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An ILLIAC program for the numerical simulation of homogeneous incompressible turbulence
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1977
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Numerical AnalysisAeroacousticsEngineeringDirect Numerical SimulationFluid MechanicsHomogeneous Incompressible TurbulenceTurbulenceComputational MechanicsIlliac ProgramNumerical SimulationHydrodynamic StabilityTurbulence FieldIncompressible FlowIlliac Computer ProgramTurbulent FlameMultiphase FlowAerospace EngineeringTurbulence ModelingAerodynamics
An algorithm and ILLIAC computer program, developed for the simulation of homogeneous incompressible turbulence in the presence of an applied mean strain, are described. The turbulence field is represented spatially by a truncated triple Fourier series (spectral method) and followed in time using a fourth-order Runge-Kutta algorithm. These include: (1) transformation of variables suggested by Taylor's sudden-distortion theory; (2) implicit viscous diffusion by use of an integrating factor; (3) implicit pressure calculation suggested by Taylor's sudden-distortion theory, and (4) inexpensive control of aliasing by random and phased coordinate shifts.