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Preliminary Evaluation of Volcanic Flank Stability Using Finite Difference Modeling: Citlaltepetl Volcano, Mexico

机译:利用有限差异造型火山侧翼稳定性的初步评价:墨西哥葡萄酒群火山火山

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Catastrophic volcanic collapses (avalanches) behave mechanically as large-scale landslides. We present a geomechanical study evaluating potential failures of volcanic edifices, by creating two-dimensional numerical models for Citlaltepetl volcano, Mexico. The numerical models were constrained by using the distribution and strength of the involved materials, and the inferred preferential dyke strikes, Through finite element analysis we model two different geological aspects that, according to geological studies at Citlaltepetl, could trigger the most recent collapse: water percolation from snowmelt and strength reduction by hydrothermal alteration. Geological reconstructions and characteristics of previous constructive volcanic stages were used to assess which of the two input parameters dominates the failure process. We modeled the volcano stability while the changing rock mass strength and the extension of the hydrothermally altered zone, in presence and absence of a pore water pressure distribution. We examined the resulting strain conditions and concluded that, at Citlatepetl, the hydrothermal alteration by itself is the dominant process that defines the unstable zones. The presence of water reduces the general stability for the same dry critical zones.
机译:灾难性的火山岩坍塌(雪崩)在机械上表现为大规模的山体滑坡。我们通过为Citlealtepetl火山火山,墨西哥创建二维数值模型,提出了一种地质力学研究评估了火山互联的失败。通过使用所涉及的材料的分配和强度,通过有限元分析来限制数值模型,通过有限元分析,我们模拟了两个不同的地质方面,根据葡萄牙群岛的地质研究,可能会引发最近的崩溃:水通过水热改变从散雪和强度降低的渗透。先前建设性火山级的地质重建和特征用于评估两个输入参数中哪一个主导故障过程。在存在和不存在孔隙水压力分布的情况下,我们建模了火山稳定性,同时改变岩体质量强度和水热改变区域的延伸。我们检查了所产生的应变条件并得出结论,在北美洲竞争竞争对手,水热改变本身是定义不稳定区域的主要过程。水的存在降低了相同干燥关键区的一般稳定性。

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