1986Naval architecture and ocean engineeringRequires access

A STUDY ON WAVE LOADS ACTING ON A SHIP IN LARGE AMPLITUDE WAVES

Masataka Fujino, Bum Sang Yoon

Open publisher page 6 citations

Abstract

A practical method is advocated for extending strip method synthesis to the prediction of nonlinear wave loads on a ship advancing in large amplitude waves, loads that are quite different from those in small amplitude waves. The hydrodynamic radiation and diffraction forces, which are calculated for the time-varying submerged portion of a ship, are nonlinear and are integrated in the longitudinal direction to obtain the total hydrodynamic forces and moments acting on the ship.

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What this paper is about

A practical method is advocated for extending strip method synthesis to the prediction of nonlinear wave loads on a ship advancing in large amplitude waves, loads that are quite different from those in small amplitude waves. The hydrodynamic radiation and diffraction forces, which are calculated for the time-varying submerged portion of a ship, are nonlinear and are integrated in the longitudinal direction to obtain the total hydrodynamic forces and moments acting on the ship.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A practical method is advocated for extending strip method synthesis to the prediction of nonlinear wave loads on a ship advancing in large amplitude waves, loads that are quite different from those in small amplitude waves. The hydrodynamic radiation and diffraction forces, which are calculated for the time-varying submerged portion of a ship, are nonlinear and are integrated in the longitudinal direction to obtain the total hydrodynamic forces and moments acting on the ship.

Key concepts: Amplitude, Nonlinear system, Diffraction, Response amplitude operator, Longitudinal wave, Mechanics, Ship motions, Physics

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