2005•Geophysical Research LettersRequires access

Coupled thermal oscillations in explosive activity at different craters of Stromboli volcano

Maurizio Ripepe, Andrew J. L. Harris, Emanuele Marchetti

Open publisher page 35 citations

Abstract

Thermal infrared thermometers deployed ∼250 m from Stromboli's active craters can detect thermal emissions during strombolian explosions. Explosions appear as spikes in thermal time series, with variations in the mass erupted during each event revealed by pulses in the time series. During May 2001, Stromboli's NE and SW craters showed consistently different thermal signatures. SW crater events were characterized by long lasting (>10 s), higher amplitude thermal signals with significant fluctuations, whereas the NE crater was characterized by short (<5 s), impulsive, lower amplitude signatures. The two craters showed well‐correlated variations in thermal amplitude evolving over periods of several hours and providing strong evidence for linkage of the craters to a common feeding system affected by cyclic processes that drive steady variations in the style of emission.

About this research paper

What this paper is about

Thermal infrared thermometers deployed ∼250 m from Stromboli's active craters can detect thermal emissions during strombolian explosions. Explosions appear as spikes in thermal time series, with variations in the mass erupted during each event revealed by pulses in the time series. During May 2001, Stromboli's NE and SW craters showed consistently different thermal signatures. SW crater events were characterized by long lasting (>10 s), higher amplitude thermal signals with significant fluctuations, whereas the NE crater was characterized by short (<5 s), impulsive, lower amplitude signatures. The two craters showed well‐correlated variations in thermal amplitude evolving over periods of several hours and providing strong evidence for linkage of the craters to a common feeding system affected by cyclic processes that drive steady variations in the style of emission.

Why it matters

OpenAlex reports 35 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Thermal infrared thermometers deployed ∼250 m from Stromboli's active craters can detect thermal emissions during strombolian explosions. Explosions appear as spikes in thermal time series, with variations in the mass erupted during each event revealed by pulses in the time series. During May 2001, Stromboli's NE and SW craters showed consistently different thermal signatures. SW crater events were characterized by long lasting (>10 s), higher amplitude thermal signals with significant fluctuations, whereas the NE crater was characterized by short (<5 s), impulsive, lower amplitude signatures. The two craters showed well‐correlated variations in thermal amplitude evolving over periods of several hours and providing strong evidence for linkage of the craters to a common feeding system affected by cyclic processes that drive steady variations in the style of emission.

Key concepts: Impact crater, Strombolian eruption, Volcano, Geology, Amplitude, Explosive material, Thermal, Seismology

Related papers

Back to paper searchBrowse research topicsOriginal source
Coupled thermal oscillations in explosive activity at different craters of Stromboli volcano — Research Paper | ScholarLens