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Volcano surveillance using infrared cameras

机译:使用红外摄像机进行火山监控

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摘要

Volcanic eruptions are commonly preceded, accompanied, and followed by variations of a number of detectable geophysical and geochemical manifestations. Many remote sensing techniques have been applied to tracking anomalies and eruptive precursors, and monitoring ongoing volcanic eruptions, offering obvious advantages over in situ techniques especially during hazardous activity. Whilst spaceborne instruments provide a distinct advantage for collecting data remotely in this regard, they still cannot match the spatial detail or time resolution achievable using portable imagers on the ground or aircraft. Hand-held infrared camera technology has advanced significantly over the last decade, resulting in a proliferation of commercially available instruments, such that volcano observatories are increasingly implementing them in monitoring efforts. Improved thermal surveillance of active volcanoes has not only enhanced hazard assessment but it has contributed substantially to understanding a variety of volcanic processes. Drawing on over a decade of operational volcano surveillance in Italy, we provide here a critical review of the application of infrared thermal cameras to volcano monitoring. Following a summary of key physical principles, instrument capabilities, and the practicalities and methods of data collection, we discuss the types of information that can be retrieved from thermal imagery and what they have contributed to hazard assessment and risk management, and to physical volcanology. With continued developments in thermal imager technology and lower instrument costs, there will be increasing opportunity to gather valuable observations of volcanoes. It is thus timely to review the state of the art and we hope thereby to stimulate further research and innovation in this area.
机译:火山喷发通常发生在许多可探测的地球物理和地球化学表现的变化之前,伴随和之后。许多遥感技术已被用于跟踪异常和喷发的先兆,并监测正在进行的火山喷发,与现场技术相比,尤其是在危险活动期间,它具有明显的优势。尽管在这方面,星载仪器为远程收集数据提供了明显的优势,但它们仍然无法与使用地面或飞机上的便携式成像仪实现的空间细节或时间分辨率相匹配。在过去的十年中,手持式红外热像仪技术取得了长足的进步,导致了商用仪器的泛滥,因此火山观测台在监测工作中越来越多地采用它们。改进的活火山的热监测不仅增强了危害评估,而且为理解各种火山过程做出了巨大贡献。借助意大利十多年的火山监测工作,我们在这里对红外热像仪在火山监测中的应用进行了重点回顾。在总结了关键物理原理,仪器功能以及数据收集的实用性和方法之后,我们讨论了可以从热成像中检索到的信息类型,以及它们对危害评估和风险管理以及物理火山学的贡献。随着热像仪技术的不断发展和仪器成本的降低,将有更多的机会收集有价值的火山观测资料。因此,适时地审查最新技术水平,我们希望由此激发该领域的进一步研究和创新。

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