2012Unpublished venueRequires access

Approximation of spherical wave reflection coefficient from rough sea surface

Mohammad Reza Mousavi, Mahmood Karimi, Ali Jamshidi

Open publisher page 3 citations

Abstract

In underwater applications, acoustic scattering from the sea surface must be considered in any system that utilizes surface-reflected acoustic energy. In this paper, we obtain spherical wave reflection coefficient approximately by expansion of a spherical wave into plane waves and using the method of stationary phase. The obtained spherical wave reflection coefficient depends on various parameters such as frequency and incidence angle of the spherical wave, the length of the path that connects the source to the receiver, and the root-mean-square (RMS) displacement of the rough sea surface. We verify that the spherical wave reflection coefficient approaches to the plane wave reflection coefficient in far field approximation. Finally, the statistical distribution of the spherical wave reflection coefficient is obtained considering statistical characteristics of the source and receiver positions.

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What this paper is about

In underwater applications, acoustic scattering from the sea surface must be considered in any system that utilizes surface-reflected acoustic energy. In this paper, we obtain spherical wave reflection coefficient approximately by expansion of a spherical wave into plane waves and using the method of stationary phase. The obtained spherical wave reflection coefficient depends on various parameters such as frequency and incidence angle of the spherical wave, the length of the path that connects the source to the receiver, and the root-mean-square (RMS) displacement of the rough sea surface. We verify that the spherical wave reflection coefficient approaches to the plane wave reflection coefficient in far field approximation. Finally, the statistical distribution of the spherical wave reflection coefficient is obtained considering statistical characteristics of the source and receiver positions.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In underwater applications, acoustic scattering from the sea surface must be considered in any system that utilizes surface-reflected acoustic energy. In this paper, we obtain spherical wave reflection coefficient approximately by expansion of a spherical wave into plane waves and using the method of stationary phase. The obtained spherical wave reflection coefficient depends on various parameters such as frequency and incidence angle of the spherical wave, the length of the path that connects the source to the receiver, and the root-mean-square (RMS) displacement of the rough sea surface. We verify that the spherical wave reflection coefficient approaches to the plane wave reflection coefficient in far field approximation. Finally, the statistical distribution of the spherical wave reflection coefficient is obtained considering statistical characteristics of the source and receiver positions.

Key concepts: Reflection coefficient, Plane wave, Reflection (computer programming), Surface wave, Optics, Scattering, Spherical wave, Surface (topology)

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