Authors
Matteo Cerminara, Tomaso Esposti Ongaro, Sébastien Valade, Andrew JL Harris
Publication date
2015/1/5
Journal
Journal of Volcanology and Geothermal Research
Volume
300
Pages
129-147
Publisher
Elsevier
Description
We present a coupled fluid-dynamic and electromagnetic model for volcanic ash plumes. In a forward approach, the model is able to simulate the plume dynamics from prescribed input flow conditions and generate the corresponding synthetic thermal infrared (TIR) image, allowing a comparison with field-based observations. An inversion procedure is then developed to retrieve vent conditions from TIR images, and to independently estimate the mass eruption rate.
The adopted fluid-dynamic model is based on a one-dimensional, stationary description of a self-similar turbulent plume, for which an asymptotic analytical solution is obtained. The electromagnetic emission/absorption model is based on Schwarzschild's equation and on Mie's theory for disperse particles, and we assume that particles are coarser than the radiation wavelength (about 10 μm) and that scattering is negligible. In the inversion procedure …
Total citations
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Scholar articles
M Cerminara, TE Ongaro, S Valade, AJL Harris - Journal of volcanology and geothermal research, 2015