DocumentCode
880855
Title
Spaceborne Monitoring 2000–2005 of the Pu´u `O´o-Kupaianaha (Hawaii) Eruption by Synergetic Merge of Multispectral Payloads ASTER and MODIS
Author
Hirn, Barbara ; Bartola, Concettina Di ; Ferrucci, Fabrizio
Author_Institution
Intell. for Environ. & Security Consulting Ltd., Rome
Volume
46
Issue
10
fYear
2008
Firstpage
2848
Lastpage
2856
Abstract
The spaceborne thermal monitoring of the great eruption of Pu\´u dasiaOpsilao-Kupaianaha in Hawaii (1987 to present) was attempted, integrating high-resolution SWIR-TIR and low- resolution MIR-TIR observations. Data acquired by multispectral payloads ASTER and MODIS onboard spacecraft Terra, and MODIS onboard Aqua, were processed behind real time by the use of computing routines "MyVOL" and "MyMOD" based on assessed theory and designed for real-time operations. The process was tested against the 2000-2005 eruptive history, both in geometry and volume dynamics of the lava flow. Here, instant lava effusion rates obtained from approximately 1800 cloud-free (over a total > 3000) day-/nighttime MODIS scenes and 12 cloud-free (over a total of 30) nighttime ASTER scenes are compared with each other and with volcanological ground truth composed of gas (SO2)- and electromagnetic potential (very low frequency)-derived eruption rates. Remote-sensed eruption rates are consistent with ground truth from approximately 1 m3/s up to the peak effusion rates of 1.2-1.3 million m3/day observed in 2005.
Keywords
remote sensing; volcanology; AD 2000 to 2005; ASTER; Aqua; Hawaii; MODIS; MyMOD computing routine; MyVOL computing routine; Pu´u ´O´o-Kupaianaha eruption; Terra; high-resolution SWIR-TIR observation; lava effusion rates; lava flow geometry; lava flow volume dynamics; low-resolution MIR-TIR observation; spaceborne thermal monitoring; sulphur dioxide; Frequency; Geometry; History; Layout; MODIS; Monitoring; Payloads; Remote sensing; Space vehicles; Testing; ASTER; Aqua; Hawaii; MODIS; Terra; eruption rate; lava; volcano;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2008.2001033
Filename
4637944
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