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On the time-evolution of resonant triads in rotational capillary-gravity water waves

Published 13 Nov 2019 in physics.flu-dyn and nlin.SI | (1911.05213v1)

Abstract: We investigate an effect of the resonant interaction in the case of one-directional propagation of capillary-gravity surface waves arising as the free surface of a rotational water flow. Specifically, we assume a constant vorticity in the body of the fluid which physically corresponds to an underlying current with a linear horizontal velocity profile. We consider the interaction of three distinct modes and we obtain the dynamic equations for a resonant triad. Setting the constant vorticity equal to zero we recover the well known integrable three-wave system.

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