Experimental study on vortex-induced motions (VIM) of a large-volume semi-submersible platform (2011)
- Authors:
- USP affiliated authors: FUJARRA, ANDRÉ LUÍS CONDINO - EP ; NISHIMOTO, KAZUO - EP
- Unidade: EP
- Subjects: VÓRTICES DOS FLUÍDOS; TUBOS FLEXÍVEIS; ESTRUTURAS OFFSHORE FLUTUANTES
- Language: Inglês
- Imprenta:
- Source:
- Título do periódico: OMAE 2011 : proceedings
- Conference titles: International Conference on Ocean, Offshore and Arctic Engineering
-
ABNT
GONÇALVES, Rodolfo Trentin; ROSETTI, Guilherme Feitosa; NISHIMOTO, Kazuo; FUJARRA, André Luis Condino; OLIVEIRA, Allan Carlos. Experimental study on vortex-induced motions (VIM) of a large-volume semi-submersible platform. Anais.. New York: Asme, 2011. -
APA
Gonçalves, R. T., Rosetti, G. F., Nishimoto, K., Fujarra, A. L. C., & Oliveira, A. C. (2011). Experimental study on vortex-induced motions (VIM) of a large-volume semi-submersible platform. In OMAE 2011 : proceedings. New York: Asme. -
NLM
Gonçalves RT, Rosetti GF, Nishimoto K, Fujarra ALC, Oliveira AC. Experimental study on vortex-induced motions (VIM) of a large-volume semi-submersible platform. OMAE 2011 : proceedings. 2011 ; -
Vancouver
Gonçalves RT, Rosetti GF, Nishimoto K, Fujarra ALC, Oliveira AC. Experimental study on vortex-induced motions (VIM) of a large-volume semi-submersible platform. OMAE 2011 : proceedings. 2011 ; - Wave effects on vortex-induced motion (VIM) of a large-volume semi-submersible platform
- Analysis methodology of vortex-induced motions (VIM) on a monocolumn platform applying the Hilbert-Huang transform method
- Investigation on the effects of risers in the dynamics of floating systems
- Mitigation of Vortex-Induced Motion (VIM) on a Monocolumn Platform: Forces and Movements 1
- An overview of relevant aspects on VIM of spar and monocolumn platforms
- Damping coefficient analyses for floating offshore structures
- Tecnologia da Poli torna mais seguras plataformas de petróleo
- Evolution of the MPSO (Monocolumn production, storage and offloading system)
- MPSO design: part 1: wave excitation forces and moments
- Analysis methodology for vortex-induced motion (VIM) of a monocolumn platform applying the Hilbert–Huang Transform Method 1
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