An innovative tsunami detector operating in tsunami generation environment
Author(s)
Type
Poster session
Language
English
Obiettivo Specifico
1.8. Osservazioni di geofisica ambientale
Status
Published
Date Issued
December 10, 2007
Conference Location
San Francisco, CA, USA
Abstract
On August 25th 2007 a tsunami detector installed onboard the multi-parameter observatory GEOSTAR was successfully deployed at 3200 b. s. l. in the Gulf of Cadiz, Portugal. This activity is within the NEAREST EC Project (http://nearest.bo.ismar.cnr.it/ ). Among other deliverables, the NEAREST project will produce and test the basic parts of an operational prototype of a near field tsunami warning system. This system includes an onshore warning centre, based on the geophysical monitoring networks which are already operating, and a tsunami detector deployed on board GEOSTAR at the sea bottom. On land the warning centre is in charge of collecting, integrating, and evaluating data recorded at sea. At the sea bottom data is recorded and processed by an advanced type of tsunami detector which includes: a pressure sensor, a seismometer and two accelerometers. The detector communicates acoustically with a surface buoy in two-way mode. The buoy is equipped with meteo station, GPS and tiltmeter and is connected to a shore station via satellite link. The prototype is designed to operate in tsunami generation areas for detection-warning purpose as well as for scientific measurements. The tsunami detector sends a near real time automatic alert message when a seismic or pressure threshold are exceeded. Pressure signals are processed by the tsunami detection algorithm and the water pressure perturbation caused by the seafloor motion is taken into account. The algorithm is designed to detect small tsunami waves, less than one centimetre, in a very noisy environment. Our objective is to combine a novel approach to the tsunami warning problem, with a study of the coupling between the water column perturbations and sea floor motion, together with the long term monitoring of geophysical, geochemical and oceanographic parameters.
References
DART Data Web site: http://www.ngdc.noaa.gov/seg/hazard/DARTData.shtml
Baptista, M. A., Miranda, J.M., Chierici, F., Zitellini, N., (2003). "New study of the 1755 earthquake sourcebased on multi-channel seismic survey data and tsunami modeling" NaturalHazards and Earth System Sciences 3(5): 333-340 ;
Mofjeld H.O., 2000, Tsunami Detection Algortihm Available at: http://nctr.pmel.noaa.gov/tda_documentation.html ;
Favali, P.; Beranzoli, L.; D’Anna, G.; Gasparoni, F.; Marvaldi, J.; Clauss, G.; Gerber, H.; Nicot, M.; Marani, M.; Gamberi, F.; Millot, C.; Flueh, E.: A fleet of multiparameter oberservatories for geophysical and environmental monitoring at seafloor. Annals of Geophysics, Vol. 49, N. 2/3, April/June 2006, pp. 659
Baptista, M. A., Miranda, J.M., Chierici, F., Zitellini, N., (2003). "New study of the 1755 earthquake sourcebased on multi-channel seismic survey data and tsunami modeling" NaturalHazards and Earth System Sciences 3(5): 333-340 ;
Mofjeld H.O., 2000, Tsunami Detection Algortihm Available at: http://nctr.pmel.noaa.gov/tda_documentation.html ;
Favali, P.; Beranzoli, L.; D’Anna, G.; Gasparoni, F.; Marvaldi, J.; Clauss, G.; Gerber, H.; Nicot, M.; Marani, M.; Gamberi, F.; Millot, C.; Flueh, E.: A fleet of multiparameter oberservatories for geophysical and environmental monitoring at seafloor. Annals of Geophysics, Vol. 49, N. 2/3, April/June 2006, pp. 659
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