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Sensitivity of polar stratospheric cloud formation to changes in water vapour and temperature

机译:极地平流层云形成对水蒸气和温度变化的敏感性

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pstrongAbstract./strong More than a decade ago it was suggested that a??cooling of stratospheric temperatures by 1span class="thinspace"/spanK or an increase of 1span class="thinspace"/spanppmv of stratospheric water vapour could promote denitrification, the permanent removal of nitrogen species from the stratosphere by solid polar stratospheric cloud (PSC) particles. In fact, during the two Arctic winters 2009/10 and 2010/11 the strongest denitrification in the recent decade was observed. Sensitivity studies along air parcel trajectories are performed to test how a??future stratospheric water vapour (Hsub2/subO) increase of 1span class="thinspace"/spanppmv or a??temperature decrease of 1span class="thinspace"/spanK would affect PSC formation. We perform our study based on measurements made during the Arctic winter 2010/11. Air parcel trajectories were calculated 6??days backward in time based on PSCs detected by CALIPSO (Cloud Aerosol Lidar and Infrared Pathfinder satellite observations). The sensitivity study was performed on single trajectories as well as on a??trajectory ensemble. The sensitivity study shows a??clear prolongation of the potential for PSC formation and PSC existence when the temperature in the stratosphere is decreased by 1span class="thinspace"/spanK and water vapour is increased by 1span class="thinspace"/spanppmv. Based on 15??years of satellite measurements (2000–2014) from UARS/HALOE, Envisat/MIPAS, Odin/SMR, Aura/MLS, Envisat/SCIAMACHY and SCISAT/ACE-FTS it is further investigated if there is a??decrease in temperature and/or increase of water vapour (Hsub2/subO) observed in the polar regions similar to that observed at midlatitudes and in the tropics. Performing linear regression analyses we derive from the Envisat/MIPAS (2002–2012) and Aura/MLS (2004–2014) observations predominantly positive changes in the potential temperature range 350 to 1000span class="thinspace"/spanK. The linear changes in water vapour derived from Envisat/MIPAS observations are largely insignificant, while those from Aura/MLS are mostly significant. For the temperature neither of the two instruments indicate any significant changes. Given the strong inter-annual variation observed in water vapour and particular temperature the severe denitrification observed in 2010/11 cannot be directly related to any changes in water vapour and temperature since the millennium. However, the observations indicate a??clear correlation between cold winters and enhanced water vapour mixing ratios. This indicates a connection between dynamical and radiative processes that govern water vapour and temperature in the Arctic lower stratosphere./p.
机译:> >摘要。十多年前,有人建议将平流层温度降温1 class =“ thinspace”> K或增加1 平流层水蒸气的ppmv可以促进反硝化作用,即固态极地平流层云(PSC)颗粒从平流层中永久去除氮物质。实际上,在2009/10和2010/11两个北极冬季,观察到近十年来最强的反硝化作用。进行了沿空气包裹轨迹的敏感性研究,以测试未来的平流层水蒸气(H 2 O)如何增加1 class =“ thinspace”> ppmv或a?温度降低1 class =“ thinspace”> K会影响PSC的形成。我们基于2010/11冬季北极地区的测量结果进行研究。根据CALIPSO(Cloud Aerosol Lidar和Infrared Pathfinder卫星观测)探测到的PSCs,及时向后6天计算了航空器的轨迹。敏感性研究是在单个轨迹以及轨迹集合上进行的。敏感性研究表明,当平流层温度降低1 > K,水蒸气增加1 时,PSC形成和PSC存在的可能性明显延长。 class =“ thinspace”> ppmv。根据UARS / HALOE,Envisat / MIPAS,Odin / SMR,Aura / MLS,Envisat / SCIAMACHY和SCISAT / ACE-FTS的15年卫星测量值(2000年至2014年),将进一步调查是否存在?在极地地区观察到的温度下降和/或水汽(H 2 O)的增加类似于在中纬度和热带地区所观察到的情况。进行线性回归分析时,我们从Envisat / MIPAS(2002– 2012)和Aura / MLS(2004– 2014)观察中得出,主要观察到潜在温度范围为350至1000 class =“ thinspace”> K 。从Envisat / MIPAS观测得到的水蒸气的线性变化在很大程度上是不重要的,而从Aura / MLS观测到的水蒸气的线性变化在很大程度上是重要的。对于温度,两个仪器均未显示任何明显变化。考虑到水蒸气和特定温度的年际变化很大,自千年以来,2010/11年观察到的严重反硝化与水蒸气和温度的任何变化都不能直接相关。但是,这些观察结果表明,寒冷的冬天与增加的水蒸气混合比之间存在明显的相关性。这表明控制北极低平流层中水汽和温度的动力学过程和辐射过程之间存在联系。

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