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Constant volume balloons measurements in the urban Marseille and Fos- Berre industrial ozone plumes during ESCOMPTE experiment

机译:ESCOMPTE实验期间,在马赛和Fos-Berre工业臭氧羽流中进行定容气球测量

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摘要

ESCOMPTE programme aims at studying the emissions of primary pollutants in industrial and urban areas, their transport, diffusion and transformation in the atmosphere. This experiment, carried out in southeast France, can be used to validate and to improve meteorological and chemical mesoscale models. One major goal of this experiment was to follow the pollutant plumes, and to investigate its thermodynamic and physico-chemical time evolution. This was realized by means of constant volume balloons, located by global position satellite (GPS) and equipped with thermodynamic and ozone sensors, flying at constant density levels. During the two ESCOMPTE campaigns that took place in June and July 2000 and 2001,40 balloons were launched, 17 of them equipped with ozone sensors during the day from 0800 to 1800 UTC. Balloons' altitudes flight levels ranged between 400 and 1200m altitude with Mistral (northerly synoptic flow) and Sea Breeze (southerly breeze) conditions. The atmospheric boundary layer (ABL) topography of the experimental domain is complex and varies strongly from day to day. Its depth presents a large gradient from the sea coast to the north part of the ESCOMPTE domain, and also more complex variability within the domain. The balloons' trajectories describe the evolution of the pollutant plume emitted from the industrial area of Fos-Berre or from the Marseille urban area. Constant volume balloons give a good description of the trajectories of these two plumes. The balloons, which fly at an isopicnic level, cross different atmospheric layers chiefly depending on the ABL height in relation with the constant volume balloons flight level. Thus, each balloon flight is decomposed into different segments that correspond to the same atmospheric layer. In each segment, the ozone content variation is analyzed in relation to other thermodynamical parameters measured by the balloon and mainly to the vapor mixing ratio content. During ESCOMPTE campaign, the mean linear rate of chemical net ozone production at the top of the atmospheric boundary layer was found to be around 6 ppb h~(-1).
机译:ESCOMPTE计划旨在研究工业和城市地区主要污染物的排放,其在大气中的运输,扩散和转化。该实验在法国东南部进行,可用于验证和改进气象和化学中尺度模型。该实验的主要目标是追踪污染物羽流,并研究其热力学和理化时间演变。这是通过恒定体积的气球实现的,该气球由全球定位卫星(GPS)定位,并装有以恒定密度水平飞行的热力学和臭氧传感器。在2000年6月,7月和2001年进行的两次ESCOMPTE运动期间,发射了40个气球,其中17个在白天0800至1800 UTC装有臭氧传感器。在Mistral(天气向北流动)和Sea Breeze(南风)的条件下,气球的高度飞行高度在400至1200m高度之间。实验域的大气边界层(ABL)地形非常复杂,并且每天变化很大。它的深度呈现出从沿海到ESCOMPTE域北部的较大梯度,并且域内的变化也更为复杂。气球的轨迹描述了从Fos-Berre工业区或马赛市区排放的污染物羽流的演变。恒定体积的气球很好地描述了这两个羽流的轨迹。以等野餐水平飞行的气球主要通过与恒定体积气球飞行水平相关的ABL高度,跨越不同的大气层。因此,每个气球飞行被分解为对应于同一大气层的不同部分。在每个部分中,将分析与气球测量的其他热力学参数有关的臭氧含量变化,并且主要与蒸汽混合比含量进行分析。在ESCOMPTE活动期间,发现大气边界层顶部化学净臭氧产生的平均线性速率约为6 ppb h〜(-1)。

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