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http://dx.doi.org/10.1515/ijnaoe-2015-0048

Numerical analysis for hydrodynamic interaction effects between vessel and semi-circle bank wall  

Lee, Chun-Ki (Division of Navigation Science, Korea Maritime University)
Moon, Serng-Bae (Division of Navigation Science, Korea Maritime University)
Oh, Jin-Seok (Division of Marine Engineering, Korea Maritime University)
Lee, Sang-Min (Department of Marine Science and Production, Kunsan National University)
Publication Information
International Journal of Naval Architecture and Ocean Engineering / v.7, no.4, 2015 , pp. 691-698 More about this Journal
Abstract
The hydrodynamic interaction forces and moments induced by the vicinity of bank on a passing vessel are known as wall effects. In this paper, the characteristics of interaction acting on a passing vessel in the proximity of a semi-circle bank wall are described and illustrated, and the effects of ship velocity, water depth and the lateral distance between vessel and semi-circle bank wall are discussed. For spacing between ship and semi-circle bank wall (SP) less than about 0.2 L and depth to ship's draft ratio (h/d) less than around 2.0, the ship-bank interaction effects increase steeply as h/d decreases. However, for spacing between ship and semi-circle bank wall (SP) more than about 0.3 L, the ship-bank interaction effects increase slowly as h/d decreases, regardless of the water depth. Also, for spacing between ship and semi-circle bank wall (SP) less than about 0.2 L, the hydrodynamic interaction effects acting on large vessel increase largely as ship velocity increases. In the meantime, for spacing between ship and semi-circle bank wall ($S_P$) more than 0.3 L, the interaction effects increase slowly as ship velocity increases.
Keywords
Interaction effect; Wall effect; Spacing between vessel and semi-circle bank wall; Ship velocity; Water depth;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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1 Newman, J.N., 1965. The force and moment on a slender body of revolution moving near a wall, DTMB Report 2127. Washington, D.C.: Department of the navy.
2 Yasukawa, H., 2002a. Ship manoeuvring motions in the proximity of bank. Transactions of the West-Japan Society of Naval Architects, 104, pp.41-52.
3 Yasukawa, H., 2002b. Ship manoeuvring motions between two ships navigating in the proximity. Transactions of the West-Japan Society of Naval Architects, 105, pp.43-54.
4 Yeung, R.W. and Tan, W.T., 1980. Hydrodynamic interactions of ships with fixed obstacles. Journal of Ship Research, 24, pp.50-59.
5 Davis, A.M.J., 1986. Hydrodynamic effects of fixed obstacles on ships in shallow water. Journal of Ship Research, 30, pp.94-102.
6 Kijima, K., Furukawa, Y. and Qing, H., 1991. The interaction effects between two ships in the proximity of bank wall. Transactions of the West-Japan Society of Naval Architects, 81, pp.101-112.
7 Kijima, K. and Furukawa, Y., 1994. A ship manoeuvring motion in the poroximity of pier. Proceedings of the International Committee on Manoeuvring and Control of Marine Craft, Southampton, UK, pp.211-222.
8 Kijima, K. and Qing, H., 1987. Manoeuvering motion of a ship in the proximity of bank wall. Journal of the Society of Naval Architects of Japan, 162, pp.125-132.
9 Lee, C.K. and Lee, S.G., 2008. Investigation of ship maneuvering with hydrodynamic effects between ship and bank. Journal of Mechanical Science and Technology, 22, pp.1230-1236.   DOI
10 Newman, J.N., 1969. Lateral motion of a slender body between two parallel walls. Journal of Fluid Mechanics, 39, pp.97-115.   DOI
11 Newman, J.N., 1972. Some theories for ship maneuvering. Journal of Mechanical Engineering Science, 14, pp.34-42.
12 Norrbin, N.H., 1974. Bank effects on a ship moving through as short dredged channel. Proceedigns of 10th Symposium on Naval Hydrodynamics, Office of Naval Research, Washington, D.C., pp.71-88.
13 Taylor, P.J., 1973. The blockage coefficient for flow about an arbitrary body immersed in a channel. Journal of Ship Research, 17, pp.97-105.
14 Yasukawa, H., 1991. Bank effect on ship maneuverability in a channel with varying width. Transactions of the West-Japan Society of Naval Architects, 81, pp.85-100.