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Titlebook: Direct and Large-Eddy Simulation IX; Jochen Fröhlich,Hans Kuerten,Vincenzo Armenio Conference proceedings 2015 Springer International Publ

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楼主: Conjecture
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Implicit Large-Eddy Simulation of Isotropic Turbulent MixingIn practical turbulent flow applications exhibiting extreme geometrical complexity and a broad range of length and time scales direct numerical simulation (DNS) is prohibitively expensive and dependable large scale predictions of highly nonlinear processes must be typically achieved with under-resolved computer simulation models.
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New Differential Operators for Large-Eddy Simulation and Regularization ModelingWe consider the numerical simulation of the incompressible Navier-Stokes (NS) equations.
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Design of High-Order Implicit Filters on Unstructured Grids for the Identification of Large-Scale FeLarge-Eddy Simulation (LES) and Direct Numerical Simulation (DNS) are increasingly popular modeling tools for the understanding and the prediction of turbulent flows.
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DNS of Canonical Turbulent Flows Using the Modal Discontinuous Galerkin MethodThe discontinuous Galerkin (DG) method is a particular class of finite element methods which was first introduced by Reed and Hill in 1973 [.] for the treatment of the neutron transport equations.
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Underresolved Turbulence Simulations with Stabilized High Order Discontinuous Galerkin MethodsDue to the broad range of spatial and temporal structures of turbulent flows, the resolution requirements for a fully resolved representation of all scales are prohibitively expensive and make Direct Numerical Simulations (DNS) impossible in all but a very limited number of cases.
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