Abstract
A Lagrangian model for the numerical simulation of fluid-structure interaction problems is proposed in the present paper. In the method both fluid and solid phases are described by smoothing particle hydrodynamics: fluid dynamics is studied in the inviscid approximation, while solid dynamics is simulated through an incremental hypoelastic relation. The interface condition between fluid and solid is enforced by a suitable term, obtained by an approximate SPH evaluation of a surface integral of fluid pressure. The method is validated by comparing numerical results with laboratory experiments where an elastic plate is deformed under the effect of a rapidly varying fluid flow. © 2007 Elsevier Ltd. All rights reserved.
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Antoci, C., Gallati, M., & Sibilla, S. (2007). Numerical simulation of fluid-structure interaction by SPH. Computers and Structures, 85(11–14), 879–890. https://doi.org/10.1016/j.compstruc.2007.01.002
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