We present the rationale and the main initial achievements of the operational prototype of the first multi-method system for the real-time, unsupervised, quantitative monitoring of erupted masses simultaneously at all active volcanoes in Europe, Africa, the Eastern Antilles and the ocean islands. The system is structured as a multi-pole, geographically distributed system, where raw datasets from space payloads SEVIRI, MODIS, GOME-2, IASI and OMI are acquired at four downlink stations, distributed to, and automatically processed at six locations in four European nations, then returned to a central post-processor for real-time alert and Wide Area Network display. This architecture is aimed at optimizing quality and timeliness of the advanced methods run within it, and to let the inherent technical knowledge.

Operational Integration of Spaceborne Measurements of Lava Discharge Rates and Sulfur Dioxide Concentrations for Global Volcano Monitoring / F., Ferrucci; N., Theys; C., Lieven; B., Hirn; P., Valks; Laneve, Giovanni; R., van der A; S., Tait; C., Di Bartola; H., Brenot. - STAMPA. - (2013), pp. 361-386. [10.1007/978-3-642-12233-0].

Operational Integration of Spaceborne Measurements of Lava Discharge Rates and Sulfur Dioxide Concentrations for Global Volcano Monitoring

LANEVE, Giovanni;
2013

Abstract

We present the rationale and the main initial achievements of the operational prototype of the first multi-method system for the real-time, unsupervised, quantitative monitoring of erupted masses simultaneously at all active volcanoes in Europe, Africa, the Eastern Antilles and the ocean islands. The system is structured as a multi-pole, geographically distributed system, where raw datasets from space payloads SEVIRI, MODIS, GOME-2, IASI and OMI are acquired at four downlink stations, distributed to, and automatically processed at six locations in four European nations, then returned to a central post-processor for real-time alert and Wide Area Network display. This architecture is aimed at optimizing quality and timeliness of the advanced methods run within it, and to let the inherent technical knowledge.
2013
Early Warning for Geological Disasters
9783642122323
disasters; Satellites; Earthquake; VOLCANO
02 Pubblicazione su volume::02a Capitolo o Articolo
Operational Integration of Spaceborne Measurements of Lava Discharge Rates and Sulfur Dioxide Concentrations for Global Volcano Monitoring / F., Ferrucci; N., Theys; C., Lieven; B., Hirn; P., Valks; Laneve, Giovanni; R., van der A; S., Tait; C., Di Bartola; H., Brenot. - STAMPA. - (2013), pp. 361-386. [10.1007/978-3-642-12233-0].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/519261
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