2014Unpublished venueRequires access

Expansion and supplementary tools for ship model testing using CFD methods

J Laudan

Open publisher page 0 citations

Abstract

Computational fluid dynamics has reached a state of the art in which a good agreement between numerical results and corresponding experimental data has been achieved. The results of numerical calculations can be used for a preliminary optimisation of a ship's hull. Furthermore, they yield additional detailed information. The achievable accuracy is still not sufficient for a quantitative prediction of power consumption.

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What this paper is about

Computational fluid dynamics has reached a state of the art in which a good agreement between numerical results and corresponding experimental data has been achieved. The results of numerical calculations can be used for a preliminary optimisation of a ship's hull. Furthermore, they yield additional detailed information. The achievable accuracy is still not sufficient for a quantitative prediction of power consumption.

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Available abstract

Computational fluid dynamics has reached a state of the art in which a good agreement between numerical results and corresponding experimental data has been achieved. The results of numerical calculations can be used for a preliminary optimisation of a ship's hull. Furthermore, they yield additional detailed information. The achievable accuracy is still not sufficient for a quantitative prediction of power consumption.

Key concepts: Computational fluid dynamics, Hull, Marine engineering, Power consumption, Computer science, Power (physics), Engineering, Aerospace engineering

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