German Aerospace Center (DLR), Earth Observation Center, 82234, Oberpfaffenhofen, Germany.
GFZ German Research Centre for Geosciences, Telegrafenberg, 14473, Potsdam, Germany.
Sci Rep. 2023 Feb 4;13(1):2057. doi: 10.1038/s41598-023-29061-6.
Determining outline, volume and effusion rate during an effusive volcanic eruption is crucial as it is a major controlling factor of the lava flow lengths, the prospective duration and hence the associated hazards. We present for the first time a multi-sensor thermal-and-topographic satellite data analysis for estimating lava effusion rates and volume. At the 2021 lava field of Cumbre Vieja, La Palma, we combine VIIRS + MODIS thermal data-based effusion rate estimates with DSMs analysis derived from optical tri-stereo Pléiades and TanDEM-X bi-static SAR-data. This multi-sensor-approach allows to overcome limitations of single-methodology-studies and to achieve both, high-frequent observation of the relative short-term effusion rate trends and precise total volume estimates. We find a final subaerial-lava volume of [Formula: see text] with a MOR of 28.8 ± 1.4 m/s. We identify an initially sharp eruption-rate-peak, followed by a gradually decreasing trend, interrupted by two short-lived-peaks in mid/end November. High eruption rate accompanied by weak seismicity was observed during the early stages of the eruption, while during later stage the lava effusion trend coincides with seismicity. This article demonstrates the geophysical monitoring of eruption rate fluctuations, that allows to speculate about changes of an underlying pathway during the 2021 Cumbre Vieja eruption.
确定喷发期的熔岩流量、体积和涌出速度至关重要,因为它是控制熔岩流长度、预期持续时间以及相关危害的主要因素。我们首次提出了一种多传感器热地形卫星数据分析方法,用于估算熔岩涌出率和体积。在 2021 年拉帕尔马的 Cumbre Vieja 熔岩场,我们结合了基于 VIIRS+MODIS 热数据的涌出率估算值和 DSMs 分析,该 DSMs 分析源自光学三立体 Pleiades 和 TanDEM-X 双静态 SAR 数据。这种多传感器方法可以克服单一方法研究的局限性,并实现对相对短期涌出率趋势的高频观测和精确的总体积估算。我们发现最终的陆上熔岩体积为[公式:见正文],熔岩流量为 28.8±1.4 m/s。我们发现喷发率最初有一个急剧的峰值,随后逐渐下降,在 11 月中旬/末期出现两个短暂的峰值。在喷发的早期阶段,观测到高喷发率伴随着微弱的地震活动,而在后期阶段,熔岩涌出趋势与地震活动一致。本文展示了对喷发率波动的地球物理监测,这使得我们可以推测 2021 年 Cumbre Vieja 喷发期间下方通道的变化。