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The 2015 landslide and tsunami in Taan Fiord Alaska

机译:2015年阿拉斯加塔恩峡湾的滑坡和海啸

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摘要

Glacial retreat in recent decades has exposed unstable slopes and allowed deep water to extend beneath some of those slopes. Slope failure at the terminus of Tyndall Glacier on 17 October 2015 sent 180 million tons of rock into Taan Fiord, Alaska. The resulting tsunami reached elevations as high as 193 m, one of the highest tsunami runups ever documented worldwide. Precursory deformation began decades before failure, and the event left a distinct sedimentary record, showing that geologic evidence can help understand past occurrences of similar events, and might provide forewarning. The event was detected within hours through automated seismological techniques, which also estimated the mass and direction of the slide - all of which were later confirmed by remote sensing. Our field observations provide a benchmark for modeling landslide and tsunami hazards. Inverse and forward modeling can provide the framework of a detailed understanding of the geologic and hazards implications of similar events. Our results call attention to an indirect effect of climate change that is increasing the frequency and magnitude of natural hazards near glaciated mountains.
机译:近几十年来,冰川退缩暴露了不稳定的斜坡,并允许深水在其中一些斜坡下方延伸。 2015年10月17日,廷德尔冰川终点站的斜坡失稳,将1.8亿吨岩石送入阿拉斯加的塔恩峡湾。由此产生的海啸高达193 m,是全球有史以来最高的海啸暴发之一。前兆变形始于破坏之前的几十年,并且该事件留下了独特的沉积记录,表明地质证据可以帮助了解类似事件的过去发生,并可能提供预警。通过自动地震技术在数小时内检测到了该事件,该技术还估计了玻片的质量和方向-所有这些后来都通过遥感确认。我们的现场观察为模拟滑坡和海啸灾害提供了基准。逆向和正向建模可以提供对相似事件的地质和危害隐患的详细理解的框架。我们的结果引起人们对气候变化的间接影响的关注,该影响正在增加冰川山脉附近自然灾害的发生频率和程度。

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