Title of article :
Computational Simulation of Current Forces on Floating Production Storage and O oading in Irregular Waves
Author/Authors :
M.R, Islam BUET - Department of Naval Architecture and Marine Engineering, Bangladesh , O.B, Yaakob University Technology Malaysia - Department of Marine Technology, Malaysia , A.M, Abdul Malik University Technology Malaysiah - Department of Marine Technology, Malaysia , M.Y.B.M, Kamal University Technologi Malaysia - Department of Marine Technology, Malaysia
From page :
53
To page :
60
Abstract :
This paper presents the effect of current forces on the motion of forces on Floating Production Storage and O oading (FPSO) in irregular waves. The objective of this research is to compute the motion of FPSO in irregular waves by time domain simulation including the effect of current forces. A study is made on the slowly varying oscillations of a moored single body system in a current and waves. Linear potential theory is used to describe the uid motion, and three-dimensional source distribution techniques are applied to obtain the hydrodynamic forces and transfer function of the wave exciting forces. OCIMF (1994) data are used for estimation of the current forces. The non-linear time domain simulations have been carried out in irregular waves. Based on it, slowly varying motion responses are examined including the effect of the current forces. Several environmental conditions, such as the current angle of attack, current velocity, signiffcant wave height and mean wave period are considered, which may signiffcantly affect FPSO motion in surge, sway and yaw moments. It is found that the effect of current forces is quite signiffcant when the current velocity is increased. In this simulation, while the current velocity is increased to 3.0 meter/seconds, the impact on FPSO motion is quite signiffcant, which should be taken into consideration from the point of view of safety, failure of mooring systems, operating responses and the dynamic positioning of the FPSO.
Keywords :
FPSO , Current forces , Irregular waves , Motion , Seakeeping.
Journal title :
Scientia Iranica(Transactions B:Mechanical Engineering)
Journal title :
Scientia Iranica(Transactions B:Mechanical Engineering)
Record number :
2700644
Link To Document :
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