A Second Order Lagrangian Model for Irregular Ocean Waves

Author:

Fouques Sébastien1,Krogstad Harald E.2,Myrhaug Dag1

Affiliation:

1. Department of Marine Technology, Norwegian University of Science and Technology, No-7491 Trondheim, Norway

2. Department of Mathematics, Norwegian University of Science and Technology, NO-7491 Trondheim, Norway

Abstract

Synthetic aperture radar (SAR) imaging of ocean waves involves both the geometry and the kinematics of the sea surface. However, the traditional linear wave theory fails to describe steep waves, which are likely to bring about specular reflection of the radar beam, and it may overestimate the surface fluid velocity that causes the so-called velocity bunching effect. Recently, the interest for a Lagrangian description of ocean gravity waves has increased. Such an approach considers the motion of individual labeled fluid particles and the free surface elevation is derived from the surface particles positions. The first order regular solution to the Lagrangian equations of motion for an inviscid and incompressible fluid is the so-called Gerstner wave. It shows realistic features such as sharper crests and broader troughs as the wave steepness increases. This paper proposes a second order irregular solution to these equations. The general features of the first and second order waves are described, and some statistical properties of various surface parameters such as the orbital velocity, slope, and mean curvature are studied.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference13 articles.

1. Wave and Wind Retrieval from SAR Images of the Ocean;Chapron;Ann. Telecommun.

2. Local and Non-Local Curvature Approximation: A New Asymptotic Theory for Wave Scattering;Elfouhaily;Waves Random Media

3. Pierson, W. J. , 1961, “Models of Random Seas Based on the Lagrangian Equations of Motion,” Office of Naval Research, Technical Report No. Nor-285(03), April 1961.

4. Wave Kinematics in Irregular Waves;Skjelbreia

5. Mécanique Analytique;Lagrange

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