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Sökning: id:"swepub:oai:DiVA.org:uu-327978" > Use of Multibeam an...

Use of Multibeam and Dual-Beam Sonar Systems to Observe Cavitating Flow Produced by Ferryboats : In a Marine Renewable Energy Perspective

Francisco, Francisco, 1985- (författare)
Uppsala universitet,Elektricitetslära
Carpman, Nicole (författare)
Uppsala universitet,Elektricitetslära
Dolguntseva, Irina, 1981- (författare)
Uppsala universitet,Elektricitetslära
visa fler...
Sundberg, Jan, Professor (författare)
Uppsala universitet,Elektricitetslära
visa färre...
 (creator_code:org_t)
2017-07-21
2017
Engelska.
Ingår i: Journal of Marine Science and Engineering. - : MDPI. - 2077-1312. ; 5:3
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • With the prospect to deploy hydrokinetic energy converters in areas with heavy boat traffic, a study was conducted to observe and assess the depth range of cavitating flow produced by ferryboats in narrow channels. This study was conducted in the vicinity of Finnhamn Island in Stockholm Archipelago. The objectives of the survey were to assess whether the sonar systems were able to observe and measure the depth of what can be cavitating flow (in a form of convected cloud cavitation) produced by one specific type of ferryboats frequently operating in that route, as well as investigate if the cavitating flow within the wake would propagate deep enough to disturb the water column underneath the surface. A multibeam and a dual-beam sonar systems were used as measurement instruments. The hypothesis was that strong and deep wake can disturb the optimal operation of a hydrokinetic energy converter, therefore causing damages to its rotors and hydrofoils. The results showed that both sonar system could detect cavitating flows including its strength, part of the geometrical shape and propagation depth. Moreover, the boat with a propeller thruster produced cavitating flow with an intense core reaching 4 m of depth while lasting approximately 90 s. The ferry with waterjet thruster produced a less intense cavitating flow; the core reached depths of approximately 6 m, and lasted about 90 s. From this study, it was concluded that multibeam and dual-beam sonar systems with operating frequencies higher than 200 kHz were able to detect cavitating flows in real conditions, as long as they are properly deployed and the data properly analyzed.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Naturresursteknik -- Havs- och vattendragsteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Environmental Engineering -- Ocean and River Engineering (hsv//eng)

Nyckelord

sonar
cavitating flow
hydrokinetic power
marine renewable energy
ferryboat

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