A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment

Obtaining accurate measurements of wave statistics from research vessels remains a challenge due to the platform motion. One principal correction is the removal of ship heave and Doppler effects from point measurements. Here, open-ocean wave measurements were collected using a laser altimeter, a Dop...

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Main Authors: Cifuentes-Lorenzen, Alejandro, Edson, James B., Zappa, Christopher J., Bariteau, Ludovic
Format: Article in Journal/Newspaper
Language:English
Published: American Meteorological Society 2013
Subjects:
Sog
Online Access:https://doi.org/10.7916/D88K790R
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record_format openpolar
spelling ftcolumbiauniv:oai:academiccommons.columbia.edu:10.7916/D88K790R 2023-05-15T18:25:45+02:00 A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment Cifuentes-Lorenzen, Alejandro Edson, James B. Zappa, Christopher J. Bariteau, Ludovic 2013 https://doi.org/10.7916/D88K790R English eng American Meteorological Society https://doi.org/10.7916/D88K790R Ocean waves--Spectra Hydrology Ocean waves--Measurement Oceanography Articles 2013 ftcolumbiauniv https://doi.org/10.7916/D88K790R 2019-04-04T08:14:12Z Obtaining accurate measurements of wave statistics from research vessels remains a challenge due to the platform motion. One principal correction is the removal of ship heave and Doppler effects from point measurements. Here, open-ocean wave measurements were collected using a laser altimeter, a Doppler radar microwave sensor, a radar-based system, and inertial measurement units. Multiple instruments were deployed to capture the low- and high-frequency sea surface displacements. Doppler and motion correction algorithms were applied to obtain a full 1D (0.035–1.3 ± 0.2 Hz) wave spectrum. The radar-based system combined with the laser altimeter provided the optimal low- and high-frequency combination, producing a frequency spectrum in the range from 0.035 to 1.2 Hz for cruising speeds ≤3 m s−1 with a spectral rolloff of f−4 Hz and noise floor of −20/−30 dB. While on station, the significant wave height estimates were comparable within 10%–15% among instrumentation. Discrepancies in the total energy and in the spectral shape between instruments arise when the ship is in motion. These differences can be quantified using the spectral behavior of the measurements, accounting for aliasing and Doppler corrections. The inertial sensors provided information on the amplitude of the ship’s modulation transfer function, which was estimated to be ~1.3 ± 0.2 while on station and increased while underway [2.1 at ship-over-ground (SOG) speed; 4.3 m s−1]. The correction scheme presented here is adequate for measurements collected at cruising speeds of 3 m s−1 or less. At speeds greater than 5 m s−1, the motion and Doppler corrections are not sufficient to correct the observed spectral degradation. Article in Journal/Newspaper Southern Ocean Columbia University: Academic Commons Sog ENVELOPE(-20.972,-20.972,63.993,63.993) Southern Ocean
institution Open Polar
collection Columbia University: Academic Commons
op_collection_id ftcolumbiauniv
language English
topic Ocean waves--Spectra
Hydrology
Ocean waves--Measurement
Oceanography
spellingShingle Ocean waves--Spectra
Hydrology
Ocean waves--Measurement
Oceanography
Cifuentes-Lorenzen, Alejandro
Edson, James B.
Zappa, Christopher J.
Bariteau, Ludovic
A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment
topic_facet Ocean waves--Spectra
Hydrology
Ocean waves--Measurement
Oceanography
description Obtaining accurate measurements of wave statistics from research vessels remains a challenge due to the platform motion. One principal correction is the removal of ship heave and Doppler effects from point measurements. Here, open-ocean wave measurements were collected using a laser altimeter, a Doppler radar microwave sensor, a radar-based system, and inertial measurement units. Multiple instruments were deployed to capture the low- and high-frequency sea surface displacements. Doppler and motion correction algorithms were applied to obtain a full 1D (0.035–1.3 ± 0.2 Hz) wave spectrum. The radar-based system combined with the laser altimeter provided the optimal low- and high-frequency combination, producing a frequency spectrum in the range from 0.035 to 1.2 Hz for cruising speeds ≤3 m s−1 with a spectral rolloff of f−4 Hz and noise floor of −20/−30 dB. While on station, the significant wave height estimates were comparable within 10%–15% among instrumentation. Discrepancies in the total energy and in the spectral shape between instruments arise when the ship is in motion. These differences can be quantified using the spectral behavior of the measurements, accounting for aliasing and Doppler corrections. The inertial sensors provided information on the amplitude of the ship’s modulation transfer function, which was estimated to be ~1.3 ± 0.2 while on station and increased while underway [2.1 at ship-over-ground (SOG) speed; 4.3 m s−1]. The correction scheme presented here is adequate for measurements collected at cruising speeds of 3 m s−1 or less. At speeds greater than 5 m s−1, the motion and Doppler corrections are not sufficient to correct the observed spectral degradation.
format Article in Journal/Newspaper
author Cifuentes-Lorenzen, Alejandro
Edson, James B.
Zappa, Christopher J.
Bariteau, Ludovic
author_facet Cifuentes-Lorenzen, Alejandro
Edson, James B.
Zappa, Christopher J.
Bariteau, Ludovic
author_sort Cifuentes-Lorenzen, Alejandro
title A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment
title_short A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment
title_full A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment
title_fullStr A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment
title_full_unstemmed A Multisensor Comparison of Ocean Wave Frequency Spectra from a Research Vessel during the Southern Ocean Gas Exchange Experiment
title_sort multisensor comparison of ocean wave frequency spectra from a research vessel during the southern ocean gas exchange experiment
publisher American Meteorological Society
publishDate 2013
url https://doi.org/10.7916/D88K790R
long_lat ENVELOPE(-20.972,-20.972,63.993,63.993)
geographic Sog
Southern Ocean
geographic_facet Sog
Southern Ocean
genre Southern Ocean
genre_facet Southern Ocean
op_relation https://doi.org/10.7916/D88K790R
op_doi https://doi.org/10.7916/D88K790R
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