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On the vertical structure of the stratosphere at midlatitudes during the first stage of the polar vortex formation and in the polar region in the presence of a large mesospheric descent

机译:在极涡形成第一阶段中纬度平流层的垂直结构上以及在存在大的中层下降的极区

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摘要

CH4 and N2O measured by the balloon-borne Spectromètre Infra Rouge pour l'Étude de l'Atmosphère par Diodes Laser Embarquées (SPIRALE) instrument at midlatitude on 2 October 2002 and in the polar region on 21 January 2003 are used to study the vertical structure of the stratosphere. SPIRALE utilizes a direct absorption technique using tunable diodes laser in the midinfrared. For the two flights, detailed structures with vertical extents less than 1 km and nonmonotonic profiles are observed. Measured N2O and CH4 have been compared with correlation curves deduced from ATMOS space shuttle measurements. The high vertical resolution (5 m) and high precision of the measurements allow us to discuss the air mass origin in detail. To help with the interpretation, the potential vorticity maps have been used. At midlatitude we have identified a tropospheric tropical air mass intrusion. The layer located just above has been identified as the “tropically controlled transition region.” For this layer a specific correlation line has been deduced from our measurements. The nonmonotonic part of the profile in the 23–29 km altitude range corresponds to a transition layer where mixing is still occurring. For the polar flight the instrument has sampled air masses outside the polar vortex at the lower levels and inside the polar vortex above. An intense mesospheric descent is observed. We provide new CH4:N2O correlation values that can be encountered in cases of large mesospheric descent. Our measurements show also a nontypical CH4:N2O correlation line in a thin layer corresponding to a midlatitude filament crossing the balloon trajectory.
机译:用气球载光谱仪于2002年10月2日在中纬度和极地地区于2003年1月21日在大气纬度红外光谱仪中测量的CH4和N2O用于研究垂直结构平流层SPIRALE利用直接吸收技术,在中红外使用可调二极管激光器。对于这两次飞行,观察到垂直范围小于1 km且非单调轮廓的详细结构。已将测得的N2O和CH4与从ATMOS航天飞机测量得出的相关曲线进行了比较。高垂直分辨率(5 m)和测量的高精度使我们能够详细讨论空气质量的起源。为了帮助解释,已使用了潜在的涡度图。在中纬度,我们发现了对流层热带气团入侵。位于正上方的图层已被识别为“热带控制的过渡区域”。对于这一层,已经从我们的测量中得出了一条特定的相关线。在海拔23–29 km范围内,剖面的非单调部分对应于过渡层,该过渡层仍在发生混合。对于极地飞行,仪器在较低水平的极地涡旋外部和上方的极地涡旋内部采样了空气质量。观察到强烈的中层下降。我们提供了新的CH4:N2O相关值,在大中层下降情况下可能会遇到。我们的测量结果还显示出一个薄层中非典型的CH4:N2O相关线,该线对应于横越气球轨迹的中纬度细丝。

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