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Modeling unusual eruptive behavior of Mt. Etna, Italy, by means of event bush

机译:模拟山的异常爆发行为。意大利埃特纳火山,通过活动灌木丛

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摘要

One of the best-studied volcanoes of the world, Mt. Etna in Sicily, repeatedly exhibits eruptive scenarios that depart from the behavior commonly considered typical for this volcano. Episodes of intense explosive activity, pyroclastic flows, dome growth and cone collapse pose a variety of previously underestimated threats to human lives in the summit area of the volcano. However, retrospective analysis of these events shows that they were likely caused by the same very sets of premises and starting conditions as "normal" eruptions, yet combined in an unexpected, probably unique, way. To cope with such unexpected consequences, we involve an approach of artificial intelligence developed specially for needs of the geosciences, the event bush. Scenarios inferred from the event bush fit the observed ones and allow to foresee other low-probability events that may occur at the volcano. Application of the event bush provides a more impartial vision of volcanic phenomena and may serve as an intermediary between expert knowledge and numerical assessment, e.g., by means of Bayesian Belief Networks.
机译:世界上研究最多的火山之一西西里岛的埃特纳火山(Etna)反复展现出喷发的情景,与通常认为该火山典型的行为背道而驰。激烈的爆炸活动,火山碎屑流,穹顶生长和圆锥体坍塌,对火山顶峰地区的人类生命构成了各种先前被低估的威胁。但是,对这些事件的回顾分析表明,它们很可能是由与“正常”爆发相同的前提和开始条件造成的,但以意想不到的,可能是独特的方式结合在一起。为了应对此类意外后果,我们采用了专门为满足地球科学和事件丛的需求而开发的人工智能方法。从事件丛中推断出的场景与观察到的场景相吻合,并可以预见可能在火山中发生的其他低概率事件。事件灌木丛的应用提供了关于火山现象的更加公正的视野,并且可以充当专家知识与数值评估之间的中介,例如借助贝叶斯信念网络。

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