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    Measuring Global Ocean Wave Skewness by Retracking RA-2 Envisat Waveforms

    Source: Journal of Atmospheric and Oceanic Technology:;2007:;volume( 024 ):;issue: 006::page 1102
    Author:
    Gómez-Enri, J.
    ,
    Gommenginger, C. P.
    ,
    Srokosz, M. A.
    ,
    Challenor, P. G.
    ,
    Benveniste, J.
    DOI: 10.1175/JTECH2014.1
    Publisher: American Meteorological Society
    Abstract: For early satellite altimeters, the retrieval of geophysical information (e.g., range, significant wave height) from altimeter ocean waveforms was performed on board the satellite, but this was restricted by computational constraints that limited how much processing could be performed. Today, ground-based retracking of averaged waveforms transmitted to the earth is less restrictive, especially with respect to assumptions about the statistics of ocean waves. In this paper, a theoretical maximum likelihood estimation (MLE) ocean waveform retracker is applied tothe Envisat Radar Altimeter system (RA-2) 18-Hz averaged waveforms under both linear (Gaussian) and nonlinear ocean wave statistics assumptions, to determine whether ocean wave skewness can be sensibly retrieved from Envisat RA-2 waveforms. Results from the MLE retracker used in nonlinear mode provide the first estimates of global ocean wave skewness based on RA-2 Envisat averaged waveforms. These results show for the first time geographically coherent skewness fields and confirm the notion that large values of skewness occur primarily in regions of large significant wave height. Results from the MLE retracker run in linear and nonlinear modes are compared with each other and with the RA-2 Level 2 Sensor Geophysical Data Records (SGDR) products to evaluate the impact of retrieving skewness on other geophysical parameters. Good agreement is obtained between the linear and nonlinear MLE results for both significant wave height and epoch (range), except in areas of high-wave-height conditions.
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      Measuring Global Ocean Wave Skewness by Retracking RA-2 Envisat Waveforms

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    contributor authorGómez-Enri, J.
    contributor authorGommenginger, C. P.
    contributor authorSrokosz, M. A.
    contributor authorChallenor, P. G.
    contributor authorBenveniste, J.
    date accessioned2017-06-09T17:23:33Z
    date available2017-06-09T17:23:33Z
    date copyright2007/06/01
    date issued2007
    identifier issn0739-0572
    identifier otherams-84398.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4227729
    description abstractFor early satellite altimeters, the retrieval of geophysical information (e.g., range, significant wave height) from altimeter ocean waveforms was performed on board the satellite, but this was restricted by computational constraints that limited how much processing could be performed. Today, ground-based retracking of averaged waveforms transmitted to the earth is less restrictive, especially with respect to assumptions about the statistics of ocean waves. In this paper, a theoretical maximum likelihood estimation (MLE) ocean waveform retracker is applied tothe Envisat Radar Altimeter system (RA-2) 18-Hz averaged waveforms under both linear (Gaussian) and nonlinear ocean wave statistics assumptions, to determine whether ocean wave skewness can be sensibly retrieved from Envisat RA-2 waveforms. Results from the MLE retracker used in nonlinear mode provide the first estimates of global ocean wave skewness based on RA-2 Envisat averaged waveforms. These results show for the first time geographically coherent skewness fields and confirm the notion that large values of skewness occur primarily in regions of large significant wave height. Results from the MLE retracker run in linear and nonlinear modes are compared with each other and with the RA-2 Level 2 Sensor Geophysical Data Records (SGDR) products to evaluate the impact of retrieving skewness on other geophysical parameters. Good agreement is obtained between the linear and nonlinear MLE results for both significant wave height and epoch (range), except in areas of high-wave-height conditions.
    publisherAmerican Meteorological Society
    titleMeasuring Global Ocean Wave Skewness by Retracking RA-2 Envisat Waveforms
    typeJournal Paper
    journal volume24
    journal issue6
    journal titleJournal of Atmospheric and Oceanic Technology
    identifier doi10.1175/JTECH2014.1
    journal fristpage1102
    journal lastpage1116
    treeJournal of Atmospheric and Oceanic Technology:;2007:;volume( 024 ):;issue: 006
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
    yabeshDSpacePersian