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      On numerical modeling of animal swimming and flight

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          Lattice BGK Models for Navier-Stokes Equation

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            Wing rotation and the aerodynamic basis of insect flight.

            The enhanced aerodynamic performance of insects results from an interaction of three distinct yet interactive mechanisms: delayed stall, rotational circulation, and wake capture. Delayed stall functions during the translational portions of the stroke, when the wings sweep through the air with a large angle of attack. In contrast, rotational circulation and wake capture generate aerodynamic forces during stroke reversals, when the wings rapidly rotate and change direction. In addition to contributing to the lift required to keep an insect aloft, these two rotational mechanisms provide a potent means by which the animal can modulate the direction and magnitude of flight forces during steering maneuvers. A comprehensive theory incorporating both translational and rotational mechanisms may explain the diverse patterns of wing motion displayed by different species of insects.
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              Numerical analysis of blood flow in the heart

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                Author and article information

                Journal
                Computational Mechanics
                Comput Mech
                Springer Nature
                0178-7675
                1432-0924
                December 2013
                May 23 2013
                December 2013
                : 52
                : 6
                : 1221-1242
                Article
                10.1007/s00466-013-0875-2
                3588f8a3-da27-4925-bd03-3d3cf20f702f
                © 2013
                History

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