Time Domain Simulation of Ship Motion in Irregular Oblique Waves
Publish place: Journal of Applied Fluid Mechanics، Vol: 13، Issue: 2
Publish Year: 1398
Type: Journal paper
Language: English
View: 229
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Document National Code:
JR_JAFM-13-2_014
Index date: 5 January 2022
Time Domain Simulation of Ship Motion in Irregular Oblique Waves abstract
Ship harmonic motion is an important and practical characteristic in ship design and performance evaluation. The development and optimization of hull-form, ship’s dynamic effects, seakeeping performance, and motion control, all require the motion data that includes wave exciting forces as well as dynamic response of the ship. This paper presents a new approach for time-domain simulation of full-scale ship model with four degrees of freedom based on computational fluid dynamics using unsteady RANS method. The key objective of this paper was the full-scale simulation of ship motion in oblique waves and assessment of time domain forces, moments, and other motion parameters. The David Taylor Model Basin (DTMB) 5415 full-scale model has been used for the numerical studies in this paper. The obtained computational results showed good conformation to the results obtained using the strip theory. It is intended to extend this research to subscale test experiments for more definite validation of the results.
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Time Domain Simulation of Ship Motion in Irregular Oblique Waves authors
S. M. Mousavi
Maritime Engineering Department, Malek Ashtar University of Technology
A. R. Khoogar
Mechanical Engineering Department, Malek Ashtar University of Technology
H. Ghassemi
Department of Maritime Engineering, Amirkabir University of Technology, Tehran, Tehran, Iran