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A novel finite difference formulation for differential expressions involving both first and second derivatives
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1972
Year
Numerical AnalysisNumerical ComputationEngineeringPde-constrained OptimizationMixed ConvectionAutomatic DifferentiationNumerical SimulationTransport PhenomenaSecond DerivativesDifferential AnalysisDifferential ExpressionsCentral Differences SchemeNumerical TreatmentApproximation TheoryUpwind Difference SchemeNumerical MethodsNumerical Method For Partial Differential EquationSimultaneous Convection
Abstract It is shown that the upwind difference scheme of formulating differential expressions, in problems involving transport by simultaneous convection and diffusion, is superior to the central differences scheme, when the local Peclet number of the grid is large. Even better schemes are derived and discussed. It is pointed out that the best finite differences analogues are found by approximating differential expressions as a whole, and that simple (e.g. one‐dimensional) exact solutions form a useful, legitimate and independent source of these optimum algebraic formulae.
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