A robust and reliable approach to nonlinear dynamical problems

A new approach, which utilizes Gaussian Lagrange distributed approximating functionals (LDAFs) for evaluating spatial derivatives to high accuracy is proposed for solving nonlinear dynamical problems. Three different nonlinear problems (Burgers' equation, a nonlinear Fokker-Planck equation and...

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Published inComputer physics communications Vol. 111; no. 1; pp. 87 - 92
Main Authors Wei, G.W., Zhang, D.S., Kouri, D.J., Hoffman, D.K.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.06.1998
Elsevier Science
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Abstract A new approach, which utilizes Gaussian Lagrange distributed approximating functionals (LDAFs) for evaluating spatial derivatives to high accuracy is proposed for solving nonlinear dynamical problems. Three different nonlinear problems (Burgers' equation, a nonlinear Fokker-Planck equation and the Korteweg-de Vries equation) are used to demonstrate the usefulness and test the accuracy of the method. It is found that the present approach is robust for a variety of different nonlinear dynamical problems, and, using equivalent parameters, is the most accurate available method for the problems which we have examined.
AbstractList A new approach, which utilizes Gaussian-Lagrange distributed approximating functionals (LDAFs) for evaluating spatial derivatives to high accuracy is proposed for solving nonlinear dynamical problems. Three different nonlinear problems (Burgers' equation, a nonlinear Fokker-Planck equation and the Korteweg-de Vries equation) are used to demonstrate the usefulness and test the accuracy of the method. It is found that the present approach is robust for a variety of different nonlinear dynamical problems, and, using equivalent parameters, is the most accurate available method for the problems which we have examined.
Author Zhang, D.S.
Kouri, D.J.
Hoffman, D.K.
Wei, G.W.
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Issue 1
Keywords 52.35.Mw
02.70.Rw
47.20.Ky
Korteweg-de Vries equation
Partial differential equations
Theoretical study
Gaussian distribution
Fokker-Planck equation
Nonlinear dynamical systems
Function approximation
Burgers equation
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Snippet A new approach, which utilizes Gaussian Lagrange distributed approximating functionals (LDAFs) for evaluating spatial derivatives to high accuracy is proposed...
A new approach, which utilizes Gaussian-Lagrange distributed approximating functionals (LDAFs) for evaluating spatial derivatives to high accuracy is proposed...
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SubjectTerms Computational techniques
Exact sciences and technology
Fluid dynamics
Fundamental areas of phenomenology (including applications)
Hydrodynamic stability
Mathematical methods in physics
Nonlinear waves and nonlinear wave propagation (including parametric effects, mode coupling, ponderomotive effects, etc.)
Nonlinearity (including bifurcation theory)
Physics
Physics of gases, plasmas and electric discharges
Physics of plasmas and electric discharges
Waves, oscillations, and instabilities in plasmas and intense beams
Title A robust and reliable approach to nonlinear dynamical problems
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