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A modular and integrated optimization model for UVs

Publication Type : Journal Article

Publisher : Defense Science Journal

Source : Defense Science Journal(2016)

Url : https://web.p.ebscohost.com/abstract?direct=true&profile=ehost&scope=site&authtype=crawler&jrnl=0011748X&AN=112698136&h=GfCl0jm4wCWYGLPMEeNerloLfD6%2beYe8XjyRjSmE7yJJAURO93yVwNTEVUFWhIqqy1v5JBoCwI%2bt8LwGLgFnaQ%3d%3d&crl=c&resultNs=AdminWebAuth&resultLocal=ErrCrlNotAuth&crlhashurl=login.aspx%3fdirect%3dtrue%26profile%3dehost%26scope%3dsite%26authtype%3dcrawler%26jrnl%3d0011748X%26AN%3d112698136

Campus : Chennai

School : School of Engineering

Department : Mechanical Engineering

Year : 2016

Abstract : A modular and integrated optimisation model for the design of underwater vehicles is presented. In the proposed optimisation model two modules(i.e. low fidelity and high fidelity) are incorporated and the basic geometric definition of computer aided design (CAD) is integrated with computational fluid dynamic (CFD) analysis. The hydrodynamic drag is considered as single objective with constraints on the geometric parameters of dimension, space and volume. The CAD model is implemented in MATLAB*TM and CFD model is implemented in Shipflow**TM. A real-world design example of an existing underwater vehicle is presented. The applicability of proposed optimisation model is shown. The presented results show that within given set or sets of constraints the application of optimisation model in design results into an efficient hull form

Cite this Research Publication : Vasudev, K. L., R. Sharma and S. K. Bhattacharyya (2016) "A modular and integrated optimization model for UVs". Defense Science Journal, 66(1): 71 - 80. (Impact factor 0.7)

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