Identification of slow drift motions of a truss spar platform using parametric Volterra model

Yazid, E. and Liew, M.S. and Parman, S. and Kurian, V.J. (2015) Identification of slow drift motions of a truss spar platform using parametric Volterra model. Ocean Engineering, 109. pp. 654-668.

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Abstract

Identification of the first and second-order surge motion transfer functions of a truss spar platform from model test data is presented in this paper. The identification is carried out by estimating the time-varying kernels coefficients of a second-order Volterra model. The coefficients are estimated using proposed method, named particle swarm optimization based Kalman smoother (PSO-KS). System input-output data for identification process are wave height and surge motion from a scaled 1:100 model of a prototype truss spar. The applicability of proposed method is assessed numerically and experimentally under unidirectional long-crested random waves. The results show that the linear and quadratic frequency response functions (LFRF and QFRF) as well as the wave and low frequency responses of a truss spar platform can be well identified either in time or frequency domains. The LFRF and QFRF have high resolution so that evolution of the nonlinear wave interactions can be revealed. © 2015 Elsevier Ltd.

Item Type: Article
Impact Factor: cited By 1
Uncontrolled Keywords: Frequency response; Offshore oil wells; Particle swarm optimization (PSO); Transfer functions; Trusses, Frequency domains; Frequency response functions; Identification process; Low-frequency response; Non-linear wave interactions; Surge motions; Truss spars; Volterra model, Spar platforms, floating offshore structure; nonlinear wave; oil platform; random wave; transfer function; wave height; wave-structure interaction
Depositing User: Ms Sharifah Fahimah Saiyed Yeop
Date Deposited: 30 Aug 2021 08:48
Last Modified: 30 Aug 2021 08:48
URI: http://scholars.utp.edu.my/id/eprint/25944

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