Boundary Control of Coupled Nonlinear Three Dimensional Marine Risers

This paper presents a design of boundary controllers implemented at the top end for global stabilization of a marine riser in a three dimensional space under environmental loadings. Based on the energy approach, nonlinear partial differential equations of motion, including bending-bending and longit...

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Published inJournal of marine science and application Vol. 12; no. 1; pp. 72 - 88
Main Authors Nguyen, T. L., Do, K. D., Pan, J.
Format Journal Article
LanguageEnglish
Published Heidelberg Harbin Engineering University 01.03.2013
School of Mechanical and Chemical Engineering, The University of Western Australia, WA 6009, Australia%Department of Mechanical Engineering, Curtin University, WA 6102, Australia
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Online AccessGet full text
ISSN1671-9433
1993-5048
DOI10.1007/s11804-013-1175-8

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Abstract This paper presents a design of boundary controllers implemented at the top end for global stabilization of a marine riser in a three dimensional space under environmental loadings. Based on the energy approach, nonlinear partial differential equations of motion, including bending-bending and longitudinal-bending couplings for the risers are derived. The couplings cause mutual effects between the three independent directions in the riser's motions, and make it difficult to minimize its vibrations. The Lyapunov direct method is employed to design the boundary controller. It is shown that the proposed boundary controllers can effectively reduce the riser's vibration. Stability analysis of the closed-loop system is performed using the Lyapunov direct method. Numerical simulations illustrate the results.
AbstractList This paper presents a design of boundary controllers implemented at the top end for global stabilization of a marine riser in a three dimensional space under environmental loadings. Based on the energy approach, nonlinear partial differential equations of motion, including bending-bending and longitudinal-bending couplings for the risers are derived. The couplings cause mutual effects between the three independent directions in the riser’s motions, and make it difficult to minimize its vibrations. The Lyapunov direct method is employed to design the boundary controller. It is shown that the proposed boundary controllers can effectively reduce the riser’s vibration. Stability analysis of the closed-loop system is performed using the Lyapunov direct method. Numerical simulations illustrate the results.
This paper presents a design of boundary controllers implemented at the top end for global stabilization of a marine riser in a three dimensional space under environmental loadings. Based on the energy approach, nonlinear partial differential equations of motion, including bending-bending and longitudinal-bending couplings for the risers are derived. The couplings cause mutual effects between the three independent directions in the riser's motions, and make it difficult to minimize its vibrations. The Lyapunov direct method is employed to design the boundary controller. It is shown that the proposed boundary controllers can effectively reduce the riser's vibration. Stability analysis of the closed-loop system is performed using the Lyapunov direct method. Numerical simulations illustrate the results.
Author T. L. Nguyen K. D. Do J. Pan
AuthorAffiliation School of Mechanical and Chemical Engineering, The University of Western Australia, WA 6009, Australia Department of Mechanical Engineering, Curtin University, WA 6102, Australia
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DocumentTitleAlternate Boundary Control of Coupled Nonlinear Three Dimensional Marine Risers
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Issue 1
Keywords equations of motion
marine risers
nonlinear couplings
boundary control
nonlinear dynamics
Language English
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Notes This paper presents a design of boundary controllers implemented at the top end for global stabilization of a marine riser in a three dimensional space under environmental loadings. Based on the energy approach, nonlinear partial differential equations of motion, including bending-bending and longitudinal-bending couplings for the risers are derived. The couplings cause mutual effects between the three independent directions in the riser's motions, and make it difficult to minimize its vibrations. The Lyapunov direct method is employed to design the boundary controller. It is shown that the proposed boundary controllers can effectively reduce the riser's vibration. Stability analysis of the closed-loop system is performed using the Lyapunov direct method. Numerical simulations illustrate the results.
23-1505/T
marine risers boundary control nonlinear dynamics equations of motion nonlinear couplings
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PublicationTitle Journal of marine science and application
PublicationTitleAbbrev J. Marine. Sci. Appl
PublicationTitleAlternate Journal of Marine Science and Application
PublicationTitle_FL Journal of Marine Science and Application
PublicationYear 2013
Publisher Harbin Engineering University
School of Mechanical and Chemical Engineering, The University of Western Australia, WA 6009, Australia%Department of Mechanical Engineering, Curtin University, WA 6102, Australia
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  publication-title: International Journal of Mechanical Sciences
  doi: 10.1016/0020-7403(94)00103-Q
– volume: 30
  start-page: 1387
  issue: 11
  year: 2003
  ident: 1175_CR15
  publication-title: Ocean Engineering
  doi: 10.1016/S0029-8018(02)00110-5
– volume: 240
  start-page: 613
  issue: 4
  year: 2001
  ident: 1175_CR5
  publication-title: Journal of Sound and Vibration
  doi: 10.1006/jsvi.2000.3252
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Snippet This paper presents a design of boundary controllers implemented at the top end for global stabilization of a marine riser in a three dimensional space under...
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springer
chongqing
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SubjectTerms Electrical Machines and Networks
Engineering
Geotechnical Engineering & Applied Earth Sciences
Lyapunov直接方法
Lyapunov直接法
Machinery and Machine Elements
Offshore Engineering
Power Electronics
Research Paper
三维空间
海洋立管
稳定性分析
耦合
边界控制
非线性偏微分方程
Title Boundary Control of Coupled Nonlinear Three Dimensional Marine Risers
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