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| Artikel-Nr.: 5667A-9783030968915 Herst.-Nr.: 9783030968915 EAN/GTIN: 9783030968915 |
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![](/p.gif) | This book pursues the ambitious goal of combining floating wind turbine design optimization and reliability assessment, which has in fact not been done before. The topic is organized into a series of very ambitious objectives, which start with an initial state-of-the-art review, followed by the development of high-fidelity frameworks for a disruptive way to design next generation floating offshore wind turbine (FOWT) support structures. The development of a verified aero-hydro-servo-elastic coupled numerical model of dynamics for FOWTs and a holistic framework for automated simulation and optimization of FOWT systems, which is later used for the coupling of design optimization with reliability assessment of FOWT systems in a computationally and time-efficient manner, has been an aim of many groups internationally towards implementing a performance-based/goal-setting approach in the design of complex engineering systems. The outcomes of this work quantify the benefits of an optimaldesign with a lower mass while fulfilling design constraints. Illustrating that comprehensive design methods can be combined with reliability analysis and optimization algorithms towards an integrated reliability-based design optimization (RBDO) can benefit not only the offshore wind energy industry but also other applications such as, among others, civil infrastructure, aerospace, and automotive engineering. Weitere Informationen: ![](/p.gif) | ![](/p.gif) | Author: | Mareike Leimeister | Verlag: | Springer International Publishing | Sprache: | eng |
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![](/p.gif) | Weitere Suchbegriffe: chemische technik - englischsprachig, Floating Wind Turbines, FOWT, Optimization, Disruptive Design, Reliability, Integrated Reliability-based Design Optimization, RBDO, Floating Wind Turbines; FOWT; Disruptive Design; reliability; Integrated Reliability-based Design Optimization; RBDO |
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