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Mitsuhiro Tanaka

Publications and source records attributed to Mitsuhiro Tanaka.

2 recordsLinked to original sources

Numerical study on fast spectral evolution due to double resonance and applicability of generalized kinetic equation

It is known that for a two-layer fluid system, the kinetic equation governing the evolution of the spectrum of the wave field given by the standard wave turbulence theory (WTT) breaks down due to the existence of a "double resonance", and the spectrum can evolve on a time scale much faster than that predicted by the standard WTT. In this study, using a simplified model for a two-layer fluid system, the applicability of the generalized kinetic equation (GKE) for such a situation is examined numerically. It is shown that the GKE can reproduce the appearance of a sharp peak in the surface wave spectrum due to double resonance, but it overestimates the growth of the peak, consequently failing to quantitatively describe the temporal evolution of the spectrum correctly, particularly near the double resonance point.

physics.flu-dyn

Numerical verification of random phase-and-amplitude formalism of weak turbulence

The Random Phase and Amplitude Formalism (RPA) has significantly extended the scope of weak turbulence studies. Because RPA does not assume any proximity to the Gaussianity in the wavenumber space, it can predict, for example, how the fluctuation of the complex amplitude of each wave mode grows through nonlinear interactions with other modes, and how it approaches the Gaussianity. Thus, RPA has a great potential capability, but its validity has been assessed neither numerically nor experimentally. We compare the theoretical predictions given by RPA with the results of direct numerical simulation (DNS) for a three-wave Hamiltonian system, thereby assess the validity of RPA. The predictions of RPA agree quite well with the results of DNS in all the aspects of statistical characteristics of mode amplitudes studied here.

nlin.CD