TY - EJOU AU - Mantia, Marco La AU - Dabnichki, Peter TI - Unsteady 3D Boundary Element Method for Oscillating Wing T2 - Computer Modeling in Engineering \& Sciences PY - 2008 VL - 33 IS - 2 SN - 1526-1506 AB - A potential flow based boundary element method was devised to obtain the hydrodynamic forces acting on oscillating wings. A new formulation of the unsteady Kutta condition, postulating a finite pressure difference at the trailing edge of the flapping wing and proposed earlier by the authors, is implemented in the numerical procedure. A comparison with published experimental data (Read et al., 2003) is carried out and the three-dimensional computational results showed good agreement, especially if compared with a similar two-dimensional numerical approach (La Mantia and Dabnichki, 2008) and the potential analytical model of Garrick (1936). The need of considering the differences between the actual flow conditions and the assumptions of the computational model (e.g. to estimate inertia related effects) is underlined and the potential three-dimensional code is deemed to be a further step in the direction of a novel physically based modelling of flapping flight. KW - Panel method KW - Unsteady flow KW - Flapping wing DO - 10.3970/cmes.2008.033.131