Characterisation of fluid-structure interaction for water impact of composite panels

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Abstract

Hydrodynamic loads can be very significant for high performance marine vessels. Water impact of panels, known as "slamming", typically generates high magnitude short duration pressure pulses that move across the structure. In the case of compliant panels there can be significant coupling between the pressures and the structural responses. While there has been significant development of numerical methods to simulate this type of fluid-structure interaction there is only very limited experimental data available for validation of the simulation approaches. This paper describes an experimental study of sandwich composite panels subjected to water slamming impacts. The results demonstrate that compliant panels subjected to water slamming impacts experience different pressures than rigid panels, and have different structural responses than predicted by traditional uniform pressure based analysis approaches. The study also characterizes the significant effects that the dimensions of pressure transducers and data acquisition sampling rates have on the measured pressures.

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Battley, M. A., & Allen, T. D. (2012). Characterisation of fluid-structure interaction for water impact of composite panels. International Journal of Multiphysics, 6(3), 283–303. https://doi.org/10.1260/1750-9548.6.3.283

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