A Third-order Compact Gas-kinetic Scheme on Unstructured Meshes for Compressible Navier-Stokes Solutions
arXiv:1602.00394 · doi:10.1016/j.jcp.2016.05.012
Abstract
In this paper, for the first time a compact third-order gas-kinetic scheme is proposed on unstructured meshes for the compressible viscous flow computations. The possibility to de sign such a third-order compact scheme is due to the high-order gas evolution model, where a time-dependent gas distribution function at a cell interface not only provides the fluxes across a cell interface, but also the time evolution of the flow variables at the cell interface as well. As a result, both cell averaged and cell interface flow variables can be used for the initial data reconstruction at the beginning of next time step. A weighted least-square reconstruction has been used for the construction of a third-order initial condition. Therefore, a compact third-order gas-kinetic scheme with the involvement of neighboring cells only can be developed on unstructured meshes. In comparison with other conventional high-order schemes, the current method avoids the use of Gaussian points for the flux integration along a cell interface and the multi-stage Runge-Kutta time stepping technique. The third-order compact scheme is numerically stable under CFL condition above 0.5. Due to the multidimensional gas-kinetic formulation and the coupling of inviscid and viscous terms, even with unstructured meshes the boundary layer solution and the vortex structure can be accurately captured in the current scheme. At the same time, the compact scheme can capture strong shocks as well.
arXiv admin note: substantial text overlap with arXiv:1412.4489
References in corpus (3)
- A Unified Gas-kinetic Scheme for Continuum and Rarefied Flows IV: full Boltzmann and Model Equations
- On the Asymptotic Preserving property of the Unified Gas Kinetic Scheme for the diffusion limit of linear kinetic models
- A Compact Third-order Gas-kinetic Scheme for Compressible Euler and Navier-Stokes Equations
Cited by in corpus (17)
- An Efficient and Accurate Two-Stage Fourth-order Gas-kinetic Scheme for the Navier-Stokes Equations
- A Compact Fourth-order Gas-kinetic Scheme for the Euler and Navier-Stokes Solutions
- Grid-converged Solution and Analysis of the Unsteady Viscous Flow in a Two-dimensional Shock Tube
- A Family of High-order Gas-kinetic Schemes and Its Comparison with Riemann Solver Based High-order Methods
- Two-Stage Fourth-order Gas-kinetic Scheme for Three-dimensional Euler and Navier-Stokes Solutions
- Weighted essentially non-oscillatory scheme on unstructured quadrilateral and triangular meshes for hyperbolic conservation laws
- A gradient-compression-based compact high-order gas-kinetic scheme on three-dimensional hybrid unstructured mesh
- An acoustic and shock wave capturing compact high-order gas-kinetic scheme with spectral-like resolution
- A compact high-order gas-kinetic scheme on unstructured mesh for acoustic and shock wave computations
- Two-stage Fourth-order Gas Kinetic Solver-based Compact Subcell Finite Volume Method for Compressible Flows over Triangular Meshes
- Performance Enhancement for High-order Gas-kinetic Scheme Based on WENO-adaptive-order Reconstruction
- Compact Higher-order Gas-kinetic Schemes with Spectral-like Resolution for Compressible Flow Simulations
- Implicit High-Order Gas Kinetic Scheme for Turbulence Simulation
- A two-stage fourth-order gas-kinetic CPR method for the Navier-Stokes equations on triangular meshes
- A three-dimensional compact high-order gas-kinetic scheme on structured mesh
- A HWENO Reconstruction Based High-order Compact Gas-kinetic Scheme on Unstructured Meshes
- High-order gas-kinetic scheme in curvilinear coordinates for the Euler and Navier-Stokes solutions