An experimental study of collective sea state modes of deep water surface gravity waves

Experimental tests of the theory of collective sea state modes of deep water surface gravity waves were made in a 20 meter long, 1.1 meter wide wind-wave tank. First, bursts of broadband wave energy were injected into the upwind end of the tank with a paddle. According to wave turbulence theory and...

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Main Author: Gill, Patricia A.
Other Authors: Keolian, Robert
Language:en_US
Published: Monterey, California. Naval Postgraduate School 2013
Online Access:http://hdl.handle.net/10945/30863
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-308632015-02-11T03:55:38Z An experimental study of collective sea state modes of deep water surface gravity waves Gill, Patricia A. Keolian, Robert Hofler, Thomas J. Keolian, Robert Larraza, A. NA NA Applied Physics Experimental tests of the theory of collective sea state modes of deep water surface gravity waves were made in a 20 meter long, 1.1 meter wide wind-wave tank. First, bursts of broadband wave energy were injected into the upwind end of the tank with a paddle. According to wave turbulence theory and previous experiments, it is expected that the collective mode can be seen as a change in the wind generated background spectral density propagating down the tank. The collective mode is expected to give an anomalous phase shift between the wind generated waves and the lowest tank modes. A series of experiments were conducted to measure the phase of the lowest oscillatory modes of the tank at which increases in the magnitude of wind generated waves occurred. Finally, the surface tension of water in the tank was measured in order to better characterize our system. Although our experiments suggest that the collective mode may indeed exist, the results, so far, remain inconclusive. 2013-04-26T18:59:12Z 2013-04-26T18:59:12Z 1994-06 Thesis http://hdl.handle.net/10945/30863 en_US This publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. As such, it is in the public domain, and under the provisions of Title 17, United States Code, Section 105, it may not be copyrighted. Monterey, California. Naval Postgraduate School
collection NDLTD
language en_US
sources NDLTD
description Experimental tests of the theory of collective sea state modes of deep water surface gravity waves were made in a 20 meter long, 1.1 meter wide wind-wave tank. First, bursts of broadband wave energy were injected into the upwind end of the tank with a paddle. According to wave turbulence theory and previous experiments, it is expected that the collective mode can be seen as a change in the wind generated background spectral density propagating down the tank. The collective mode is expected to give an anomalous phase shift between the wind generated waves and the lowest tank modes. A series of experiments were conducted to measure the phase of the lowest oscillatory modes of the tank at which increases in the magnitude of wind generated waves occurred. Finally, the surface tension of water in the tank was measured in order to better characterize our system. Although our experiments suggest that the collective mode may indeed exist, the results, so far, remain inconclusive.
author2 Keolian, Robert
author_facet Keolian, Robert
Gill, Patricia A.
author Gill, Patricia A.
spellingShingle Gill, Patricia A.
An experimental study of collective sea state modes of deep water surface gravity waves
author_sort Gill, Patricia A.
title An experimental study of collective sea state modes of deep water surface gravity waves
title_short An experimental study of collective sea state modes of deep water surface gravity waves
title_full An experimental study of collective sea state modes of deep water surface gravity waves
title_fullStr An experimental study of collective sea state modes of deep water surface gravity waves
title_full_unstemmed An experimental study of collective sea state modes of deep water surface gravity waves
title_sort experimental study of collective sea state modes of deep water surface gravity waves
publisher Monterey, California. Naval Postgraduate School
publishDate 2013
url http://hdl.handle.net/10945/30863
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