Optimum design and global analysis of flexible jumper for an innovative subsurface production system in ultra-deep water

Author:

Huang Yi,Zhen Xing-wei,Zhang Qi,Wang Wen-hua

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Ocean Engineering,Renewable Energy, Sustainability and the Environment,Oceanography

Reference15 articles.

1. Blevins, R. D., Jacob, P., Saint-Marcoux, J. F. and Wu, M., 2006. Assessment of flow-induced jumper interference for hybrid riser tower, Proc. 16th ISOPE Conf., San Francisco, USA, 791–797.

2. Franciss, R., 2005. Subsurface buoy configuration for rigid risers in ultra deepwater, Proc. 24th Int. Conf. OMEA, Halkidiki, Greece, OMAE2005-67203.

3. Fernandes, A. C., 1997. Up-to-date spread-sheet program for preliminary analysis of flexible and steel catenary risers using catenary concepts, Proc. 10th Int. Symp. Offshore Eng., Rio de Janeiro, Brazil, 409–428.

4. Fernandes, A. C., Silva, R. M. C., Carvalho, R. A., Lemos, C. A. D. and Jacob, B. P., 2001. Alternative design of flexible jumpers for deepwater hybrid riser configurations, J. Offshore Mech. Arct. Eng., 123(2): 57–64.

5. Huang, K., Chen, H. C. and Chen, C. R., 2011. Flexible jumper VIV simulation in uniform current, Proc. 20th ISOPE Conf., Maui, USA, 1297–1304.

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