flexible riser
Recently Published Documents


TOTAL DOCUMENTS

281
(FIVE YEARS 76)

H-INDEX

16
(FIVE YEARS 5)

2022 ◽  
Vol 254 ◽  
pp. 113849
Author(s):  
Hailong Lu ◽  
Murilo Augusto Vaz ◽  
Marcelo Caire

Author(s):  
Zhixun Yang ◽  
Lifu Wang ◽  
Jun Yan ◽  
Dong Yan Shi ◽  
Zhirui Fan ◽  
...  

Abstract Marine flexible risers are widely used in ocean oil and gas extraction, and need to withstand environment loads (wave and current) and the large offset of the floater. Therefore, the flexible riser is subjected to tension, bending and torsion loads, which are mainly resisted by the key strengthening layer. Small bending stiffness of a cross section of the strengthening layer with larger tension and torsion stiffness are required to be compliant with the ocean environment. The traditional design of the key strengthening layer is partially rigid with larger cross-sectional stiffnesses. Therefore, the innovative configurations of the strengthening layer are imperative to make sure that the flexible riser is reliable and safe during the installation and operation. The strengthening layer of the flexible riser is treated as the cylindrical shell composed of periodic unit-cell beam structures, which is a hypothetical model. The optimization design is conducted through the novel implementation of the asymptotic homogenization (NIAH) method. The multi-objective collaborative flexibility optimization formulation of cylindrical shell structure is proposed, considering the ratio of cross-sectional tensile torsion stiffness to bending stiffness of the strengthening layer as the objectives. The optimal configuration results, the helically wound structures, are obtained, which are the alternative strengthening components of flexible risers. Finally, the optimal structures are compared with the commonly used marine flexible riser, which gives a great verification of the methodology feasibility, and explains why the strengthening layer is designed as the type of helically wound structure.


2021 ◽  
Vol 239 ◽  
pp. 109907
Author(s):  
Qingsheng Liu ◽  
Hongxiang Xue ◽  
Wenyong Tang

2021 ◽  
Vol 116 ◽  
pp. 102882
Author(s):  
Jixiang Song ◽  
Weimin Chen ◽  
Shuangxi Guo ◽  
Dingbang Yan

2021 ◽  
pp. 773-782
Author(s):  
Fang Guo ◽  
Yi Qin ◽  
Fujie Wang ◽  
John T. W. Yeow

Author(s):  
Pengjie Li ◽  
Tianjiao Dai ◽  
Xing Jin ◽  
Leilei Dong ◽  
Shuaiqi Liu ◽  
...  

2021 ◽  
Vol 55 (5) ◽  
pp. 179-195
Author(s):  
Luu Quang Hung ◽  
Zhuang Kang ◽  
Li Shaojie

Abstract In this paper, the dynamics of the flexible riser are investigated based on the absolute nodal coordinate formulation (ANCF). The stiffness, generalized elastic force, external load, and mass matrixes of the element are deduced based on the principle of energy conversion and assembled with the finite element method. The motion equation of the flexible riser is established. The influence of the environmental load conditions on the flexible riser model is studied in the MATLAB environment. Moreover, the accuracy and reliability of the programs are verified for a beam model with theoretical solutions. Finally, the static and dynamic characteristics of the flexible riser are analyzed, systematically adopting the ANCF method, which in turn proves the effectiveness and feasibility of the ANCF. Therefore, the proposed method is a powerful scheme for investigating the dynamics of flexible structures with large deformation in ocean engineering.


2021 ◽  
Vol 79 ◽  
pp. 103047
Author(s):  
Jixiang Song ◽  
Weimin Chen ◽  
Shuangxi Guo ◽  
Dingbang Yan

Sign in / Sign up

Export Citation Format

Share Document