Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates

Approved for public release, distribution unlimited === Composite materials are seeing increased use in structural applications because of their various benefits. When composite structures are employed in a water environment, their dynamic responses are greatly affected by the fluid medium. Water...

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Main Author: Kendall, Peter K.
Other Authors: Kwon, Young W.
Published: Monterey, California. Naval Postgraduate School 2012
Online Access:http://hdl.handle.net/10945/4550
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-45502014-12-04T04:08:42Z Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates Kendall, Peter K. Kwon, Young W. Didoszak, Jarema M. Naval Postgraduate School (U.S.) Approved for public release, distribution unlimited Composite materials are seeing increased use in structural applications because of their various benefits. When composite structures are employed in a water environment, their dynamic responses are greatly affected by the fluid medium. Water density is comparable to many composite materials and the effects of fluid-structure interaction on dynamic behaviors of composite structures are significant. The effects of fluid-structure interaction include changes of frequency, magnitude, energy dissipation, etc., of structural characteristics. Hence, it is critical to understand the fluid-structure interaction of composite structures subjected to dynamic loading in water environments. This work focuses on finding parameters affecting the transient dynamic responses of composite structures. Coupled fluidstructure interaction analyses of composite plates are conducted numerically, using finite element models, including various parametric studies. The results are compared to those of dry structures to identify the role of each parameter. 2012-03-14T17:42:16Z 2012-03-14T17:42:16Z 2009-09 Thesis http://hdl.handle.net/10945/4550 464227867 Monterey, California. Naval Postgraduate School
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sources NDLTD
description Approved for public release, distribution unlimited === Composite materials are seeing increased use in structural applications because of their various benefits. When composite structures are employed in a water environment, their dynamic responses are greatly affected by the fluid medium. Water density is comparable to many composite materials and the effects of fluid-structure interaction on dynamic behaviors of composite structures are significant. The effects of fluid-structure interaction include changes of frequency, magnitude, energy dissipation, etc., of structural characteristics. Hence, it is critical to understand the fluid-structure interaction of composite structures subjected to dynamic loading in water environments. This work focuses on finding parameters affecting the transient dynamic responses of composite structures. Coupled fluidstructure interaction analyses of composite plates are conducted numerically, using finite element models, including various parametric studies. The results are compared to those of dry structures to identify the role of each parameter.
author2 Kwon, Young W.
author_facet Kwon, Young W.
Kendall, Peter K.
author Kendall, Peter K.
spellingShingle Kendall, Peter K.
Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates
author_sort Kendall, Peter K.
title Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates
title_short Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates
title_full Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates
title_fullStr Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates
title_full_unstemmed Numerical study of effects of fluid-structure interaction on dynamic responses of composite plates
title_sort numerical study of effects of fluid-structure interaction on dynamic responses of composite plates
publisher Monterey, California. Naval Postgraduate School
publishDate 2012
url http://hdl.handle.net/10945/4550
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