articleTop 1% cited
An approximate deconvolution procedure for large-eddy simulation
Physics of Fluids · 1999 · Vol. 11(7) · pp. 1699–1701
Steffen Stolz✉(ETH Zurich)Nikolaus A. Adams(ETH Zurich)
Abstract
An alternative approach to large-eddy simulation based on approximate deconvolution (ADM) is developed. The main ingredient is an approximation of the nonfiltered field by truncated series expansion of the inverse filter operator. A posteriori tests for decaying compressible isotropic turbulence show excellent agreement with direct numerical simulation. The computational overhead of ADM is similar to that of a scale-similarity model and considerably less than for dynamic models.
Aerodynamics and Acoustics in Jet FlowsFluid Dynamics and Turbulent FlowsProbabilistic and Robust Engineering DesignPhysicsDeconvolutionLarge eddy simulationFilter (signal processing)TurbulenceIsotropyApplied mathematicsInverse filterInverseStatistical physics
Funding
- California Institute of Technology
- James Madison University
- Ames Research Center
Citations
720
FWCI
748.55
field-weighted impact
References
7
Percentile
100%
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Cited by
An approximate deconvolution model for large-eddy simulation with application to incompressible wall-bounded flows
Physics of Fluids · 2001 · 525 citations
Large-Eddy Simulation: Current Capabilities, Recommended Practices, and Future Research
AIAA Journal · 2010 · 526 citations
References
Compact finite difference schemes with spectral-like resolution
Journal of Computational Physics · 1992 · 6,005 citations
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