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Optical extinction by upper tropospheric/stratospheric aerosols and clouds: GOMOS observations for the period 2002-2008

机译:对流层/平流层上层气溶胶和云的消光:GOMOS 2002-2008年期间的观测

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Although the retrieval of aerosol extinction coefficients from satellite remote measurements is notoriously difficult (in comparison with gaseous species) due to the lack of typical spectral signatures, important information can be obtained. In this paper we present an overview of the current operational nighttime UV/Vis aerosol extinction profile results for the GOMOS star occultation instrument, spanning the period from August 2002 to May 2008. Some problems still remain, such as the ones associated with incomplete scintillation correction and the aerosol spectral law implementation, but good quality extinction values are obtained at a wavelength of 500 nm. Typical phenomena associated with atmospheric particulate matter in the Upper Troposphere/Lower Stratosphere (UTLS) are easily identified: Polar Stratospheric Clouds, tropical subvisual cirrus clouds, background stratospheric aerosols, and post-eruption volcanic aerosols (with their subsequent dispersion around the globe). For the first time, we show comparisons of GOMOS 500 nm particle extinction profiles with the ones of other satellite occultation instruments (SAGE II, SAGE III and POAM III), of which the good agreement lends credibility to the GOMOS data set. Yearly zonal statistics are presented for the entire period considered. Time series furthermore convincingly show an important new finding: the sensitivity of GOMOS to the sulfate input by moderate volcanic eruptions such as Manam (2005) and Soufriére Hills (2006). Finally, PSCs are well observed by GOMOS and a first qualitative analysis of the data agrees well with the theoretical PSC formation temperature. Therefore, the importance of the GOMOS aerosol/cloud extinction profile data set is clear: a long-term data record of PSC_s, subvisual cirrus, and background and volcanic aerosols in the UTLS region, consisting of hundreds of thousands of altitude profiles with near-global coverage, with the potential to fill the aerosol/cloud extinction data gap left behind after the discontinuation of occultation instruments such as SAGE II, SAGE III and POAM III.
机译:尽管由于缺乏典型的光谱特征,从卫星遥测中获取气溶胶消光系数非常困难(与气态物种相比),但仍可以获得重要的信息。本文中,我们概述了2002年8月至2008年5月期间GOMOS星型掩星仪当前夜间操作的UV / Vis气溶胶消光曲线结果。仍然存在一些问题,例如与不完全闪烁校正相关的问题。和气溶胶光谱定律的实现,但在500 nm的波长下可获得良好的质量消光值。与对流层/低层平流层(UTLS)中的大气颗粒物相关的典型现象很容易识别:极地平流层云,热带亚目卷云,平流层背景气溶胶和喷发后的火山气溶胶(随后在全球分布)。首次,我们展示了GOMOS 500 nm粒子消光曲线与其他卫星掩星仪器(SAGE II,SAGE III和POAM III)的比较,其中良好的一致性为GOMOS数据集提供了可信度。提供了所考虑的整个期间的年度区域统计数据。时间序列进一步令人信服地显示出一个重要的新发现:GOMOS对中等火山爆发(例如Manam(2005)和SoufriéreHills(2006))输入的硫酸盐的敏感性。最后,GOMOS可以很好地观察到PSC,并且对数据进行的第一定性分析与理论PSC形成温度非常吻合。因此,GOMOS气溶胶/云雾消灭剖面数据集的重要性显而易见:UTLS地区的PSC_s,亚目卷云以及背景和火山气溶胶的长期数据记录,包括成千上万个具有近乎SAGE II,SAGE III和POAM III等隐匿仪器停止使用后,有可能填补气溶胶/云雾消灭数据缺口。

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