Dynamic analysis of the large strain deformation of flexible pipes conveying two-phase fluids. Part II: nonlinear vibration analysis

T. Fashanu, A. Adebusoye, A. Oyediran, O. Adewumi
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引用次数: 0

Abstract

This work presents the nonlinear analysis of the dynamics of large strain deformation of subsea flowlines and jumpers conveying two-phase fluid.  Precisely, flexible pipes operating in the stated condition undergo large strain deformations. Thus, the known nonlinear deterministic model of the  system is solved using method of discretized perturbation. Precisely, this study obtained the nonlinear natural frequency of simply supported flexible  pipes modelled using the large strain deformation theory. Results show that both hardening and softening nonlinear behaviors are indicated for pipe  undergoing large strain deformation compared with deformations modelled with small strain theory. Thus, operational insights and parameters for  sustainable management of large strain deformed subsea flow lines and jumpers conveying two phase flow are made available. 
两相流体柔性管道大应变变形的动力学分析。第二部分:非线性振动分析
本文对两相流体输送的海底管线和跳线进行了大应变变形的非线性动力学分析。准确地说,在规定条件下工作的柔性管道会发生很大的应变变形。因此,用离散摄动法求解了已知的系统非线性确定性模型。本文精确地得到了采用大应变变形理论建模的简支柔性管道的非线性固有频率。结果表明:与用小应变理论模拟的变形相比,大应变变形下的管道既有硬化非线性行为,也有软化非线性行为;因此,对于大应变变形海底管线和输送两相流的跳线的可持续管理的操作见解和参数是可用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.10
自引率
0.00%
发文量
126
审稿时长
11 weeks
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