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Interfacial Solitary Waves Over Slowly Varying Topography

机译:在缓慢变化的地形上的界面孤立波

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The propagation of long, weakly nonlinear interfacial waves in a two-layer fluid of slowly varying depth is studied. The governing equations are formulated to include cubic nonlinearity, which dominates quadratic nonlinearity in some parametric neighbourhood of equal layers depths. Numerical solutions are obtained for an initial profile corresponding to either a single solitary wave or an rank-ordered pair of such waves incident in a monotonic transition between two regions of constant depth. The numerical solutions, supplemented by inverse-scattering theory, are used to investigate the change of polarity of the incident waves as they pass through a 'turning point' of approximately equal layer depths.

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