Mooring Pattern Optimization Using A Genetic Algorithm

Authors

  • Mahdi Mirzaei Marine Technology Centre (MTC), Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 Johor Bahru, Johor, Malaysia
  • Maimun, A. Marine Technology Centre (MTC), Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 Johor Bahru, Johor, Malaysia
  • Priyanto, A. Marine Technology Centre (MTC), Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 Johor Bahru, Johor, Malaysia
  • Fitriadhy, A. Dept. of Marine Technology, Faculty of Maritime Studies & Marine Science, Universiti Malaysia Terengganu, Kuala Terengganu, Malaysia

DOI:

https://doi.org/10.11113/jt.v66.2519

Keywords:

Mooring pattern, optimization, genetic algorithm

Abstract

In this paper, a constraint Genetic Algorithm is used for the purpose of mooring pattern optimization. The Genetic Algorithm is applied through a mathematical formulation which is introduced to define a typical mooring system optimization problem. The mathematical formulation is used in a case study on a spread moored crane barge, operating in the vicinity of a jacket type platform, in order to minimize its surge motions towards the platform. For this purpose, a set of criteria regarding clearances between anchors and seabed preinstalled facilities (pipelines), and also between the crane barge and the jacket platform are presented and considered. An automatic process of repetitive analyses implementing a MATLAB code as an interface between the Genetic Algorithm and a mooring system analysis program is used, and an optimum solution is resulted by performing 4000 quasi-dynamic analyses in time domain. The effectiveness of the Genetic Algorithm in leading to an optimum mooring system pattern is studied and it is shown that using a proper formulation of the problem, the Genetic Algorithm can be a very useful tool for finding an optimum pattern for mooring systems in fields with constraints on anchor locations and vessel motions.

References

API RP 2SK, 2005. Design and Analysis of Station keeping Systems for Floating Structures.

Barltrop, N.D., 1998. Floating Structures: A Guide for Design and Analysis. Oilfield Pubns Inc.

Bureau Veritas, 2008. Classification of Mooring Systems for Permanent Offshore Units, Guidance Note NI 493 DTM R01 E.

Holland, J. H., 1992. Adaptation in Natural and Artificial Systems: An Introductory Analysis with Applications to Biology, Control and Artificial Intelligence. MIT Press.

Journée, J., Massie, W., 2001. Offshore Hydromechanics.

Mitchell, M., Davis, L. D., 1998. Handbook of Genetic Algorithms.

Noble Denton, 2002. Guidelines for Lifting Operations by Floating Crane Vessels, Report No: 0027/DNI.

Shafieefar, M., Rezvani, A., 2007. Mooring Optimization of Floating Platforms Using a Genetic Algorithm. Ocean Engineering. 34(10): 1413–1421.

Wu, S.-J., Chow, P.-T., 1995. Steady-state Genetic Algorithms for Discrete Optimization of Trusses. Computers & Structures. 56(6): 979–991.

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Published

2014-01-01

Issue

Section

Science and Engineering

How to Cite

Mooring Pattern Optimization Using A Genetic Algorithm. (2014). Jurnal Teknologi, 66(2). https://doi.org/10.11113/jt.v66.2519