首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Impact of convection on the upper-tropospheric composition (water vapor and ozone) over a subtropical site (Réunion island; 21.1°S, 55.5°E) in the Indian Ocean
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Impact of convection on the upper-tropospheric composition (water vapor and ozone) over a subtropical site (Réunion island; 21.1°S, 55.5°E) in the Indian Ocean

机译:在印度洋的亚热带地点(Réunion岛; 21.1°S,55.5°e)上对流层对流对流对流的影响(水蒸气和臭氧)

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Observations of ozonesonde measurements of the NDACC/SHADOZ (Network for the Detection of Atmospheric Composition Change and the Southern Hemisphere ADditional OZonesondes) program and humidity profiles from the daily Météo-France radiosondes at Réunion island (21.1°S, 55.5°E) from November?2013 to April?2016 were analyzed to identify the origin of wet upper-tropospheric air masses with low ozone mixing ratio observed above the island, located in the southwest Indian Ocean (SWIO). A seasonal variability in hydration events in the upper troposphere was found and linked to the convective activity within the SWIO basin. In the upper troposphere, ozone mixing ratios were lower (mean of 57ppbv) in humid air masses (RH50%) compared to the background mean ozone mixing ratio (73.8ppbv). A convective signature was identified in the ozone profile dataset by studying the probability of occurrence of different ozone thresholds. It was found that ozone mixing ratios lower than 45 to 50ppbv had a local maximum of occurrence between 10 and 13km in altitude, indicative of the mean level of convective outflow. Combining FLEXPART Lagrangian back trajectories with METEOSAT-7 infrared brightness temperature products, we established the origin of convective influence on the upper troposphere above Réunion island. It has been found that the upper troposphere above Réunion island is impacted by convective outflows in austral summer. Most of the time, deep convection is not observed in the direct vicinity of the island, but it is observed more than 1000km away from the island, in the tropics, either from tropical storms or the Intertropical Convection Zone (ITCZ). In November and December, the air masses above Réunion island originate, on average, from central Africa and the Mozambique Channel. During January and February the source region is the northeast of Mozambique and Madagascar. Those results improve our understanding of the impact of the ITCZ and tropical cyclones on the hydration of the upper troposphere in the subtropics in the SWIO.
机译:观察NDACC / Shadoz(用于检测大气成分变化的网络和南半球额外臭氧)的臭氧测量(用于检测大气组成变化和南半球的额外臭氧)的节目和湿度概况从11月(21.1°S,55.5°e)的日常美氏Météo-France曝光件(21.1°S,55.5°E) ?2016年4月?2016年被分析,以识别岛上观察到岛上的低臭氧混合比,位于印度西南海洋(SWIO)。发现上层对流层中水合事件的季节变异性并与SWIO盆地内的对流活动相关联。在上层对流层中,与背景平均臭氧混合比(73.8ppbv)相比,臭氧混合比率较低(RH50%)(RH50%)下降(RH50%)。通过研究不同臭氧阈值的发生概率,在臭氧配置文件中识别对流签名。发现低于45至50ppbv的臭氧混合比率在高度的10至13km之间发生局部发生,指示对流流出的平均水平。将Flexpart Lagrangian背面轨迹与Meteosat-7红外线亮度温度产品结合起来,我们建立了对Réunion岛上对流层的对流影响的起源。已经发现Réunion岛上的上层对流层受到南夏天的对流外流影响。大多数情况下,在岛上的直接附近没有观察到深度对流,但从热带风暴或闭管会的对流区(ITCZ)中,距离岛屿的距离距离岛屿超过1000km。 11月和12月,Réunion岛上的空气群众平均来自中非和莫桑比克渠道。 1月和2月期间,源地区是莫桑比克和马达加斯加的东北部。这些结果改善了我们对ITCZ和热带气旋对Swio中副流带的上层的水合作的理解。

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