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Thermal photogrammetric imaging:a new technique for monitoring dome eruptions

机译:热摄影测量成像:一种监测穹顶喷发的新技术

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摘要

Structure-from-motion (SfM) algorithms greatly facilitate the generation of 3-D topographic models from photographs and can form a valuable component of hazard monitoring at active volcanic domes. However, model generation from visible imagery can be prevented due to poor lighting conditions or surface obscuration by degassing. Here, we show that thermal images can be used in a SfM workflow to mitigate these issues and provide more continuous time-series data than visible counterparts. We demonstrate our methodology by producing georeferenced photogrammetric models from 30 near-monthly overflights of the lava dome that formed at Volcán de Colima (Mexico) between 2013 and 2015. Comparison of thermal models with equivalents generated from visible-light photographs from a consumer digital single lens reflex (DSLR) camera suggests that, despite being less detailed than their DSLR counterparts, the thermal models are more than adequate reconstructions of dome geometry, giving volume estimates within 10% of those derived using the DSLR. Significantly, we were able to construct thermal models in situations where degassing and poor lighting prevented the construction of models from DSLR imagery, providing substantially better data continuity than would have otherwise been possible. We conclude that thermal photogrammetry provides a useful new tool for monitoring effusive volcanic activity and assessing associated volcanic risks.
机译:运动结构(SfM)算法极大地促进了从照片生成3-D地形模型的过程,并且可以构成活动火山穹顶危险监测的重要组成部分。但是,由于不良的光照条件或脱气导致的表面遮盖,可以防止从可见图像生成模型。在这里,我们表明,热图像可以在SfM工作流程中使用,以减轻这些问题并提供比可见副本更大的连续时间序列数据。我们通过在2013年至2015年之间在墨西哥沃尔坎德科利马(Volcánde Colima)形成的熔岩穹顶的近30次近月飞越飞行中生成地理参考摄影测量模型,来论证我们的方法。比较热模型与消费者数字单张可见光照片产生的等效模型镜头反射(DSLR)摄像机表明,尽管其热模型不如DSLR同类产品详细,但其热模型足以对圆顶几何结构进行充分的重构,因此其体积估算值可与使用DSLR得出的估算值相差10%以内。重要的是,在脱气和照明不佳的情况下,我们能够构建热模型,从而无法从DSLR图像中构建模型,从而提供了比以前更好的数据连续性。我们得出的结论是,热摄影测量法提供了一个有用的新工具,用于监视火山喷发活动和评估相关的火山风险。

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