首页> 外文期刊>Journal of Volcanology and Geothermal Research >Retrieval and intercomparison of volcanic SO2 injection height and eruption time from satellite maps and ground-based observations
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Retrieval and intercomparison of volcanic SO2 injection height and eruption time from satellite maps and ground-based observations

机译:通过卫星地图和地面观测资料检索和比较火山喷入的SO2高度和喷发时间

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摘要

Syneruptive gas flux time series can, in principle, be retrieved from satellite maps of SO2 collected during and immediately after volcanic eruptions, and used to gain insights into the volcanic processes which drive the volcanic activity. Determination of the age and height of volcanic plumes are key prerequisites for such calculations. However, these parameters are challenging to constrain using satellite-based techniques. Here, we use imagery from OMI and GOME-2 satellite sensors and a novel numerical procedure based on back-trajectory analysis to calculate plume height as a function of position at the satellite measurement time together with plume injection height and time at a volcanic vent location. We applied this new procedure to three Etna eruptions (12 August 2011, 18 March 2012 and 12 April 2013) and compared our results with independent satellite and ground-based estimations. We also compare our injection height time-series with measurements of volcanic tremor, which reflects the eruption intensity, showing a good match between these two datasets. Our results are a milestone in progressing towards reliable determination of gas flux data from satellite-derived SO2 maps during volcanic eruptions, which would be of great value for operational management of explosive eruptions. (C) 2017 Elsevier B.V. All rights reserved.
机译:协同气体通量时间序列原则上可以从火山爆发期间和火山爆发之后收集的SO2卫星地图中检索出来,并用于深入了解驱动火山活动的火山过程。确定火山羽流的年龄和高度是进行此类计算的关键前提。但是,使用基于卫星的技术来约束这些参数具有挑战性。在这里,我们使用来自OMI和GOME-2卫星传感器的图像以及基于反向轨迹分析的新颖数值程序来计算作为卫星测量时间位置函数的羽流高度,以及羽流注入高度和火山口位置的时间。 。我们将此新程序应用于3次埃特纳火山喷发(2011年8月12日,2012年3月18日和2013年4月12日),并将我们的结果与独立的卫星和地面估算结果进行了比较。我们还将注射高度时间序列与火山震颤的测量值进行了比较,反映了火山喷发的强度,显示出这两个数据集之间的良好匹配。我们的结果是在火山喷发过程中可靠确定来自卫星SO2图的气体通量数据方面的一个里程碑,这对于爆炸喷发的运营管理将具有重要价值。 (C)2017 Elsevier B.V.保留所有权利。

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