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Identification of structural controls in an active lava dome with high resolution DEMs:Volcán de Colima, Mexico

机译:使用高分辨率DEM识别活动熔岩穹顶中的结构控制:墨西哥沃尔坎德科利马

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摘要

Monitoring the topography of active lava domes is critical for detecting changes that may trigger or influence collapse or explosive activity. Internal dome structure and conditions are more difficult to elucidate, but also play vital roles. Here, we describe the exposure (following an explosion) of significant scarps in the active dome at Volcán de Colima, Mexico, that are interpreted as evidence of brittle failure planes and a complex internal dome morphology. In the first use of automated 3D computer vision reconstruction techniques (structure-from-motion and multi-view stereo, SfM-MVS) on an active volcanic dome, we derive high resolution surface models from oblique and archive photographs taken with a consumer camera. The resulting 3D models were geo-referenced using features identified in a web-sourced orthoimage; no ground-based measurements were required. In December 2010, the dome (2.14×106 m3) had a flat upper surface, reflecting an overall ductile emplacement regime. Between then and May 2011, a period of low explosivity was accompanied by a small volume loss (0.4×105 m3) and arcuate steps appeared in the dome surface, suggesting the presence of localized planes of weakness. The complex array of summit scarps was exposed following a significant explosion in June 2011, and is interpreted to be the surface expression of fault planes in the dome. The 1-m resolution DEMs indicated that the region of greatest volume loss was not coincident with the assumed location of the conduit, and that heterogeneity within the dome may have been important during the June explosion.
机译:监测活动熔岩穹顶的地形对于检测可能触发或影响坍塌或爆炸活动的变化至关重要。内部圆顶的结构和条件更难以阐明,但也起着至关重要的作用。在这里,我们描述了墨西哥Volcánde Colima的活动圆顶中显着的毛刺暴露(爆炸之后),这被解释为脆性破坏平面和复杂的内部圆顶形态的证据。在活动的火山圆顶上首次使用自动3D计算机视觉重建技术(从运动结构和多视图立体结构,SfM-MVS)时,我们从用家用相机拍摄的倾斜照片和存档照片中获得高分辨率的表面模型。使用通过网络获取的正射影像中确定的特征对生成的3D模型进行地理参考;无需地面测量。 2010年12月,圆顶(2.14×106 m3)的上表面平坦,反映出整体的延性安置状态。在此期间至2011年5月之间,爆破期较低,体积损失较小(0.4×105 m3),拱顶表面出现弧形台阶,表明存在弱化局部平面。在2011年6月发生重大爆炸后,山顶陡峭的山峰错综复杂,暴露出来,并被解释为穹顶中断层平面的表面表现。分辨率为1 m的DEM表示最大体积损失的区域与假定的导管位置不一致,并且圆顶内部的异质性在六月爆炸期间可能很重要。

著录项

  • 作者

    James Michael; Varley Nick;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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