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Continuous monitoring of Hawaiian volcanoes with thermal cameras

机译:用热像仪连续监测夏威夷火山

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Continuously operating thermal cameras are becoming more common around the world for volcano monitoring, and offer distinct advantages over conventional visual webcams for observing volcanic activity. Thermal cameras can sometimes “see” through volcanic fume that obscures views to visual webcams and the naked eye, and often provide a much clearer view of the extent of high temperature areas and activity levels. We describe a thermal camera network recently installed by the Hawaiian Volcano Observatory to monitor Kīlauea’s summit and east rift zone eruptions (at Halema‘uma‘u and Pu‘u ‘ō‘ō craters, respectively) and to keep watch on Mauna Loa’s summit caldera. The cameras are long-wave, temperature-calibrated models protected in custom enclosures, and often positioned on crater rims close to active vents. Images are transmitted back to the observatory in real-time, and numerous Matlab scripts manage the data and provide automated analyses and alarms. The cameras have greatly improved HVO’s observations of surface eruptive activity, which includes highly dynamic lava lake activity at Halema‘uma‘u, major disruptions to Pu‘u ‘ō‘ō crater and several fissure eruptions.
机译:连续运行的热像仪在全球范围内的火山监测中变得越来越普遍,并且在观察火山活动方面比传统的可视网络摄像头具有明显的优势。红外热像仪有时可以“看穿”火山烟,从而遮挡了可视化网络摄像头和肉眼的视线,并且通常可以更清晰地显示高温区域和活动水平的范围。我们描述了一个由夏威夷火山天文台最近安装的热像仪网络,用于监视基拉韦厄山的山顶和东裂谷喷发(分别在哈勒玛玛乌和普奥'ō'ō火山口),并监视莫纳罗阿火山的山顶破火山口。摄像机是在定制外壳中保护的长波,温度校准型号,通常放置在靠近活动通风口的火山口边缘上。图像被实时传输回天文台,大量的Matlab脚本管理数据并提供自动分析和警报。这些摄像机大大改善了HVO对地表喷发活动的观测,其中包括在Halemaʻuma’u的高动态熔岩湖活动,对Pu'u'ō'ō火山口的重大破坏以及几次裂隙喷发。

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