DocumentCode
1914963
Title
A novel measurement strategy for volcanic ash fallout estimation based on RTD Fluxgate magnetometers
Author
Ando, B. ; Baglio, S. ; Pitrone, N. ; Trigona, C. ; Bulsara, A.R. ; In, V. ; Coltelli, M. ; Scollo, S.
Author_Institution
Dipt. di Ing. Elettr., Elettron. e dei Sist., Catania Univ., Catania
fYear
2008
fDate
12-15 May 2008
Firstpage
1904
Lastpage
1907
Abstract
An innovative solution to measure the fallout of ETNA erupted volcano particles based on Residence Times Difference fluxgate magnetometer is here presented. The approach adopted is based on the exploitation of intrinsic magnetic properties of the emitted particles using a FR4 (flame resistant 4) fluxgate structure embedding a high permeability magnetic layer (Metglasreg ribbon, 1.6 mm thick) between two standard metallized layers. The proposed measurement system, for volcanic ash fallout estimation, represents an innovative direct sensing methodology, different from other current approaches that generally estimate the material in suspension and evaluate the expected fallout by using numerical models, such as satellite imaging, radar observations, Geostationary Operational Environmental Satellite, Moderate Resolution Imaging Spectroradiometer and the Atmospheric Infrared Sounder. The experimental set-up is here described and some preliminary results are reported to show the suitability of the approach proposed.
Keywords
artificial satellites; ash; fluxgate magnetometers; geophysical techniques; radiometers; spectrometers; volcanology; Etna; Metglas ribbon; RTD fluxgate magnetometers; atmospheric infrared sounder; flame resistant 4 fluxgate structure; geostationary operational environmental satellite; high permeability magnetic layer; magnetic properties; moderate resolution imaging spectroradiometer; radar observations; residence times difference fluxgate magnetometer; satellite imaging; size 1.6 mm; volcanic ash fallout estimation; volcano particles; Atmospheric measurements; Fires; Magnetic properties; Magnetometers; Metallization; Particle measurements; Permeability; Satellites; Volcanic ash; Volcanoes; RTD-Fluxgate; volcanic ash fallout estimation;
fLanguage
English
Publisher
ieee
Conference_Titel
Instrumentation and Measurement Technology Conference Proceedings, 2008. IMTC 2008. IEEE
Conference_Location
Victoria, BC
ISSN
1091-5281
Print_ISBN
978-1-4244-1540-3
Electronic_ISBN
1091-5281
Type
conf
DOI
10.1109/IMTC.2008.4547358
Filename
4547358
Link To Document