Second-order horizontal steady forces and moment on a floating body with small forward speed

Author:

Aranha J. A. P.

Abstract

In a recent work, a simple formula was derived for the ‘wave drift damping’ in a two-dimensional floating body and the obtained expression is exact within the context of the related theory, where only leading-order terms in the forward speed are retained. This formula is now generalized for a three-dimensional problem and the coefficients of the ‘wave drift damping matrix’ are given explicitly in terms of the standard second-order steady forces and moment in the horizontal plane; Munk's yaw moment, related with the steady second-order potential and discussed in Grue & Palm (1993), is not analysed in this paper and the effect of an eventual small angular velocity around the vertical axis is also not considered.Numerical results agree in general with the proposed formula although in a specific case a consistent disagreement has been observed, as discussed in §5.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference13 articles.

1. Wichers, J. E. W. 1982 On the low-frequency surge motions of vessels moored in high seas. 14 Annual OTC. Houston, Texas.

2. Grue, J. & Palm, E. 1993 The mean drift force and yaw moment on marine structure in waves and current.J. Fluid Mech. 150,121–142.

3. Nossen, J. , Grue, J. & Palm, E. 1991 Wave forces on three-dimensional floating bodies with small forward speed.J. Fluid Mech. 227,135–160.

4. Bretherton, F. P. & Garret, C. J. R. 1969 Wave trains in inhomogeneous moving media.Proc. R. Soc. A302,529–554.

5. Newman, J. N. 1978 The theory of ship motions.Adv. Appl. Mech. 18,221–283.

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