On the dynamics of strong Langmuir turbulence through the five recent numerical schemes in the plasma physics
DOI10.1002/NUM.22681OpenAlexW3109020264WikidataQ115397555 ScholiaQ115397555MaRDI QIDQ6086489
Publication date: 12 December 2023
Published in: Numerical Methods for Partial Differential Equations (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/num.22681
Adomian decomposition methodnumerical simulationcubic B-spline methodEl-kalla methodexponential cubic B-spline methodextended cubic B-spline methodnonlinear KGZ equations
Numerical computation using splines (65D07) PDEs in connection with fluid mechanics (35Q35) Hydrology, hydrography, oceanography (86A05) Shear flows and turbulence (76F10) Hydro- and aero-acoustics (76Q05) Statistical mechanics of plasmas (82D10) Spline approximation (41A15) Turbulent boundary layers (76F40) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65M99) Ionized gas flow in electromagnetic fields; plasmic flow (76X05) Traveling wave solutions (35C07) PDEs in connection with geophysics (35Q86) Geophysical flows (76U60)
Cites Work
- Modified implicit fractional difference scheme for 2D modified anomalous fractional sub-diffusion equation
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- Modified extended tanh-function method and its applications to the Bogoyavlenskii equation
- Orbital stability of solitary waves of the coupled Klein-Gordon-Zakharov equations
- Study of wave effect on vorticity in Langmuir turbulence using wave-phase-resolved large-eddy simulation
- Langmuir turbulence and filament frontogenesis in the oceanic surface boundary layer
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