周围的人工增强,主要是在低纬度地区,通常存在急剧的流失率变化。与标准过滤器的先前应用相比,这是一种改进。另外,与以前使用其他滤波程序相比,它可以研究更长的垂直波长。

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