Publication | Closed Access
A relaxation approach to patched-grid calculations with the Euler equations
30
Citations
6
References
1985
Year
Numerical AnalysisConservative Zonal-boundary ConditionEngineeringExplicit Integration SchemesComputational MechanicsNumerical ComputationNumerical SimulationModeling And SimulationComputational ElectromagneticsComputational GeometryApproximation TheoryBoundary Element MethodMethod Of Fundamental SolutionSemi-implicit MethodComputer EngineeringRelaxation ApproachUnstructured Mesh GenerationNumerical Method For Partial Differential EquationAerospace EngineeringNumerical TreatmentExplicit Scheme
A conservative zonal-boundary condition that was used with explicit integration schemes is extended to implicit, upwind, relaxation schemes; in particular to the Osher scheme. The rate of convergence was found to increase considerably with the use of the implicit, relaxation-zonal scheme when compared to the explicit scheme. The relaxation-zonal scheme has also been used in a time-accurate mode. Results demonstrating the time accuracy of the scheme and the feasibility of performing calculations in cases where some parts of the given system move relative to others (for example, rotor-stator configurations) are presented.
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