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High-accuracy large-step explicit Runge–Kutta (HALE-RK) schemes for computational aeroacoustics
Authors:Vasanth Allampalli  Ray Hixon  M Nallasamy  Scott D Sawyer
Institution:1. University of Toledo, MIME Department, 2801 W Bancroft, MS 312, Toledo, OH 43606, USA;2. ASRC Aerospace, Kennedy Space Center, FL 32899, USA;3. Mechanical Engineering Department, University of Akron, Akron, OH 44325, USA
Abstract:In many realistic calculations, the computational grid spacing required to resolve the mean flow gradients is much smaller than the grid spacing required to resolve the unsteady propagating waves of interest. Because of this, the high temporal resolution provided by existing optimized time marching schemes can be excessive due to the small time step required for stability in regions of clustered grid. In this work, explicit fourth-order accurate Runge–Kutta time marching schemes are optimized to increase the inviscid stability limit rather than the accuracy at large time steps. Single and multiple-step optimized schemes are developed and analyzed. The resulting schemes are validated on several realistic benchmark problems.
Keywords:Time marching schemes  Optimized Runge&ndash  Kutta method  2N-storage Runge&ndash  Kutta scheme  Computational aeroacoustics  High stability  Wave propagation  Explicit methods  Inviscid stability limit  Numerical wave number analysis  Numerical error
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