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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Geomorphology, lithofacies, and block characteristics to determine the origin, and mobility, of a debris avalanche deposit at Apacheta-Aguilucho Volcanic Complex (AAVC), northern Chile
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Geomorphology, lithofacies, and block characteristics to determine the origin, and mobility, of a debris avalanche deposit at Apacheta-Aguilucho Volcanic Complex (AAVC), northern Chile

机译:智利北部阿帕达塔-阿吉卢乔火山群(AAVC)的雪崩沉积物的地貌,岩相和块体特征,以确定其成因和流动性

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摘要

Understanding the evolution of a volcanic edifice is important in establishing its associated geological hazards. Apacheta and Aguilucho volcanoes, northern Chile, formed a volcanic complex with known fumaroles and geo-thermal potential. Among the products resulting from the evolution of the Apacheta-Aguilucho Volcanic Complex (AAVC), a new volcanoclastic deposit has been recognized towards the eastern flank of the volcanic complex. This deposit is constituted by fragments of andesitic-to-dacitic lava and hydrothermally altered lava blocks. These fragments, which reach up to 5 m in diameter, form geomorphological structures such as hummocks, levees and ridges. Using these geomorphological characteristics, the distribution of the main lithological fades (or lithofacies), and fragment features (jigsaw cracks and impact marks), we proposed that this deposit was generated by a debris avalanche. This debris avalanche was triggered by partial collapse of an ancestral volcanic edifice occurred between 100 and 7001 a. The collapse of the AAVC ancestral edifice was influenced by hydrothermal alteration and the extensional tectonic setting that characterize the Cerro Pabellon Dome area. The mobility of the avalanche, and the genesis of the main geomorphological features associated with the deposit, are related to fragmentation of material during avalanche genesis and movement. (C) 2017 Elsevier B.V. All rights reserved.
机译:了解火山建筑物的演变对于确定其相关的地质灾害非常重要。智利北部的Apacheta和Aguilucho火山形成了一个火山岩群,具有已知的喷气孔和地热潜力。在由阿帕奇塔-阿吉卢乔火山综合体(AAVC)演变而来的产品中,已认识到向该火山综合体东侧的新火山碎屑沉积物。该沉积物是由安山岩至大洋熔岩的碎片和热液蚀变的熔岩块组成的。这些碎片的直径可达5 m,形成了诸如山岗,堤防和山脊的地貌结构。利用这些地貌特征,主要岩性褪色(或岩相)的分布以及碎片特征(竖锯裂缝和撞击痕迹),我们提出该矿床是由碎屑雪崩产生的。这种碎片雪崩是由100至7001 a之间发生的祖先火山大厦的部分塌陷触发的。 AAVC祖先大厦的倒塌受Cerro Pabellon Dome地区特征的热液蚀变和伸展构造环境的影响。雪崩的活动性以及与矿床有关的主要地貌特征的发生与雪崩发生和运动过程中物质的破碎有关。 (C)2017 Elsevier B.V.保留所有权利。

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