long term underwater acoustic monitoring at fino ... · conclusions and outlook page 11 •about 3...
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RAVE 2012Bremerhaven, May 9th, 2012
A d Lübb Th NAndrea Lübben, Thomas Neumann,Joachim Gabriel
DEWI GmbH –German Wind Energy Institute
SITE ASSESSMENT . WIND TURBINE ASSESSMENT . GRID INTEGRATION . DUE DILIGENCE . KNOWLEDGE . CONSULTANCY
Long term underwater acoustic monitoring at FINO platformsat FINO platforms
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Contents Page 1
•Motivation
•Underwater acoustic monitoring station
•Data and examples of pile driving noise
•Conclusions and outlook
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Motivation: Research project Hyprowind Page 2
• Marine fauna like harbour porpoises, seals, fish and fish larvae may be damaged by the intensive sound of pile driving
• Hydrosound scenarios based on forecast modeling and monitoring for the installation of offshore wind farms in the German North Sea
I t f f il d i i i• Interference of pile driving noise of different offshore wind farms
• Development of noise maps
FINO 3
p p• Validation by measurements
(FINO1, FINO3, autonomous system)
FINO 1
FINO 3autonomous system)
Source: BSH / DEWI - Status: 2011-02-11
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Site of Measurement System Page 3
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Page 4Underwater acoustic monitoring
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Underwater acoustic monitoring station Page 5
• Set up in July 2009• Distance of 80 m to research platform FINO1• 2 different hydrophones: a sensitive and a
low gain one• Resolution 24 BitContainer with computer eso ut o t• Sampling rate 48000 Hz • Equipped with external hard drives for data
storage
Container with computer
D t bl storageData cable
Frame with hydrophones
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Examples of pile driving Page 6
Distant pile driving(December 22nd, 2010, distance 56 km)
Nearby pile driving(August 9th, 2009, distance 1200 m)
Hammering of a pile of a jacket construction Hammering of 3 piles of a tripile construction
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Page 7Examples of pile driving noiseDistant pile drivingNearby pile driving
Amplitude and frequency of strokes of nearby pile driving on
J l 14th 2009
Amplitude and frequency of strokes for far distant pile driving on
M 9th 2010July 14th, 2009 May 9th, 2010
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Page 8Long term sound pressure level distribution
Background noise
Distant pile drivingNearby pile driving
Ship- and BackgroundnoiseWorking noise noise
Pil d i i i Pile driving noisePile driving noise Pile driving noise
Distribution of LeqDistribution of Leq
M 1st t 31th 2010July 7th to August 26th, 2009 May 1st to 31th, 2010
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Automatic pile driving detection algorithm Page 9
Distant pile drivingNearby pile driving
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Outlook: cumulative effects Page 10
Nearbypile driving Interference
November 14th, 2011
November 9th, 2011
Distantpile driving
November 17th, 2011
pile driving
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Conclusions and outlook Page 11
• About 3 successful years of long term underwater sound monitoring
• Focus on detection of pile driving noise in a high dynamical range
• Successful development of an automatic pile driving detection algorithm
• Investigation of cumulative effects
• Installation of second underwater acoustic monitoring station in the• Installation of second underwater acoustic monitoring station in the North of the German Bight near research platform FINO3
• Development of an autonomous system
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Thank youThank you for your attention !
SITE ASSESSMENT . WIND TURBINE ASSESSMENT . GRID INTEGRATION . DUE DILIGENCE . KNOWLEDGE . CONSULTANCY