首页> 外文期刊>Atmospheric chemistry and physics >Tropospheric ozone climatology at two Southern Hemisphere tropical/subtropical sites, (Reunion Island and Irene, South Africa) from ozonesondes, LIDAR, and in situ aircraft measurements
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Tropospheric ozone climatology at two Southern Hemisphere tropical/subtropical sites, (Reunion Island and Irene, South Africa) from ozonesondes, LIDAR, and in situ aircraft measurements

机译:利用臭氧探空仪,激光雷达和原位飞机测量结果,对南半球两个热带/亚热带站点(南非留尼汪和艾琳)的对流层臭氧气候

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This paper presents a climatology and trends of tropospheric ozone in the Southwestern Indian Ocean (Reunion Island) and South Africa (Irene and Johannesburg). This study is based on a multi-instrumental dataset: PTU-O _3 ozonesondes, DIAL LIDAR and MOZAIC airborne instrumentation. The seasonal profiles of tropospheric ozone at Reunion Island have been calculated from two different data sets: ozonesondes and LIDAR. The two climatological profiles are similar, except in austral summer when the LIDAR profiles show greater values in the free troposphere, and in the upper troposphere when the LIDAR profiles show lower values during all seasons. These results show that the climatological value of LIDAR profiles must be discussed with care since LIDAR measurements can be performed only under clear sky conditions, and the upper limit of the profile depends on the signal strength. In addition, linear trends have been calculated from ozonesonde data at Reunion and Irene. Considering the whole tropospheric column, the trend is slightly positive for Reunion, and more clearly positive for Irene. Trend calculations have also been made separating the troposphere into three layers, and separating the dataset into seasons. Results show that the positive trend for Irene is governed by the lower layer that is affected by industrial pollution and biomass burning. On the contrary, for Reunion Island, the strongest trends are observed in the upper troposphere, and in winter when stratosphere-troposphere exchange is more frequently expected.
机译:本文介绍了西南印度洋(留尼汪岛)和南非(艾琳和约翰内斯堡)的对流层臭氧的气候和趋势。这项研究基于多仪器数据集:PTU-O _3臭氧探空仪,DIAL LIDAR和MOZAIC机载仪器。留尼汪岛对流层臭氧的季节性廓线是根据两个不同的数据集计算得出的:臭氧探空仪和激光雷达。这两个气候特征是相似的,除了在夏季夏季,LIDAR分布在自由对流层中显示出较大的值,而在高对流层则当LIDAR分布在所有季节中显示出较低的值时。这些结果表明,必须谨慎讨论LIDAR剖面的气候值,因为LIDAR测量只能在晴朗的天空条件下进行,并且剖面的上限取决于信号强度。此外,还根据留尼汪和艾琳的探空仪数据计算了线性趋势。考虑到整个对流层柱,这种趋势对留尼汪岛来说是正向的,而对于艾琳来说则是正向的。还进行了趋势计算,将对流层分为三层,并将数据集分为季节。结果表明,艾琳的积极趋势是受工业污染和生物质燃烧影响的下层。相反,对于留尼汪岛,在对流层上部观察到最强烈的趋势,而在冬季,平流层-对流层交换更为频繁。

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