Metocean loadings (wave plus current) which may play major role in the design of fixed offshore platforms are generally intensive, irregular, dynamic and cyclic loads and they may cause the platform to behave nonlinear. Although nonlinear pushover analysis has been widely used for only the estimation of seismic performance of the structure, in the analysis of jacket-type offshore platform nonlinear pushover analysis is also applicable for the estimation of the performance of the structure on extreme storm conditions. In this way, nonlinear metocean pushover analysis is performed on a 3-D model of a jacket-type offshore platform with different bracing systems (diagonal, x-bracing, v bracing, inverted v-bracing and k-bracing) to investigate and to compare the performances of different bracing systems for a jacket-type offshore platform subjected to 100-year extreme metocean conditions with different direction.
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Condizione: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: EREZ ErdemThe author was born in 1993 in Antalya, Turkey. After he attended Izmir Science High School, he graduated from Middle East Technical University, Department of Civil Engineering. In the following years, he graduated from the. Codice articolo 516610407
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Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Metocean loadings (wave plus current) which may play major role in the design of fixed offshore platforms are generally intensive, irregular, dynamic and cyclic loads and they may cause the platform to behave nonlinear. Although nonlinear pushover analysis has been widely used for only the estimation of seismic performance of the structure, in the analysis of jacket-type offshore platform nonlinear pushover analysis is also applicable for the estimation of the performance of the structure on extreme storm conditions. In this way, nonlinear metocean pushover analysis is performed on a 3-D model of a jacket-type offshore platform with different bracing systems (diagonal, x-bracing, v bracing, inverted v-bracing and k-bracing) to investigate and to compare the performances of different bracing systems for a jacket-type offshore platform subjected to 100-year extreme metocean conditions with different direction. 108 pp. Englisch. Codice articolo 9786204203478
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Taschenbuch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Metocean loadings (wave plus current) which may play major role in the design of fixed offshore platforms are generally intensive, irregular, dynamic and cyclic loads and they may cause the platform to behave nonlinear. Although nonlinear pushover analysis has been widely used for only the estimation of seismic performance of the structure, in the analysis of jacket-type offshore platform nonlinear pushover analysis is also applicable for the estimation of the performance of the structure on extreme storm conditions. In this way, nonlinear metocean pushover analysis is performed on a 3-D model of a jacket-type offshore platform with different bracing systems (diagonal, x-bracing, v bracing, inverted v-bracing and k-bracing) to investigate and to compare the performances of different bracing systems for a jacket-type offshore platform subjected to 100-year extreme metocean conditions with different direction.Books on Demand GmbH, Überseering 33, 22297 Hamburg 108 pp. Englisch. Codice articolo 9786204203478
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Taschenbuch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Metocean loadings (wave plus current) which may play major role in the design of fixed offshore platforms are generally intensive, irregular, dynamic and cyclic loads and they may cause the platform to behave nonlinear. Although nonlinear pushover analysis has been widely used for only the estimation of seismic performance of the structure, in the analysis of jacket-type offshore platform nonlinear pushover analysis is also applicable for the estimation of the performance of the structure on extreme storm conditions. In this way, nonlinear metocean pushover analysis is performed on a 3-D model of a jacket-type offshore platform with different bracing systems (diagonal, x-bracing, v bracing, inverted v-bracing and k-bracing) to investigate and to compare the performances of different bracing systems for a jacket-type offshore platform subjected to 100-year extreme metocean conditions with different direction. Codice articolo 9786204203478
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