Optimization on submarine stern design

Author:

Moonesun Mohammad12,Korol Yuri Mikhailovich1,Dalayeli Hosein3,Tahvildarzade Davood3,Javadi Mehran3,Jelokhaniyan Mohammad4,Mahdian Asghar3

Affiliation:

1. Faculty of Ship Design, National University of Shipbuilding Admiral Makarov (NUOS), Nikolaev Ukraine

2. Faculty of MUT, Marine Engineering College, Shahin Shahr, Iran

3. Faculty of MUT, Mechanical Engineering College, Shahin Shahr, Iran

4. Tarbiat Modarres University, Tehran, Iran

Abstract

This article discusses the optimum hydrodynamic shape of the submarine stern based on the minimum resistance. Submarines consist of two major categories of hydrodynamic shape: the teardrop shape and the cylindrical middle-body shape. Due to the parallel middle-body shape in most of the naval submarines, those with cylindrical middle-body are studied here. The bare hull has three main parts: bow, cylinder and stern. This article proposes an optimum stern shape by the computational fluid dynamics method via Flow Vision software. In the hydrodynamic design point of view, the major parameters of the stern included the wake field (variation in fluid velocity) and resistance. The focus of this article is on the resistance at fully submerged mode without any regard for free surface effects. First, all the available equations for the stern shape of submarine are presented. Second, a computational fluid dynamics analysis has been performed according to the shape equations. For all the status, the following parameters are assumed to be constant: velocity, dimensions of domain, diameter, bow shape and total length (bow, middle and stern length).

Publisher

SAGE Publications

Subject

Mechanical Engineering,Ocean Engineering

Reference30 articles.

1. Burcher R, Rydill LJ. Concept in submarine design. Cambridge: The Press Syndicate of the University of Cambridge, Cambridge University Press, 1998, p.295.

2. Yuri NK, Oleg AK. Theory of submarine design. Saint Petersburg: Saint Petersburg State Maritime Technical University, 2001, pp.185–221.

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