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Assessment of Atmospheric Wet Profiles Obtained from COSMIC Radio Occultation Observations over China

机译:从中国COSMIC无线电掩星观测获得的大气湿廓线评估

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Atmosperic profiles derived from Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC) radio occultation (RO) measurements make up for the lack of operational radiosonde soundings with a high spatiotemporal distribution, and their performance over China is assessed in this paper. COSMIC-retrieved atmospheric wet profiles from 2014 to 2015 are compared to the contemporaneous radiosonde profiles from 120 stations, and the vertical mean differences are used. The results show that the vertical mean biases of temperature, pressure and vapor pressure are ?¢????0.10 K, 0.69 hPa and ?¢????0.01 hPa, respectively, and that for refractivity is 0.17 N. Moreover, the temperature differences are positively correlated with station altitude, yet both the pressure and vapor pressure differences are negatively correlated with station latitude, as is the refractivity difference. The large temperature difference arising from the Qinghai-Tibet Plateau (QTP) region may be associated with the complex topography of the area and the limitations in the background model used in the COSMIC profile retrieval. Furthermore, negative refractivity bias between COSMIC and radiosonde data occurs below 5 km and is large in wet southern China, with a value of less than 1%. This result may be related to more humid conditions and super-refraction.
机译:由气象,电离层和气候星座观测系统(COSMIC)无线电掩星(RO)测量得出的大气剖面弥补了缺乏时空分布较高的运行探空仪探测的不足,本文对它们在中国的表现进行了评估。将2014年至2015年从COSMIC回收的大气湿廓线与120个台站的同期无线电探空仪廓线进行了比较,并使用垂直平均差。结果表明,温度,压力和蒸汽压的垂直平均偏差分别为0.10 K,0.69 hPa和0.01±0.01 hPa,而折射率的垂直平均偏差为0.17N。温度差与测站高度成正相关,而压力和蒸气压差与测站纬度成负相关,折射率差也与测站纬度成负相关。由青藏高原(QTP)区域引起的较大温差可能与该地区的复杂地形以及COSMIC剖面图检索中使用的背景模型的局限性有关。此外,COSMIC和探空仪数据之间的负折射率偏差出现在5 km以下,并且在中国南部湿润地区较大,其值小于1%。该结果可能与更多的潮湿条件和超折射有关。

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