arXiv · 2409.08851
On the performances of standard and kinetic energy preserving time-integration methods for incompressible-flow simulations
Abstract
The effects of kinetic-energy preservation errors due to Runge-Kutta (RK) temporal integrators have been analyzed for the case of large-eddy simulations of incompressible turbulent channel flow. Simulations have been run using the open-source solver Xcompact3D with an implicit spectral vanishing viscosity model and a variety of temporal Runge-Kutta integrators. Explicit pseudo-symplectic schemes, with improved energy preservation properties, have been compared to standard RK methods. The results show a marked decrease in the temporal error for higher-order pseudo-symplectic methods; on the other hand, an analysis of the energy spectra indicates that the dissipation introduced by the commonly used three-stage RK scheme can lead to significant distortion of the energy distribution within the inertial range. A cost-vs-accuracy analysis suggests that pseudo-symplectic schemes could be used to attain results comparable to traditional methods at a reduced computational cost.
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Marco Artiano, Carlo De Michele, Francesco Capuano, Gennaro Coppola. 2024-09-13. On the performances of standard and kinetic energy preserving time-integration methods for incompressible-flow simulations. https://arxiv.org/abs/2409.08851
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