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French airborne lidar measurements for Eyjafjallaj?kull ash plume survey

机译:法国机载激光雷达测量Eyjafjallaj?kull灰烟羽测量

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摘要

An Ultra-Violet Rayleigh-Mie lidar has been integrated aboard the French research aircraft Falcon20 in order to monitor the ash plume emitted by the Eyjafjallaj?kul volcano in April-May 2010. Three operational flights were carried out on 21 April, 12 and 16 May 2010 inside French, Spanish and British air spaces, respectively. The original purpose of the flights was to provide the French civil aviation authorities with objective information on the presence and location of the ash plume. The present paper presents the results of detailed analyses elaborated after the volcano crisis. They bear on the structure of the ash clouds and their optical properties such as the extinction coefficient and the lidar ratio. Lidar ratios were measured in the range of 43 to 50 sr, in good agreement with the ratios derived from ground-based lidar near Paris (France) in April 2010 (~48 sr). The ash signature in terms of particulate depolarization was consistent during all flights (between 34 ± 3 % and 38 ± 3%). Such a value seems to be a good identification parameter for volcanic ash. Using specific cross-sections between 0.19 and 1.1 m ~2 g ~(-1), the minimum (maximal) mass concentrations in the ash plumes derived for the flights on 12 and 16 May were 140 (2300) and 250 (1500) μg m ~(-3), respectively. It may be rather less than, or of the order of the critical level of damage (2 mg m ~(-3)) for the aircraft engines, but well above the 200 μg m ~(-3) warning level.
机译:为了研究2010年4月至5月Eyjafjallaj?kul火山散发的烟灰,法国研究飞机Falcon20上已安装了紫外线雷利米激光雷达。在4月21日,12日和16日进行了3次飞行2010年5月分别在法国,西班牙和英国的领空内。飞行的最初目的是向法国民航当局提供有关烟灰羽流的存在和位置的客观信息。本文介绍了火山危机后详细分析的结果。它们取决于灰云的结构及其光学特性,例如消光系数和激光雷达比。测得的激光雷达比率在43至50 sr的范围内,与2010年4月在法国巴黎附近的地面激光雷达得出的比率(约48 sr)非常吻合。在所有飞行中,就颗粒去极化而言,灰分特征是一致的(在34±3%和38±3%之间)。该值似乎是火山灰的良好识别参数。使用介于0.19和1.1 m〜2 g〜(-1)之间的特定横截面,5月12日和16日的飞行所产生的烟灰柱中的最小(最大)质量浓度为140(2300)和250(1500)μg m〜(-3)。它可能小于或接近飞机发动机的临界损坏水平(2 mg m〜(-3)),但远高于200μgm〜(-3)的警告水平。

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