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The structure of composite volcanoes unravelled by analogue modelling: A review

机译:模拟建模揭示的复合火山结构:综述

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Volcanic edifices are unstable accumulations of eruptive and intrusive products with complex internal structures. A documentation of these structures facilitates the assessing of the various hazards associated with volcanoes, e.g. flanks instabilities and eruptive events. However, structures are not easily assessed in the field, as volcanoes are regularly covered by eruptive products and are rapidly eroded. In the case of recent and active volcanoes, internal structures are generally extrapolated from the external morphology of the edifice, which can be documented using Digital Elevation Models (DEM) and geodetic data. Interpretation of such data greatly benefits from analogue models, which are idealised representations of reality used to test the impact that various processes may have on the shape of a volcanic edifice. This short review focuses on the contribution of analogue models to our comprehension of the internal structure of composite volcanic cones. The other volcanic morphologies (e.g. caldera) are excluded from this review, as they have distinct structure and evolution that have already been thoroughly reviewed. The reviewed models were used to investigate the impact that regional faults, magma injections and ductile substratum, among other processes, have on the internal structure and surface morphology of many volcanic edifices. These models were also used to locate unstable flanks and eruption sites.
机译:火山大厦是内部结构复杂的喷发性和侵入性产品的不稳定堆积。这些结构的文档有助于评估与火山相关的各种危害,例如火山爆发。侧面不稳定和爆发事件。但是,由于火山经常被火山喷发物覆盖并迅速被侵蚀,因此在野外很难对建筑物进行评估。对于近期活跃的火山,通常从建筑物的外部形态推断内部结构,这可以使用数字高程模型(DEM)和大地测量数据进行记录。此类数据的解释从模拟模型中受益匪浅,模拟模型是现实的理想表示形式,用于测试各种过程可能对火山大厦形状的影响。这篇简短的评论着重于模拟模型对我们理解复合火山锥内部结构的贡献。其他火山形态(例如火山口)被排除在外,因为它们具有独特的结构和演化,已经被彻底审查过。审查的模型用于调查区域断层,岩浆注入和韧性基底等对许多火山岩的内部结构和表面形态的影响。这些模型还用于定位不稳定的侧翼和喷发部位。

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