A new approach to computational turbulence modeling
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Summary
A new approach to Computational Fluid Dynamics CFD using adaptive stabilized Galerkin finite element methods with duality based a posteriori error control for chosen output quantities of interest, where automatically by adaptivity certain features of the flow are resolved in a Direct Numerical Simulation DNS, while certain other small scale turbulent features are left unresolved in a Large Eddy Simulation LES.
- Type
- article
- Published
- 2006-04-15
- Cited by
- 129
- References
- 21
- OpenAlex
- https://openalex.org/W2146207245
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17276425
Keywords
Computational fluid dynamics, Mathematics, A priori and a posteriori, Applied mathematics, Turbulence
References
- Adaptive DNS/LES : a new agenda in cfd
- Encyclopedia of computational mechanics
- Adaptive error control for finite element approximations of the lift and drag coefficients in viscous flow
- Spectral element methods for the incompressible Navier-Stokes equations
- On Duality-Based A Posteriori Error Estimation in Various Norms and Linear Functionals for Large Eddy Simulation
- Computation of Mean Drag for Bluff Body Problems Using Adaptive DNS/LES
- Large-Eddy Simulation of the Flow Around a Bluff Body
- An optimal control approach to a posteriori error estimation in finite element methods
- Introduction to Adaptive Methods for Differential Equations
- Adaptive finite element methods for incompressible fluid flow
- Applied Mathematics: Body and Soul: Calculus in Several Dimensions
- A Feed-Back Approach to Error Control in Finite Element Methods: Basic Analysis and Examples
- Large eddy simulation for incompressible flows
- Large Eddy Simulation for Incompressible Flows
- Large-eddy simulation of the flow around a bluff body
- Finite Element Methods for the Incompressible Navier-Stokes Equations
- Computability and Adaptivity in CFD
- ON DUALITY BASED A POSTERIORI ERROR ESTIMATION IN VARIOUS NORMS AND LINEAR FUNCTIONALS FOR LES
- Flow Around a Surface-Mounted Cube,
- Adaptive finite element methods for conservation laws
Cited by
- Towards the development of adaptive finite element methods for aeroacoustics
- Residual-Based Variational Multiscale Large Eddy Simulation Of Turbulent Channel Flow
- Automated Solution of Differential Equations by the Finite Element Method: The FEniCS Book
- Simulation of Incompressible Flow Around a Rotating Sphere
- A study of the effects of bifurcations in swirling flows using Large Eddy Simulation and mesh adaptation
- Modeling Thermal Turbulence Using Implicit Large Eddy Simulation
- Locally Conservative, Stabilized Finite Element Methods for a Class of Variable Coefficient Navier-Stokes Equations
- Sensitivity Analysis of Near-Wall Turbulence Modeling for Large Eddy Simulation of Incompressible Flows
- Nonlinear subgrid finite element models for low Mach number flows coupled with radiative heat transfer
- Long-Term Stability Estimates and Existence of a Global Attractor in a Finite Element Approximation of the Navier-Stokes Equations with Numerical Subgrid Scale Modeling
- Simulating Drag Crisis for a Sphere Using Skin Friction Boundary Conditions
- Irreversibility in reversible systems
- Numerical simulations and observations of the role of katabatic winds in the creation and maintenance of Scharffenbergbotnen blue ice area, Antarctica
- Computation of aeroacoustic sources for a Gulfstream G550 nose landing gear model using adaptive FEM
- Adaptive computation of aeroacoustic sources for a rudimentary landing gear
- Subgrid scale stabilized finite elements for low speed flows
- Residual‐based artificial viscosity for simulation of turbulent compressible flow using adaptive finite element methods
- Simulation of Turbulent Flow Past Bluff Bodies on Coarse Meshes Using General Galerkin Methods: Drag Crisis and Turbulent Euler Solutions
- An adaptive finite element method for inviscid compressible flow
- Computational error-analysis of a discontinuous Galerkin discretization applied to large-eddy simulation of homogeneous turbulence
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