首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Studying monogenetic volcanoes with a terrestrial laser scanner: case study at Croscat volcano (Garrotxa Volcanic Field, Spain)
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Studying monogenetic volcanoes with a terrestrial laser scanner: case study at Croscat volcano (Garrotxa Volcanic Field, Spain)

机译:用陆地激光扫描仪研究单基因火山:Croscat火山的案例研究(西班牙Garrotxa火山场)

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Erosional processes (natural or anthropogenic) may partly destroy the relatively small-sized volcanic edifices characteristic of monogenetic volcanic zones, leaving their internal structure well exposed. Nevertheless, the study of these outcrops may be extremely challenging due to restricted accessibility or safety issues. Digital representations of the outcrop surface have been lately used to overcome such difficulties. Data acquired with terrestrial laser scanning instruments using Light Detection and Ranging technology enables the construction of such digital outcrops. The obtained high-precision 3-D terrain models are of greater coverage and accuracy than conventional methods and, when taken at different times, allow description of geological processes in time and space. Despite its intrinsic advantages and the proven satisfactory results, this technique has been little applied in volcanology-related studies. Here, we want to introduce it to the volcanological community together with a new and user-friendly digital outcrop analysis methodology for inexperienced users. This tool may be useful, not only for volcano monitoring purposes, but also to describe the internal structure of exposed volcanic edifices or to estimate outcrop erosion rates that may be helpful in terms of hazard assessment or preservation of volcanic landscapes. We apply it to the Croscat volcano, a monogenetic cone in the La Garrotxa Volcanic Field (Catalan Volcanic Zone, NE Spain), quarrying of which leads to a perfect view of its interior but restricts access to its uppermost parts. Croscat is additionally one of the most emblematic symbols of the La Garrotxa Volcanic Field Natural Park, and its preservation is a main target of the park administration.
机译:侵蚀过程(自然的或人为的)可能会部分破坏单基因火山区的相对较小的火山构造,从而使其内部结构暴露在外。然而,由于出入受限或安全问题,对这些露头的研究可能极具挑战性。最近已经使用露头表面的数字表示法来克服这种困难。使用光检测和测距技术通过地面激光扫描仪获取的数据可以构建此类数字露头。与传统方法相比,所获得的高精度3-D地形模型具有更大的覆盖范围和精度,并且在不同时间获取时,可以描述时间和空间上的地质过程。尽管具有固有的优势和已证明的令人满意的结果,但该技术在与火山学有关的研究中很少应用。在这里,我们想将它与针对经验不足的用户的新的,用户友好的数字露头分析方法一起介绍给火山学界。该工具不仅可以用于火山监测目的,而且可以描述裸露的火山建筑物的内部结构或估算露头侵蚀速率,这可能对危害评估或保护火山景观很有帮助。我们将其应用于Croscat火山,这是La Garrotxa火山场(西班牙NE卡塔兰火山区)中的单系圆锥体,对其进行采石可以使内部景观尽收眼底,但限制了其最上部的进入。克罗斯卡特(Croscat)也是拉加罗塔(La Garrotxa)火山场自然公园的最具象征意义的标志之一,对其的保存是公园管理的主要目标。

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