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2016 | Supplement | Buchkapitel

Automatic Analysis of Floating Offshore Structures

verfasst von : David Aller, Alfredo Bermúdez, María Teresa Cao-Rial, Pedro Fontán, Francisco Pena, Andrés Prieto, Jerónimo Rodríguez, José Francisco Rodríguez-Calo

Erschienen in: Progress in Industrial Mathematics at ECMI 2014

Verlag: Springer International Publishing

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Abstract

In the coming years offshore wind energy will be one of the most promising areas in the renewable power generation field. Achieving the optimum design of floating platforms requires a rigorous analysis chain to establish the response of the whole platform under different scenarios. With this aim, we have developed a software package that automatically analyzes the feasibility of a floating structure. The structure of the platform is defined according to a very general set of parameters, allowing us to consider a wide range of designs. The package calls some commercial applications and some own codes, to complete the analysis process. Returned results include the hydrostatic equilibrium position, hydrodynamic pressure, RAOs (response-amplitude operators), material costs and static stresses.

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Literatur
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Zurück zum Zitat Birk, L., Clauss, G.F.: Optimization of offshore structures based on linear analysis of wave-body interaction. In: ASME Conference Proceedings, pp. 275–289. ASME, Estoril (2008). Birk, L., Clauss, G.F.: Optimization of offshore structures based on linear analysis of wave-body interaction. In: ASME Conference Proceedings, pp. 275–289. ASME, Estoril (2008).
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Zurück zum Zitat Bossler, A.: Japan’s floating offshore wind projects: an overview. Maine Ocean and Wind Industry Initiative: MOWII Webinar (May 2013). Bossler, A.: Japan’s floating offshore wind projects: an overview. Maine Ocean and Wind Industry Initiative: MOWII Webinar (May 2013).
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Zurück zum Zitat Lee, J.Y., Clauss, G.F.: Automated development of floating offshore structures in deepwater with verified global performances by coupled analysis. In: The International Society of Offshore and Polar Engineers (ISOPE-1-07-208) (2007) Lee, J.Y., Clauss, G.F.: Automated development of floating offshore structures in deepwater with verified global performances by coupled analysis. In: The International Society of Offshore and Polar Engineers (ISOPE-1-07-208) (2007)
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Zurück zum Zitat O’Neill, M., McDermott, J., Swafford, J.M., Byrne, J., Hemberg, E., Brabazon, A., Shotton, E., McNally, C., Hemberg, M.: Evolutionary design using grammatical evolution and shape grammars: designing a shelter. Int. J. Des. Eng. 3(1), 4–24 (2010) O’Neill, M., McDermott, J., Swafford, J.M., Byrne, J., Hemberg, E., Brabazon, A., Shotton, E., McNally, C., Hemberg, M.: Evolutionary design using grammatical evolution and shape grammars: designing a shelter. Int. J. Des. Eng. 3(1), 4–24 (2010)
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Zurück zum Zitat Sheng, W., Lewis, T., Alcorn, R.: Numerical investigation into hydrodynamics of moored floating wave energy converters. In: Proceedings of the 9th European Wave and Tidal Energy Conference (EWTEC) (2011) Sheng, W., Lewis, T., Alcorn, R.: Numerical investigation into hydrodynamics of moored floating wave energy converters. In: Proceedings of the 9th European Wave and Tidal Energy Conference (EWTEC) (2011)
Metadaten
Titel
Automatic Analysis of Floating Offshore Structures
verfasst von
David Aller
Alfredo Bermúdez
María Teresa Cao-Rial
Pedro Fontán
Francisco Pena
Andrés Prieto
Jerónimo Rodríguez
José Francisco Rodríguez-Calo
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-23413-7_20