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Aerodynamic analysis of flapping foils using volume grid deformation code Jin Hwan Ko
The Journal of Mechanical Science and Technology, vol. 23, no. 6, pp.1727-1735, 2009
Abstract : Nature-inspired flapping foils have attracted interest for their high thrust efficiency, but the large motions of their
boundaries need to be considered. It is challenging to develop robust, efficient grid deformation algorithms appropriate
for the large motions in three dimensions. In this paper, a volume grid deformation code is developed based on finite
macro-element and transfinite interpolation, which successfully interfaces to a structured multi-block Navier-Stokes
code. A suitable condition that generates the macro-elements with efficiency and improves the robustness of grid regularity
is presented as well. As demonstrated by an airfoil with various motions related to flapping, the numerical results
of aerodynamic forces by the developed method are shown to be in good agreement with those of an experimental data
or a previous numerical solution.
Keyword :
Volume grid deformation; Computational fluid dynamics; Flapping foils; Finite macro-element; Transfinite interpolation
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