Research Article
Nov 1970

Dynamics of Single Point Mooring in Deep Water

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Publication: Journal of the Waterways, Harbors and Coastal Engineering Division
Volume 96, Issue 4

Abstract

The dynamics of a single point mooring of an oceanographic disc buoy with diameter of forty feet were investigated in ocean waves, current and wind for water depths in the order of 10,000 to 20,000 feet. A numerical model was developed to simulate the motion of the buoy and the nylon mooring line. The buoy motion and position were determined at each time increment from integrating the differential equations that arise from considering the buoy to be a rigid body and applying Newton's second law of motion. The solution for the dynamics of the line was developed by integrating the differential equations of motion by utilizing the method of charateristics. The results from the numerical analysis compared favorably with measurements of dynamic line tension for a mooring in 13,000 feet of water near Bermuda.

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Journal of the Waterways, Harbors and Coastal Engineering Division
Volume 96Issue 4November 1970
Pages: 815 - 833

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Published in print: Nov 1970
Published online: Feb 12, 2021

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John H. Nath, M.ASCE
Research Engr., Dept. of Oceanography, Oregon State Univ., Corvallis, Ore.
Michael P. Felix
Dynamics Engr., General Dynamics-Convaix Division, San Diego, Calif.

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