Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf

Backscatter data from multibeam echosounders are commonly used to classify seafloor sediment composition. Previously, it was found that the survey azimuth affects backscatter when small organized seafloor structures, such as sand ripples, are present. These sand ripples are too small to be detected in the multibeam bathymetry. Here, we show that such azimuth effects are time dependent and are useful to examine the orientation of sand ripples in relation to the flow direction of the tide. To this end, multibeam echosounder data at four different frequencies were gathered from the area of the Brown Bank in the North Sea. The acoustic results were compared to video and tide-flow data for validation. The sand ripples affected the backscatter at all frequencies, but for the lowest frequencies the effect was spread over more beam angles. Using the acoustic data made it possible to deduce the orientations of the sand ripples over areas of multiple square kilometers. We found that the top centimeter(s) of the seafloor undergoes a complete transformation every six hours, as the orientation of the sand ripples changes with the changing tide. Our methodology allows for morphology change detection at larger scales and higher resolutions than previously achieved.

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Main Authors: Koop, Leo, van der Reijden, Karin J., Mestdagh, Sebastiaan, Ysebaert, Tom, Govers, Laura L., Olff, Han, Herman, Peter M.J., Snellen, Mirjam, Simons, Dick G.
Format: Article/Letter to editor biblioteca
Language:English
Subjects:Angular response curve, North Sea, Seafloor characterization, Survey azimuth, Underwater video,
Online Access:https://research.wur.nl/en/publications/measuring-centimeter-scale-sand-ripples-using-multibeam-echosound
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spelling dig-wur-nl-wurpubs-5853412025-01-15 Koop, Leo van der Reijden, Karin J. Mestdagh, Sebastiaan Ysebaert, Tom Govers, Laura L. Olff, Han Herman, Peter M.J. Snellen, Mirjam Simons, Dick G. Article/Letter to editor Geosciences (Switzerland) 10 (2020) 12 ISSN: 2076-3263 Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf 2020 Backscatter data from multibeam echosounders are commonly used to classify seafloor sediment composition. Previously, it was found that the survey azimuth affects backscatter when small organized seafloor structures, such as sand ripples, are present. These sand ripples are too small to be detected in the multibeam bathymetry. Here, we show that such azimuth effects are time dependent and are useful to examine the orientation of sand ripples in relation to the flow direction of the tide. To this end, multibeam echosounder data at four different frequencies were gathered from the area of the Brown Bank in the North Sea. The acoustic results were compared to video and tide-flow data for validation. The sand ripples affected the backscatter at all frequencies, but for the lowest frequencies the effect was spread over more beam angles. Using the acoustic data made it possible to deduce the orientations of the sand ripples over areas of multiple square kilometers. We found that the top centimeter(s) of the seafloor undergoes a complete transformation every six hours, as the orientation of the sand ripples changes with the changing tide. Our methodology allows for morphology change detection at larger scales and higher resolutions than previously achieved. en application/pdf https://research.wur.nl/en/publications/measuring-centimeter-scale-sand-ripples-using-multibeam-echosound 10.3390/geosciences10120495 https://edepot.wur.nl/551204 Angular response curve North Sea Seafloor characterization Survey azimuth Underwater video https://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/ Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic Angular response curve
North Sea
Seafloor characterization
Survey azimuth
Underwater video
Angular response curve
North Sea
Seafloor characterization
Survey azimuth
Underwater video
spellingShingle Angular response curve
North Sea
Seafloor characterization
Survey azimuth
Underwater video
Angular response curve
North Sea
Seafloor characterization
Survey azimuth
Underwater video
Koop, Leo
van der Reijden, Karin J.
Mestdagh, Sebastiaan
Ysebaert, Tom
Govers, Laura L.
Olff, Han
Herman, Peter M.J.
Snellen, Mirjam
Simons, Dick G.
Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf
description Backscatter data from multibeam echosounders are commonly used to classify seafloor sediment composition. Previously, it was found that the survey azimuth affects backscatter when small organized seafloor structures, such as sand ripples, are present. These sand ripples are too small to be detected in the multibeam bathymetry. Here, we show that such azimuth effects are time dependent and are useful to examine the orientation of sand ripples in relation to the flow direction of the tide. To this end, multibeam echosounder data at four different frequencies were gathered from the area of the Brown Bank in the North Sea. The acoustic results were compared to video and tide-flow data for validation. The sand ripples affected the backscatter at all frequencies, but for the lowest frequencies the effect was spread over more beam angles. Using the acoustic data made it possible to deduce the orientations of the sand ripples over areas of multiple square kilometers. We found that the top centimeter(s) of the seafloor undergoes a complete transformation every six hours, as the orientation of the sand ripples changes with the changing tide. Our methodology allows for morphology change detection at larger scales and higher resolutions than previously achieved.
format Article/Letter to editor
topic_facet Angular response curve
North Sea
Seafloor characterization
Survey azimuth
Underwater video
author Koop, Leo
van der Reijden, Karin J.
Mestdagh, Sebastiaan
Ysebaert, Tom
Govers, Laura L.
Olff, Han
Herman, Peter M.J.
Snellen, Mirjam
Simons, Dick G.
author_facet Koop, Leo
van der Reijden, Karin J.
Mestdagh, Sebastiaan
Ysebaert, Tom
Govers, Laura L.
Olff, Han
Herman, Peter M.J.
Snellen, Mirjam
Simons, Dick G.
author_sort Koop, Leo
title Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf
title_short Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf
title_full Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf
title_fullStr Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf
title_full_unstemmed Measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf
title_sort measuring centimeter-scale sand ripples using multibeam echosounder backscatter data from the brown bank area of the dutch continental shelf
url https://research.wur.nl/en/publications/measuring-centimeter-scale-sand-ripples-using-multibeam-echosound
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