Flare imaging with multibeam systems: Data processing for bubble detection at seeps

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Abstract

Multibeam sonar surveys have been conducted since their invention in the 1970s; however, mainly reflections from the seafloor were considered so far. More recently, water column imaging with multibeam is becoming of increasing interest for fisheries, buoy, mooring, or gas detection in the water column. Using ELAC SEABEAM 1000 data, we propose a technique to detect gas bubbes (flares) although this system is originally not designed to record water column data. The described data processing represents a case study and can be easily adapted to other multibeam systems. Multibeam data sets from the Black Sea and the North Sea show reflections of gas bubbles that form flares in the water column. At least for reasonably intense gas escape the detection of bubbles is feasible. The multibeam technique yields exact determination of the source position and information about the dimension of the gas cloud in the water. Compared to conventional flare imaging by single-beam echo sounders, the wide swath angle of multibeam systems allows the mapping of large areas in much shorter time. Copyright 2007 by the American Geophysical Union.

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Schneider Von Deimling, J., Brockhoff, J., & Greinert, J. (2007). Flare imaging with multibeam systems: Data processing for bubble detection at seeps. Geochemistry, Geophysics, Geosystems, 8(6). https://doi.org/10.1029/2007GC001577

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