遥感数据(SAR、热、光学)和大地测量模拟在印尼塞默鲁火山火山活动研究中的应用

IF 4.1 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Federico Galetto, Diego Reale, Diego Coppola, Eugenio Sansosti, Matthew E. Pritchard
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引用次数: 0

摘要

塞默鲁火山(印度尼西亚)是一座持续喷发的火山,但其火山活动仍然受到很差的限制。在这里,我们使用了不同遥感数据的组合来提高对塞梅鲁的了解。通过对光学数据(earthdem)衍生的高分辨率(2m)数字高程模型(DEM)进行差分,我们估计2014年至2020年喷发的熔岩体积约为43.5 × 106 m3。来自MIROVA的热数据显示,火山辐射功率和与熔岩流挤压有关的累积火山辐射能(VRE)存在多个峰值。利用合成孔径雷达干涉测量(InSAR)从Sentinel-1数据获得的变形时间序列显示,2014年至2023年,在两个轨道上,东侧的视线位移为负。观测到的位移可以与地表过程有关,也可以与浅层(<2 km)油藏的有限(≤1 × 106 m3)收缩有关,用边界元法建模。我们使用EarthDEM估算的体积来校准VRE,并计算在EarthDEM未涵盖的时期内VRE的熔岩喷发体积,从而允许将来从MIROVA数据中近实时估计体积。随着时间的推移,喷发的大量熔岩显示出一种稳定的活动状态。我们的数据表明,sememeru的持续火山活动是由岩浆系统的深层部分提供的,而可能的浅层储层是热液或短暂的岩浆储层。这项研究强调了在监测和研究不足的火山中使用不同的遥感数据来监测、量化和解释火山活动的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Application of Remote Sensing Data (SAR, Thermal and Optical) and Geodetic Modeling to Investigate the Volcanic Activity at Semeru Volcano (Indonesia)

The Application of Remote Sensing Data (SAR, Thermal and Optical) and Geodetic Modeling to Investigate the Volcanic Activity at Semeru Volcano (Indonesia)

The Application of Remote Sensing Data (SAR, Thermal and Optical) and Geodetic Modeling to Investigate the Volcanic Activity at Semeru Volcano (Indonesia)

The Application of Remote Sensing Data (SAR, Thermal and Optical) and Geodetic Modeling to Investigate the Volcanic Activity at Semeru Volcano (Indonesia)

Semeru (Indonesia) is a persistent eruptive volcano, but its volcanic activity remains poorly constrained. Here we used a combination of different remote sensing data to improve the understanding of Semeru. By differencing high resolution (2m) Digital Elevation Models (DEM) derived from optical data (EarthDEMs), we estimated a bulk volume of ∼43.5 × 106 m3 of lavas erupted from 2014 to 2020. Thermal data from MIROVA show multiple peaks in the volcanic radiative power and in the cumulative Volcanic Radiant Energy (VRE) related with lava flow extrusions. Time series of deformation, obtained with Synthetic Aperture Radar Interferometry (InSAR) from Sentinel-1 data, show on both orbits negative line-of-sight displacements of the SE flank from 2014 to 2023. The observed displacements can be related to surface processes or to a limited (≤1 × 106 m3) deflation of a shallow (<2 km) reservoir, modeled with a Boundary Element Method. We used the volume estimated by EarthDEMs to calibrate the VRE and to calculate the erupted volume of lava from VRE for periods not covered by EarthDEM, allowing in the future the near-real-time estimation of volumes from MIROVA data. Erupted volumes of lava over the time reveal a steady state activity. Our data suggest that the persistent volcanic activity at Semeru is fed by deep portions of the magmatic system, while the possible shallow reservoir is a hydrothermal or an ephemeral magma reservoir. This study highlights the importance of using different remote sensing data to monitor, quantify, and interpret the volcanic activity in poorly monitored and studied volcanoes.

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来源期刊
Journal of Geophysical Research: Solid Earth
Journal of Geophysical Research: Solid Earth Earth and Planetary Sciences-Geophysics
CiteScore
7.50
自引率
15.40%
发文量
559
期刊介绍: The Journal of Geophysical Research: Solid Earth serves as the premier publication for the breadth of solid Earth geophysics including (in alphabetical order): electromagnetic methods; exploration geophysics; geodesy and gravity; geodynamics, rheology, and plate kinematics; geomagnetism and paleomagnetism; hydrogeophysics; Instruments, techniques, and models; solid Earth interactions with the cryosphere, atmosphere, oceans, and climate; marine geology and geophysics; natural and anthropogenic hazards; near surface geophysics; petrology, geochemistry, and mineralogy; planet Earth physics and chemistry; rock mechanics and deformation; seismology; tectonophysics; and volcanology. JGR: Solid Earth has long distinguished itself as the venue for publication of Research Articles backed solidly by data and as well as presenting theoretical and numerical developments with broad applications. Research Articles published in JGR: Solid Earth have had long-term impacts in their fields. JGR: Solid Earth provides a venue for special issues and special themes based on conferences, workshops, and community initiatives. JGR: Solid Earth also publishes Commentaries on research and emerging trends in the field; these are commissioned by the editors, and suggestion are welcome.
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