Numerical study of hydrodynamic interaction between two ships in calm water

<b>[Objectives]</b> This paper researches the influence of hydrodynamic interaction between two parallel vehicles advancing in close proximity on maneuvering.<b>[Methods]</b> Based on an unsteady RANS approach, the hydrodynamic interaction between two parallel ship models adv...

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Main Authors: GAO Zhiyong, BI Yi, YAO Chaobang
Format: Article
Language:English
Published: Editorial Office of Chinese Journal of Ship Research 2017-12-01
Series:Zhongguo Jianchuan Yanjiu
Subjects:
Online Access:http://www.ship-research.com/EN/Y2017/V12/I6/6
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spelling doaj-e23832127fb34d40aae6ef60bc25fb432020-11-24T23:29:16ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852017-12-0112661410.3969/j.issn.1673-3185.2017.06.002201706002Numerical study of hydrodynamic interaction between two ships in calm waterGAO Zhiyong0BI Yi1YAO Chaobang2Department of Naval Architecture Engineering, Naval University of Engineering, Wuhan 430033, ChinaDepartment of Naval Architecture Engineering, Naval University of Engineering, Wuhan 430033, ChinaDepartment of Naval Architecture Engineering, Naval University of Engineering, Wuhan 430033, China<b>[Objectives]</b> This paper researches the influence of hydrodynamic interaction between two parallel vehicles advancing in close proximity on maneuvering.<b>[Methods]</b> Based on an unsteady RANS approach, the hydrodynamic interaction between two parallel ship models advancing in calm water in close proximity is analyzed via numerical 3D simulations. The effects of transverse and longitudinal distances on hydrodynamic forces acting on the hull under distinct forward velocities are investigated. Meanwhile, the changes and contributions of various disturbance components in the hydrodynamic interactions of two parallel ships are discussed.<b>[Results]</b> The results indicate that the lateral force reaches its peak when the longitudinal distance between the ships' centers is zero, with each ship drawing the other close. The effect of lateral interaction sees a downward trend with the lateral distance increases, with the maximum decrease of lateral force reaching 50%in the studied range. The longitudinal distance has a great effect on yaw moment, resulting in changes in value and direction. It is easier for two ships to collide when they are near or have just pulled away. The influence of wave-making on the hydrodynamic interaction between two hulls can be ignored at low speeds, while at high speeds it should be taken into account.<b>[Conclusions]</b> The numerical results of this paper provide the basis for constructing a mathematical model of the interaction between two ships.http://www.ship-research.com/EN/Y2017/V12/I6/6two parallel shipshydrodynamic interactioncalm waterwave-making
collection DOAJ
language English
format Article
sources DOAJ
author GAO Zhiyong
BI Yi
YAO Chaobang
spellingShingle GAO Zhiyong
BI Yi
YAO Chaobang
Numerical study of hydrodynamic interaction between two ships in calm water
Zhongguo Jianchuan Yanjiu
two parallel ships
hydrodynamic interaction
calm water
wave-making
author_facet GAO Zhiyong
BI Yi
YAO Chaobang
author_sort GAO Zhiyong
title Numerical study of hydrodynamic interaction between two ships in calm water
title_short Numerical study of hydrodynamic interaction between two ships in calm water
title_full Numerical study of hydrodynamic interaction between two ships in calm water
title_fullStr Numerical study of hydrodynamic interaction between two ships in calm water
title_full_unstemmed Numerical study of hydrodynamic interaction between two ships in calm water
title_sort numerical study of hydrodynamic interaction between two ships in calm water
publisher Editorial Office of Chinese Journal of Ship Research
series Zhongguo Jianchuan Yanjiu
issn 1673-3185
1673-3185
publishDate 2017-12-01
description <b>[Objectives]</b> This paper researches the influence of hydrodynamic interaction between two parallel vehicles advancing in close proximity on maneuvering.<b>[Methods]</b> Based on an unsteady RANS approach, the hydrodynamic interaction between two parallel ship models advancing in calm water in close proximity is analyzed via numerical 3D simulations. The effects of transverse and longitudinal distances on hydrodynamic forces acting on the hull under distinct forward velocities are investigated. Meanwhile, the changes and contributions of various disturbance components in the hydrodynamic interactions of two parallel ships are discussed.<b>[Results]</b> The results indicate that the lateral force reaches its peak when the longitudinal distance between the ships' centers is zero, with each ship drawing the other close. The effect of lateral interaction sees a downward trend with the lateral distance increases, with the maximum decrease of lateral force reaching 50%in the studied range. The longitudinal distance has a great effect on yaw moment, resulting in changes in value and direction. It is easier for two ships to collide when they are near or have just pulled away. The influence of wave-making on the hydrodynamic interaction between two hulls can be ignored at low speeds, while at high speeds it should be taken into account.<b>[Conclusions]</b> The numerical results of this paper provide the basis for constructing a mathematical model of the interaction between two ships.
topic two parallel ships
hydrodynamic interaction
calm water
wave-making
url http://www.ship-research.com/EN/Y2017/V12/I6/6
work_keys_str_mv AT gaozhiyong numericalstudyofhydrodynamicinteractionbetweentwoshipsincalmwater
AT biyi numericalstudyofhydrodynamicinteractionbetweentwoshipsincalmwater
AT yaochaobang numericalstudyofhydrodynamicinteractionbetweentwoshipsincalmwater
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