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Influence of volcanic eruptions on midlatitude upper tropospheric aerosol and consequences for cirrus clouds

机译:火山喷发对中纬度对流层上层气溶胶的影响及卷云的后果

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AbstractThe influence of downwelling stratospheric sulfurous aerosol on the UT (upper troposphere) aerosol concentrations and on cirrus clouds is investigated using CARIBIC (Civil Aircraft for Regular Investigation of the Atmosphere Based on an Instrument Container observations) (between 1999–2002 and 2005–2013) and the cirrus reflectance product from Moderate Resolution Imaging Spectroradiometer (MODIS). The initial period, 1999–2002, was volcanically quiescent after which the sulfurous aerosol in the LMS (lowermost stratosphere) (SLMS) became enhanced by several volcanic eruptions starting 2005. From 2005 to 2008 and in 2013, volcanic aerosol from several tropical eruptions increased SLMS. Due to consequent subsidence, the sulfur loading of the upper troposphere (SUT) was increased by a factor of 2.5 compared to background levels. Comparison of SLMS and SUT during the seasons March–July and August–November shows a close coupling of the UT and LMS. Finally, the relationship between SLMS and the cirrus cloud reflectance (CR) retrieved from MODIS spectrometer (on board the satellites Terra and Aqua) is studied. SLMS and CR show a strong anticorrelation, with a factor of 3.5 increase in SLMS and decrease of CR by 8 ± 2% over the period 2001–2011. We propose that the increase of SLMS due to volcanism has caused the coinciding cirrus CR decrease, which would be associated with a negative radiative forcing in the Northern Hemisphere midlatitudes.
机译:摘要使用CARIBIC(基于仪器容器观测的定期定期调查大气的民用飞机)研究了平流层中含硫平流层气溶胶对UT(对流层上层)气溶胶浓度和卷云的影响(1999-2002年至2005-2013年)以及中分辨率成像光谱仪(MODIS)的卷云反射率产品。最初的1999-2002年是火山静止期,此后从2005年开始,几次火山喷发增强了LMS(最低平流层)(S LMS )中的含硫气溶胶。2005年至2008年和2013年,来自几次热带爆发的火山气溶胶使S LMS 升高。由于随之而来的沉降,与背景水平相比,对流层上部的硫负荷(S UT )增加了2.5倍。 3月至7月和8月至11月的S LMS 和S UT 的比较显示UT和LMS紧密耦合。最后,研究了S LMS 与从MODIS光谱仪(在Terra和Aqua卫星上)获取的卷云反射率(CR)之间的关系。 S LMS 和CR显示出很强的反相关性,在2001-2011年期间,S LMS 升高3.5倍,CR降低8±2%。我们认为,由于火山活动引起的S LMS 的增加引起了卷云CR的降低,这与北半球中纬度的负辐射强迫有关。

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