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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Using TanDEM-X to measure pyroclastic flow source location, thickness and volume: Application to the 3rd June 2018 eruption of Fuego volcano, Guatemala
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Using TanDEM-X to measure pyroclastic flow source location, thickness and volume: Application to the 3rd June 2018 eruption of Fuego volcano, Guatemala

机译:使用Tandem-X来测量Pyroclastic流源位置,厚度和体积:应用于2018年6月3日的Fuego火山,危地马拉

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The estimation of the volume of volcanic flows during an ongoing eruption is challenging but this information is crucial for improving risk assessment and for forecasting future events. Although previous studies have shown the ability of TanDEM-X satellite data to derive the thickness and the volume of lava flow fields during effusive eruptions, the method has not been explored yet for pyroclastic flows. Using bi-static interferometry, we produce TanDEM-X DEM on Fuego volcano (Guatemala) to measure the significant topographic changes caused by the 3rd June 2018 eruption, which destroyed the town of San Miguel Los Lotes. We estimate the volume of the Pyroclastic Density Currents (PDCs) to be 15.1 +/- 4.2 x 10(6) m(3). The deposits are likely to be the source of lahars during future rainy seasons. We identify the main channel of deposition (positive elevation changes) and the source region of pyroclastic material, areas of significant substrate erosion, and vegetation destruction (negative elevation changes). Our results show that the June 3rd 2018 pyroclastic flow was predominantly composed of material which had gravitationally collapsed from a location close to the vent. The eroded material increased the volume of the flow (bulking) and likely caused the run-out distance of the 2018 PDC to be larger than previous eruptions (1999-2017). This study highlights the potential of remote sensing techniques for actively monitoring topography changes in inaccessible locations and to rapidly derive deposit volumes. (C) 2020 The Authors. Published by Elsevier B.V.
机译:在持续的爆发期间估计火山流量的体积是挑战性的,但这些信息对于改善风险评估和预测未来事件至关重要。尽管以前的研究表明了串联X卫星数据的能力,但在散发过程中导出熔岩流场的厚度和体积,但该方法尚未探索用于发动机流量。使用双静态干涉测量学,我们在Fuego火山(危地马拉)上产生Tandem-X DEM,以衡量2018年6月3日爆发的显着的地形变化,摧毁了San Miguel Los Lotes镇。我们估计吡焦密度电流(PDC)的体积为15.1 +/- 4.2×10(6)m(3)。存款可能是未来雨季骆驼的来源。我们识别沉积的主通道(阳性升高变化)和发热材料的源区,显着的基底侵蚀区域和植被破坏(负升高变化)。我们的研究结果表明,2018年6月3日吡焦流量主要由具有从靠近通风口的位置折叠的材料组成。侵蚀的材料增加了流量(膨胀)的体积,并且可能导致2018 PDC的跑射距离大于先前的喷发(1999-2017)。本研究强调了遥感技术的潜力,用于积极监控无法访问的地点的变化以及快速推出存款体积。 (c)2020作者。由elsevier b.v出版。

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