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        <title type="main">An Integrated Nonlinear Wind-Waves Model for Offshore Wind Turbines</title>
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          <persName n="1" ref="https://orcid.org/0000-0001-7441-1994" type="ORCID">
            <forename>Enzo</forename>
            <surname>Marino</surname>
            <placeName type="affiliation">University of Florence, Italy</placeName>
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        <publisher>Firenze University Press</publisher>
        <pubPlace>Firenze</pubPlace>
        <date when="2011">2011</date>
        <idno type="DOI">https://doi.org/10.36253/978-88-6655-053-2</idno>
        <availability>
          <p>Available for academic research purposes</p>
          <p>Open Access</p>
          <p>Copyright Author(s)</p>
          <licence source="text" target="https://creativecommons.org/licenses/by-nd/3.0/legalcode">
            <p>Content licence CC BY-ND 3.0 IT</p>
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          <licence source="metadata" target="https://creativecommons.org/publicdomain/zero/1.0/legalcode">
            <p>Metadata licence CC0 1.0</p>
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        <title>Premio Tesi di Dottorato</title>
        <idno type="ISSN" subtype="print">2612-8039</idno>
        <idno type="ISSN" subtype="electronic">2612-8020</idno>
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          <date>2011</date>
          <idno type="ISBN" subtype="electronic">978-88-6655-053-2</idno>
          <biblScope unit="page">230 pages</biblScope>
          <extent>131,12 MB</extent>
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            <p>This is original content, published in Open Access. It is also available to read for free online at <ref target="https://media.fupress.com/files/pdf/24/2237/5058">https://media.fupress.com/files/pdf/24/2237/5058</ref></p>
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          <date>2011</date>
          <idno type="ISBN" subtype="electronic">978-88-9273-642-9</idno>
          <availability status="free">
            <p>It is available to read for free online</p>
          </availability>
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        <bibl type="monograph">
          <edition n="3">Print edition</edition>
          <date>2011</date>
          <idno type="ISBN" subtype="print">978-88-6655-051-8</idno>
          <biblScope unit="page">230 pages</biblScope>
          <availability status="restricted">
            <p>It is available for online purchase at <ref target="https://books.fupress.com/isbn/9788866550532">https://books.fupress.com/isbn/9788866550532</ref></p>
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        <tag>peer-reviewed</tag>
        <rs type="FUP_policy" source="https://doi.org/10.36253/fup_best_practice">Firenze University Press Best Practice in Scholarly Publishing</rs>
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        <rs type="peer_review" resp="scientific_board" source="https://books.fupress.com/scientific-board/c/95">Premio Tesi di Dottorato 2010</rs>
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      <abstract xml:lang="en">
        <p>This thesis presents a numerical model capable of simulating offshore wind turbines exposed to extreme loading conditions. External condition-based extreme responses are reproduced by coupling a fully nonlinear wave kinematic solver with a hydro-aero-elastic simulator.
First, a two-dimensional fully nonlinear wave simulator is developed. The transient nonlinear free surface problem is formulated assuming the potential theory and a high-order boundary element method is implemented to discretize Laplace's equation. For temporal evolution a second-order Taylor series expansion is used. The code, after validation with experimental data, is successfully adopted to simulate overturning plunging breakers which give rise to dangerous impact loads when they break against wind turbine substructures. 
Emphasis is then placed on the random nature of the waves. Indeed, through a domain decomposition technique a global simulation framework embedding the numerical wave simulator into a more general stochastic environment is developed. 
The proposed model is meant as a contribution to meet the more and more pressing demand for research in the offshore wind energy sector as it permits taking into account dangerous effects on the structural response so as to increase the global structural safety level.
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      <p>It is available online at https://doi.org/10.36253/978-88-6655-053-2<ref target="https://doi.org/10.36253/978-88-6655-053-2" /></p>
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