CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY

M. Sharif Khan1*, Md. Mahbubar Rahman1 and Md. Mashud Karim2 1 Department of Mathematics, MIST, Mirpur Cantonment, Dhaka-1216, Bangladesh *E-mail: sharif918590@gmail.com E-mail: md.mahbubar@gmail.com 2 Department of Naval Architecture & Marine Engineering, BUET, Dhaka-1000, Bangladesh E-mail: m...

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Main Authors: Khan, M. Sharif, Rahman, Md. Mahbubar, Karim, Md. Mashud
Format: Article
Sprog:engelsk
Udgivet: R&D Wing, MIST 2020
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Online adgang:http://hdl.handle.net/123456789/509
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author Khan, M. Sharif
Rahman, Md. Mahbubar
Karim, Md. Mashud
author_browse Karim, Md. Mashud
Khan, M. Sharif
Rahman, Md. Mahbubar
author_facet Khan, M. Sharif
Rahman, Md. Mahbubar
Karim, Md. Mashud
author_sort Khan, M. Sharif
collection DSpace
description M. Sharif Khan1*, Md. Mahbubar Rahman1 and Md. Mashud Karim2 1 Department of Mathematics, MIST, Mirpur Cantonment, Dhaka-1216, Bangladesh *E-mail: sharif918590@gmail.com E-mail: md.mahbubar@gmail.com 2 Department of Naval Architecture & Marine Engineering, BUET, Dhaka-1000, Bangladesh E-mail: md.mahbubmashudbuet@gmail.com, mmkarim@name.buet.ac.bd
format Article
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institution My University
language English
publishDate 2020
publishDateRange 2020
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publisher R&D Wing, MIST
publisherStr R&D Wing, MIST
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spelling oai:localhost:123456789-5092020-06-10T05:15:17Z CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY Khan, M. Sharif Rahman, Md. Mahbubar Karim, Md. Mashud Computational Fluid Dynamics (CFD), Hull Form Optimization, Numerical Simulation, Underwater Vehicle, Turbulence Model, 3D Submarine Shape. M. Sharif Khan1*, Md. Mahbubar Rahman1 and Md. Mashud Karim2 1 Department of Mathematics, MIST, Mirpur Cantonment, Dhaka-1216, Bangladesh *E-mail: sharif918590@gmail.com E-mail: md.mahbubar@gmail.com 2 Department of Naval Architecture & Marine Engineering, BUET, Dhaka-1000, Bangladesh E-mail: md.mahbubmashudbuet@gmail.com, mmkarim@name.buet.ac.bd Drag estimation and shape optimization of submarine shaped hulls are important for energy efficiency and hull form improvement. In this study, fluid flow around the 3D DREA bare submarine hull is simulated with the help of finite volume method. Widely implemented Reynolds-averaged Navier-Stokes (RANS) approach and SST k-ω turbulence model with low-Re version are used to represent turbulent transport equations. Computed results are compared with experimental results as well as simulated results of other researchers and found satisfactory. The velocity distribution (vectors, contours and streamlines), pressure distribution and drag coefficient are also analyzed. The result of this study illustrated the flow physics around 3D submarine shaped hull which might be helpful for improvement of design of such underwater bodies. 2020-06-10T05:15:17Z 2020-06-10T05:15:17Z 2018-12 Article 2224-2007 http://hdl.handle.net/123456789/509 en application/pdf R&D Wing, MIST
spellingShingle Computational Fluid Dynamics (CFD), Hull Form Optimization, Numerical Simulation, Underwater Vehicle, Turbulence Model, 3D Submarine Shape.
Khan, M. Sharif
Rahman, Md. Mahbubar
Karim, Md. Mashud
CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY
title CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY
title_full CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY
title_fullStr CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY
title_full_unstemmed CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY
title_short CFD SIMULATION OF FLOW AROUND 3D SUBMARINE SHAPED BODY
title_sort cfd simulation of flow around 3d submarine shaped body
topic Computational Fluid Dynamics (CFD), Hull Form Optimization, Numerical Simulation, Underwater Vehicle, Turbulence Model, 3D Submarine Shape.
url http://hdl.handle.net/123456789/509
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