期刊论文详细信息
Remote Sensing
Satellite and Ground Based Thermal Observation of the 2014 Effusive Eruption at Stromboli Volcano
Klemen Zakᘞk3  Matthias Hort3  Eckehard Lorenz2  Zhong Lu1  Peter Webley1 
[1] Institute of Geophysics, Center for Earth System Research and Sustainability, University of Hamburg, Bundesstraße 55, Hamburg D-20146, GermanyGerman Aerospace Center, Optical Information Systems, Rutherfordstraße 2, Berlin D-12489, Germany;Institute of Geophysics, Center for Earth System Research and Sustainability, University of Hamburg, Bundesstraße 55, Hamburg D-20146, Germany;
关键词: volcanic thermal anomalies;    lava flow;    time averaged lava discharge rate;    Stromboli;    small satellites;    TET-1;   
DOI  :  10.3390/rs71215876
来源: mdpi
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【 摘 要 】

As specifically designed platforms are still unavailable at this point in time, lava flows are usually monitored remotely with the use of meteorological satellites. Generally, meteorological satellites have a low spatial resolution, which leads to uncertain results. This paper presents the first long term satellite monitoring of active lava flows on Stromboli volcano (August–November 2014) at high spatial resolution (160 m) and relatively high temporal resolution (~3 days). These data were retrieved by the small satellite Technology Experiment Carrier-1 (TET-1), which was developed and built by the German Aerospace Center (DLR). The satellite instrument is dedicated to high temperature event monitoring. The satellite observations were accompanied by field observations conducted by thermal cameras. These provided short time lava flow dynamics and validation for satellite data. TET-1 retrieved 27 datasets over Stromboli during its effusive activity. Using the radiant density approach, TET-1 data were used to calibrate the MODVOLC data and estimate the time averaged lava discharge rate. With a mean output rate of 0.87 m3/s during the three-month-long eruption, we estimate the total erupted volume to be 7.4 × 106 m3.

【 授权许可】

CC BY   
© 2015 by the authors; licensee MDPI, Basel, Switzerland.

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