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Three-dimensional static analysis of flexible risers by a lumped-mass method

Authors
Hong, Sub
Issue Date
1994
Publisher
Publ by Int Soc of Offshore and Polar Engineerns (ISOPE), Golden, CO, United States
Citation
Proceedings of the International Offshore and Polar Engineering Conference, v.2, pp 251 - 257
Pages
7
Journal Title
Proceedings of the International Offshore and Polar Engineering Conference
Volume
2
Start Page
251
End Page
257
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/7790
ISSN
0000-0000
Abstract
The present paper suggests a new lumped-mass method for a three-dimensional quasi-static analysis of flexible riser. Solution of the fully non-linear governing equations based on the Krichoff's beam theory is numerically approached. The considered nonlinear terms are the geometric non-linearity, the hydrodynamic non-linear drag forces and the nonlinear-effect of pipe flow. A continuous riser is discretized in a lumped-mass model, in which two neighboured lumped-mass points are connected with a straight massless beam element. The Dirac-dalta function is employed to solve the mathematically singular equations of the discrete numerical model. An incremental-iterative solving technique is chose, in which the nonlinear differential equations are linearized by means of the Newton-method in an incremental way. The riser/seafloor interaction is dealt in a new way, in which the normal reaction forces at contact points are treated as a unknown state variable. The effect of bottom friction is investigated with changing the loading speed of external forces on the riser.
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Hong, Sup
연구전략본부 (KRISO 유럽센터)
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