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首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Applications of quantitative thermal infrared hyperspectral imaging (8-14 mu m): measuring volcanic SO2 mass flux and determining plume transport velocity using a single sensor
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Applications of quantitative thermal infrared hyperspectral imaging (8-14 mu m): measuring volcanic SO2 mass flux and determining plume transport velocity using a single sensor

机译:定量热红外高光谱成像(8-14 mu m)的应用:使用单个传感器测量火山SO2质量磁通和确定羽流量传输速度

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摘要

Remote measurements of sulfur dioxide (SO2) path-concentration and emission rate (mass flux), released by passive volcanic degassing, are a key diagnostic of volcanic behavior. SO2 gas concentrations are also important for public health. Despite the significance of measuring SO2 mass flux at active volcanoes, an accurate method is still very difficult to obtain due largely to uncertainties of plume transport velocities and radiative transfer calculations. Here, we present a new infrared imaging method for deriving SO2 flux at active volcanoes with less than 20% plume transport velocity and radiative transfer uncertainties. The thermal hyperspectral imager (THI) was used for this study. THI is an uncooled remote sensing long-wave thermal infrared (TIR) imaging hyperspectral sensor that can obtain 50 wavelength samples between 8 and 14 mu m. Measurements of SO2 at the summit of Klauea volcano, collected using THI, are presented, where we obtained (for the periods of July 24-26, 2017, and February 5-6, 2018) a SO2 flux raging between 0 and 20kg/s with occasional peaks higher than 40kg/s. The spatial distribution of SO2 path-concentrations was obtained from the THI images by processing them using a newly developed SO2 retrieval algorithm, the SO2 amenable lookup table algorithm (SO2-ALTA). The sampling rate (30Hz) of the microbolometer camera within THI means raw frames can be used for wind velocity derivation. Volcanic plume motion can be thus inferred by tracking plume features in sequential frames using spatial correlation techniques and knowing the camera angular orientation. Volcanic SO2 flux was estimated from the spatial distribution of SO2 and wind velocity. We evaluated temporal trends of the SO2 flux during the day and the night at the summit of Klauea volcano under both clear sky weather with northeasterly trade winds and cloudy sky conditions with low variable wind. These tests showed that the camera and techniques described in this paper provide an effective tool for monitoring SO2 fluxes remotely with less than 20% plume transport velocity and radiative transfer uncertainties and under a variety of background conditions (clear and cloudy sky, cold and hot backgrounds).
机译:通过被动火山脱气释放的二氧化硫(SO2)路径浓度和排放率(质量磁通)的远程测量是火山行为的关键诊断。 SO2气体浓度对于公共卫生也很重要。尽管在活性火山上测量SO2质量通量的重要性,但仍然非常难以基于羽流运输速度和辐射转移计算的不确定性来获得准确的方法。在这里,我们提出了一种新的红外成像方法,用于在活性火山中导出SO2通量,羽流量速度低于20%的流速和辐射转移不确定性。热高光谱成像器(THI)用于本研究。 Thi是一个未冷却的遥感长波热红外(TIR)成像高光谱传感器,可以获得8至14μm之间的50个波长样本。使用Thi收集的Klauea火山峰会的SO2测量,我们获得了我们获得的(2017年7月24日至26日和2月5日至2018年2月5日至6日),在0到20kg / s之间的SO2助焊剂肆虐偶尔峰值高于40kg / s。通过使用新开发的SO2检索算法,SO2可编程查找表算法(SO2-ALTA)来处理SO2路径浓度的空间分布。 THI内的微泡计摄像机的采样率(30Hz)可以使用原始帧来用于风速推导。因此,可以通过使用空间相关技术跟踪顺序帧中的羽毛特征来推断火山羽流动运动,并知道相机角度方向。从SO2和风速的空间分布估计火山SO2磁通量。我们在白天和Klauea火山峰会的夜晚评估了SO2助焊剂的时间趋势,在透明的天气与东北贸易风和多云的天空条件下的透明天气,具有低变风。这些测试表明,本文中描述的相机和技术提供了一种有效的工具,用于远程监测SO2助熔剂,小于20%的羽流运输速度和辐射转移不确定性,并在各种背景条件下(清晰和多云的天空,冷和热的背景)。

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