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Sensitivity study of ozone retrieval from UV measurements on geostationary platforms

机译:对地静止平台上紫外线测量中臭氧回收的敏感性研究

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This paper addresses several aspects related to ultraviolet (UV) measurements from an upcoming geostationary orbit (GEO) satellite mission. First, using simulated cloud coverage based on the MTSAT (Multi-functional Transport Satellite 1R) 650. nm channel as a proxy, we find that GEO observations can increase clear-sky coverage by ~. 4 times. Secondly, we examine the feasibility of improved ozone detection with GEO observations, using synthetic GEMS spectra with GEO geometries along with the TOMS total ozone algorithm and an ozone profile algorithm based on the optimal estimation method. The sensitivity of ozone retrievals to the lower troposphere is limited at large solar and satellite zenith angles, especially above 70° under clear-sky conditions. Third, we evaluate two new ideas for improving ozone retrieval sensitivity in the troposphere at large angle geometries; (1) a geosynchronous orbit with an inclination-angle of 30°, with smaller values of viewing zenith angles than those from a geostationary orbit; (2) a combination of UV measurements at multiple solar zenith angles to improve the accuracy of ozone profile retrievals.
机译:本文介绍了与即将到来的地球静止轨道(GEO)卫星任务进行的紫外线(UV)测量相关的几个方面。首先,使用基于MTSAT(多功能运输卫星1R)650.nm通道的模拟云覆盖作为代理,我们发现GEO观测可以将晴空覆盖范围增加〜。 4次。其次,我们使用具有GEO几何形状的合成GEMS光谱,TOMS总臭氧算法和基于最佳估计方法的臭氧剖面算法,研究了利用GEO观测值改进臭氧检测的可行性。在太阳和卫星的天顶角较大时,臭氧对低层对流层的敏感性有限,特别是在晴朗的天空条件下,尤其是在70°以上时。第三,我们评估了两种在大角度几何形状下提高对流层臭氧恢复敏感性的新思路; (1)具有30°倾斜角的地球同步轨道,其观测天顶角的值比对地静止轨道的观测天顶角小; (2)在多个太阳天顶角进行紫外线测量的组合,以提高臭氧分布图检索的准确性。

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