Nonlinear Wave Loads on a Submerged Deck by the Green–Naghdi Equations

Author:

Hayatdavoodi Masoud1,Cengiz Ertekin R.2

Affiliation:

1. Department of Maritime Systems Engineering, Texas A&M University at Galveston, Galveston, TX 77554 e-mail:

2. Fellow ASME Ocean and Resources Engineering Department, SOEST, University of Hawaii at Manoa, 2540 Dole Street, Holmes 402, Honolulu, HI 96822 e-mail:

Abstract

We present a comparative study of the two-dimensional linear and nonlinear vertical and horizontal wave forces and overturning moment due to the unsteady flow of an inviscid, incompressible fluid over a fully submerged horizontal, fixed deck in shallow-water. The problem is approached on the basis of the level I Green–Naghdi (G–N) theory of shallow-water waves. The main objective of this paper is to present a comparison of the solitary and periodic wave loads calculated by use of the G–N equations, with those computed by the Euler equations and the existing laboratory measurements, and also with linear solutions of the problem for small-amplitude waves. The results show a remarkable similarity between the G–N and the Euler solutions and the laboratory measurements. In particular, the calculations predict that the thickness of the deck, if it is not “too thick,” has no effect on the vertical forces and has only a slight influence on the two-dimensional horizontal positive force. The calculations also predict that viscosity of the fluid has a small effect on these loads. The results have applications to various physical problems such as wave forces on submerged coastal bridges and submerged breakwaters.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference30 articles.

1. Hayatdavoodi, M., and Ertekin, R. C., 2012, “Nonlinear Forces on a Submerged, Horizontal Plate: The GN Theory,” The 27th International Workshop on Water Waves and Floating Bodies, Copenhagen, Denmark, Apr. 22–25, pp. 69–72.

2. Wave Forces on a Submerged Horizontal Plate. Part I: Theory and Modeling;J. Fluids Struct

3. Wave Forces on a Submerged Horizontal Plate. Part II: Solitary and Cnoidal Waves;J. Fluids Struct

4. Hayatdavoodi, M., and Ertekin, R. C., 2014, “A Comparative Study of Nonlinear Shallow-Water Wave Loads on a Submerged Horizontal Box,” Proceedings of 33rd ASME International Conference on Ocean, Offshore and Arctic Engineering, ASME Paper No. OMAE2014-24572. 10.1115/OMAE2014-24572

5. On the Theory of Water Waves;Proc. R. Soc. London, Ser. A,1974

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