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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Intercomparison of SO2 camera systems for imaging volcanic gas plumes
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Intercomparison of SO2 camera systems for imaging volcanic gas plumes

机译:SO2照相机系统对火山气羽成像的比对

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SO2 camera systems are increasingly being used to image volcanic gas plumes. The ability to derive SO2 emission rates directly from the acquired imagery at high time resolution allows volcanic process studies that incorporate other high time-resolution datasets. Though the general principles behind the SO2 camera have remained the same for a number of years, recent advances in CCD technology and an improved understanding of the physics behind the measurements have driven a continuous evolution of the camera systems. Here we present an intercomparison of seven different SO2 cameras. In the first part of the experiment, the various technical designs are compared and the advantages and drawbacks of individual design options are considered. Though the ideal design was found to be dependent on the specific application, a number of general recommendations are made. Next, a time series of images recorded by all instruments at Stromboli Volcano (Italy) is compared. All instruments were easily able to capture SO2 clouds emitted from the summit vents. Quantitative comparison of the SO2 load in an individual cloud yielded an intra-instrument precision of about 12%. From the imagery, emission rates were then derived according to each group's standard retrieval process. A daily average SO2 emission rate of 61 +/- 10 t/d was calculated. Due to differences in spatial integration methods and plume velocity determination, the time-dependent progression of SO2 emissions varied significantly among the individual systems. However, integration over distinct degassing events yielded comparable SO2 masses. Based on the intercomparison data, we find an approximate 1-sigma precision of 20% for the emission rates derived from the various SO2 cameras. Though it may still be improved in the future, this is currently within the typical accuracy of the measurement and is considered sufficient for most applications. Published by Elsevier B.V.
机译:SO2摄像机系统越来越多地用于对火山气柱成像。直接从获取的图像中以高分辨率获得SO2排放速率的能力使得火山过程研究能够纳入其他高分辨率的数据集。尽管SO2摄像机的基本原理多年来一直保持不变,但CCD技术的最新进展以及对测量背后的物理原理的加深了解推动了摄像机系统的不断发展。在此,我们将对七个不同的SO2摄像机进行比较。在实验的第一部分中,比较了各种技术设计,并考虑了各个设计方案的优缺点。尽管发现理想的设计取决于特定的应用,但仍提出了一些一般性建议。接下来,比较由斯特隆博利火山(意大利)的所有仪器记录的图像的时间序列。所有仪器都能够轻松捕获从山顶喷口排放的SO2云。单个云中SO2负载的定量比较得出仪器内部精度约为12%。然后从图像中根据每个小组的标准检索过程得出排放率。计算得出的每日平均SO2排放速率为61 +/- 10 t / d。由于空间积分方法和羽流速度确定方法的差异,各个系统中SO2排放随时间的变化很大。但是,在不同的脱气事件上进行整合产生了可比的SO2质量。根据比对数据,我们发现从各种SO2摄像机得出的发射率的1σ精度约为20%。尽管将来可能仍会有所改进,但这目前在典型的测量精度范围内,并被认为足以满足大多数应用的需要。由Elsevier B.V.发布

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