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Examination of the atmospheric conditions associated with high and low summer ozone levels in the lower troposphere over the eastern Mediterranean

机译:在地中海东部对流层较低的夏季臭氧水平相关的大气条件

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In order to evaluate the observed high rural ozone levels in the eastern Mediterranean area during summertime, vertical profiles of ozone measured in the period 19942008 in the framework of the MOZAIC project (Measurement of Ozone and Water Vapor by Airbus in Service Aircraft) over the eastern Mediterranean basin (Cairo, Tel Aviv, Heraklion, Rhodes, Antalya) were analyzed, focusing in the lower troposphere (1.55 km). At first, vertical profiles collected during extreme days with very high or very low tropospheric ozone mixing ratios have been examined together with the corresponding back-trajectories. Also, the average profiles of ozone, relative humidity, carbon monoxide, temperature gradient and wind speed corresponding to the 7% highest and the 7% lowest ozone mixing ratios for the 15005000 m height layer for Cairo and Tel Aviv have been examined and the corresponding composite maps of geopotential heights at 850 hPa have been plotted. Based on the above analysis, it turns out that the lower-tropospheric ozone variability over the eastern Mediterranean area is controlled mainly by the synoptic meteorological conditions, combined with local topographical and meteorological features. In particular, the highest ozone concentrations in the lower troposphere and subsequently in the boundary layer are associated with large-scale subsidence of ozone-rich air masses from the upper troposphere under anticyclonic conditions while the lowest ozone concentrations are associated with low pressure conditions inducing uplifting of boundary-layer air, poor in ozone and rich in relative humidity, to the lower troposphere.
机译:为了评估夏季地中海地区东部地中海地区的高乡村臭氧水平,在Mozaic项目的框架内测量的臭氧垂直型材(通过空中客车在服务飞机上的臭氧和水蒸气测量)分析了地中海盆地(开罗,特拉维夫,赫拉克里翁,罗得岛,安塔利亚),专注于较低的对流层(1.55公里)。首先,在极端或非常低的对流层臭氧混合比率期间收集的垂直曲线已经与相应的背轨道一起检查。此外,已经检查了臭氧,相对湿度,一氧化碳,温度梯度和风速对应于开罗和特拉维夫的15005000米高度层的7%最高和7%最低臭氧混合比对应的平均曲线和风速。并进行了相应的绘制了850 HPA的地球势高度的复合地图。基于上述分析,事实证明,东部地中海地区的下层臭氧臭氧变异主要由天气气象状况控制,结合当地地形和气象特征。特别地,较低的对流层和随后在边界层中的最高臭氧浓度与在反循环条件下从上层对流层的富含臭氧的空气质量的大规模沉降相关,而最低臭氧浓度与诱导令人振奋的低压条件相关联边界层空气,臭氧差,富含湿度,对流层较低。

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