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  • Search: person:"Baboolal, S."
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Solitons 2 High-resolution scheme 1 Hyperbolic systems 1 Implicit Lax-Wendroff method 1 Non-staggered scheme 1 Plasma fluid 1 Plasma solitons 1 Plasma-Maxwell equations 1 Shock capturing 1 Shocks 1
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Baboolal, S. 3 Bharuthram, R. 1 Naidoo, R. 1
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Mathematics and Computers in Simulation (MATCOM) 3
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RePEc 3
Showing 1 - 3 of 3
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Two-scale numerical solution of the electromagnetic two-fluid plasma-Maxwell equations: Shock and soliton simulation
Baboolal, S.; Bharuthram, R. - In: Mathematics and Computers in Simulation (MATCOM) 76 (2007) 1, pp. 3-7
Here, we indicate how to integrate the set of conservation equations for mass, momentum and energy for a two-fluid plasma coupled to Maxwell’s equations for the electromagnetic field, written in a composite conservative form, by means of a recently modified non-staggered version of the...
Persistent link: https://www.econbiz.de/10010750051
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Numerical integration of the plasma fluid equations with a modification of the second-order Nessyahu–Tadmor central scheme and soliton modeling
Naidoo, R.; Baboolal, S. - In: Mathematics and Computers in Simulation (MATCOM) 69 (2005) 5, pp. 457-466
Here we outline a modification of the second order central difference scheme based on staggered spatial grids due to Nessyahu and Tadmor [H. Nessyahu, E. Tadmor, Non-oscillatory central differencing for hyperbolic conservation laws, J. Comput. Phys. 87 (1990) 408] to a non-staggered scheme for...
Persistent link: https://www.econbiz.de/10010749204
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Finite-difference modeling of solitons induced by a density hump in a plasma multi-fluid
Baboolal, S. - In: Mathematics and Computers in Simulation (MATCOM) 55 (2001) 4, pp. 309-316
A Lax-Wendroff type semi-implicit numerical scheme is employed to numerically integrate the nonlinear one-dimensional unmagnetized plasma multi-fluid equations for ideal gases to obtain soliton solutions from an initial density hump profile. The time evolution of such solitons is studied and is...
Persistent link: https://www.econbiz.de/10010748564
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