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柔性立管整体分析(英文)
引用本文:孙丽萍,齐博.柔性立管整体分析(英文)[J].船舶与海洋工程学报,2011,10(4):478-484.
作者姓名:孙丽萍  齐博
作者单位:College of Shipbuilding and Ocean Engineering, Harbin Engineering University
基金项目:the National Natural Science Fundation of China (No.50879013);China National 111 Project under Grant No. B07019
摘    要:The mechanical performance of a flexible riser is more outstanding than other risers in violent environmental conditions. Based on the lumped mass method, a steep wave flexible riser configuration attached to a Floating Production Storage and Offloading (FPSO) has been applied to a global analysis in order to acquire the static and dynamic behavior of the flexible riser. The riser was divided into a series of straight massless line segments with a node at each end. Only the axial and torsional properties of the line were modeled, while the mass, weight, and buoyancy were all lumped to the nodes. Four different buoyancy module lengths have been made to demonstrate the importance of mode selection, so as to confirm the optimum buoyancy module length. The results in the sensitivity study show that the flexible riser is not very sensitive to the ocean current, and the buoyancy module can reduce the Von Mises stress and improve the mechanical performance of the flexible riser. Shorter buoyancy module length can reduce the riser effective tension in a specific range of the buoyancy module length when other parameters are constant, but it can also increase the maximum curvature of the riser. As a result, all kinds of the riser performances should be taken into account in order to select the most appropriate buoyancy module length.

关 键 词:flexible  riser  lumped  mass  method  global  analysis  sensitivity  study
收稿时间:7 January 2011

Global analysis of a flexible riser
Liping Sun,Bo Qi.Global analysis of a flexible riser[J].Journal of Marine Science and Application,2011,10(4):478-484.
Authors:Liping Sun  Bo Qi
Institution:1. College of Shipbuilding and Ocean Engineering, Harbin Engineering University, Harbin, 150001, China
Abstract:The mechanical performance of a flexible riser is more outstanding than other risers in violent environmental conditions. Based on the lumped mass method, a steep wave flexible riser configuration attached to a Floating Production Storage and Offloading (FPSO) has been applied to a global analysis in order to acquire the static and dynamic behavior of the flexible riser. The riser was divided into a series of straight massless line segments with a node at each end. Only the axial and torsional properties of the line were modeled, while the mass, weight, and buoyancy were all lumped to the nodes. Four different buoyancy module lengths have been made to demonstrate the importance of mode selection, so as to confirm the optimum buoyancy module length. The results in the sensitivity study show that the flexible riser is not very sensitive to the ocean current, and the buoyancy module can reduce the Von Mises stress and improve the mechanical performance of the flexible riser. Shorter buoyancy module length can reduce the riser effective tension in a specific range of the buoyancy module length when other parameters are constant, but it can also increase the maximum curvature of the riser. As a result, all kinds of the riser performances should be taken into account in order to select the most appropriate buoyancy module length.
Keywords:
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