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arxiv: math-ph/0208022 · v2 · submitted 2002-08-16 · 🧮 math-ph · math.MP· nlin.CD· physics.ao-ph

A Hamiltonian Formulation for Long Internal Waves

classification 🧮 math-ph math.MPnlin.CDphysics.ao-ph
keywords wavesinternalhamiltonianbackgrounddescribinglongshearvorticity
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A novel canonical Hamiltonian formalism is developed for long internal waves in a rotating environment. This includes the effects of background vorticity and shear on the waves. By restricting consideration to flows in hydrostatic balance, superimposed on a horizontally uniform background of vertical shear and vorticity, a particularly simple Hamiltonian structure arises, which can be thought of as describing a nonlinearly coupled infinite collection of shallow water systems. The kinetic equation describing the time evolution of the spectral energy of internal waves is subsequently derived, and a stationary Kolmogorov solution is found in the high frequency limit. This is surprisingly close to the Garrett--Munk spectrum of oceanic internal waves.

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