Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and Experiment

Strong variability of Ka-band radar backscattering from short wind waves on the surface of water covered with surfactant films in the presence of internal waves (IW) was studied in wave tank experiments. It has been demonstrated that modulation of Ka-band radar return due to IW strongly depends on t...

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Main Authors: Stanislav A. Ermakov, Irina A. Sergievskaya, Ivan A. Kapustin
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Remote Sensing
Subjects:
Online Access:https://www.mdpi.com/2072-4292/13/13/2462
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spelling doaj-810242e33c944ce68757cada64d0ea4b2021-07-15T15:44:08ZengMDPI AGRemote Sensing2072-42922021-06-01132462246210.3390/rs13132462Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and ExperimentStanislav A. Ermakov0Irina A. Sergievskaya1Ivan A. Kapustin2Institute of Applied Physics, Russian Academy of Sciences, 46 Uljanova Str., 603950 Nizhny Novgorod, RussiaInstitute of Applied Physics, Russian Academy of Sciences, 46 Uljanova Str., 603950 Nizhny Novgorod, RussiaInstitute of Applied Physics, Russian Academy of Sciences, 46 Uljanova Str., 603950 Nizhny Novgorod, RussiaStrong variability of Ka-band radar backscattering from short wind waves on the surface of water covered with surfactant films in the presence of internal waves (IW) was studied in wave tank experiments. It has been demonstrated that modulation of Ka-band radar return due to IW strongly depends on the relationship between the phase velocity of IW and the velocity of drifting surfactant films. An effect of the strong increase in surfactant concentration was revealed in convergent zones, associated with IW orbital velocities in the presence of a “resonance” surface steady current, the velocity of which was close to the IW phase velocity. A phenomenological model of suppression and modulations in the spectrum of small-scale wind waves due to films and IW was elaborated. It has been shown that backscatter modulation could not be explained by the modulation of free (linear) millimeter-scale Bragg waves, but was associated with the modulation of bound (parasitic) capillary ripples generated by longer, cm–dm-scale waves—a “cascade” modulation mechanism. Theoretical analysis based on the developed model was found to be consistent with experiments. Field observations which qualitatively illustrated the effect of strong modulation of Ka-band radar backscatter due to IW in the presence of resonance drift of surfactant films are presented.https://www.mdpi.com/2072-4292/13/13/2462Ka-band radar backscatteringinternal wavesshort wind wavesradar modulation transfer functionsurfactant films
collection DOAJ
language English
format Article
sources DOAJ
author Stanislav A. Ermakov
Irina A. Sergievskaya
Ivan A. Kapustin
spellingShingle Stanislav A. Ermakov
Irina A. Sergievskaya
Ivan A. Kapustin
Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and Experiment
Remote Sensing
Ka-band radar backscattering
internal waves
short wind waves
radar modulation transfer function
surfactant films
author_facet Stanislav A. Ermakov
Irina A. Sergievskaya
Ivan A. Kapustin
author_sort Stanislav A. Ermakov
title Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and Experiment
title_short Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and Experiment
title_full Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and Experiment
title_fullStr Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and Experiment
title_full_unstemmed Strong Modulation of Short Wind Waves and Ka-Band Radar Return Due to Internal Waves in the Presence of Surface Films. Theory and Experiment
title_sort strong modulation of short wind waves and ka-band radar return due to internal waves in the presence of surface films. theory and experiment
publisher MDPI AG
series Remote Sensing
issn 2072-4292
publishDate 2021-06-01
description Strong variability of Ka-band radar backscattering from short wind waves on the surface of water covered with surfactant films in the presence of internal waves (IW) was studied in wave tank experiments. It has been demonstrated that modulation of Ka-band radar return due to IW strongly depends on the relationship between the phase velocity of IW and the velocity of drifting surfactant films. An effect of the strong increase in surfactant concentration was revealed in convergent zones, associated with IW orbital velocities in the presence of a “resonance” surface steady current, the velocity of which was close to the IW phase velocity. A phenomenological model of suppression and modulations in the spectrum of small-scale wind waves due to films and IW was elaborated. It has been shown that backscatter modulation could not be explained by the modulation of free (linear) millimeter-scale Bragg waves, but was associated with the modulation of bound (parasitic) capillary ripples generated by longer, cm–dm-scale waves—a “cascade” modulation mechanism. Theoretical analysis based on the developed model was found to be consistent with experiments. Field observations which qualitatively illustrated the effect of strong modulation of Ka-band radar backscatter due to IW in the presence of resonance drift of surfactant films are presented.
topic Ka-band radar backscattering
internal waves
short wind waves
radar modulation transfer function
surfactant films
url https://www.mdpi.com/2072-4292/13/13/2462
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AT irinaasergievskaya strongmodulationofshortwindwavesandkabandradarreturnduetointernalwavesinthepresenceofsurfacefilmstheoryandexperiment
AT ivanakapustin strongmodulationofshortwindwavesandkabandradarreturnduetointernalwavesinthepresenceofsurfacefilmstheoryandexperiment
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