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Titlebook: Advanced Turbulent Flow Computations; Roger Peyret,Egon Krause Conference proceedings 2000 Springer-Verlag Wien 2000 Fluid Dynamics.Rheolo

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Reinhard Renneberg,Viola Berklingy modelling is summarised. Consideration is then given to the performance of alternative models by reference to computational solutions for eight flows, both twodimensional and three-dimensional, some incompressible and others compressible. In presenting and discussing representative results, emphas
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https://doi.org/10.1007/978-3-7091-2590-8Fluid Dynamics; Rheology; computational fluid dynamics; dynamics; flow; fluid dynamics; Large Eddy Simulat
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James D. Murray,Elizabeth A. Magafirst part considers the spatial approximation: Classical and Hermitian compact finite-difference, finite-volume and spectral methods. In particular, it is shown how approximation formulas can be derived from suitable interpolating polynomials. The second part is devoted to time-discretization metho
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Biologie, eine Einführung für Ingenieurethe methods applied to model the scales smaller than the scale resolved on the computational mesh can be read as one of the many ways to increase the numerical resolution..From the theoretical point of view a Large Eddy Simulation can be formalized as a filtered solution of the Navier-Stokes equatio
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https://doi.org/10.1007/978-3-322-83720-2dies. These issues include the effects of inherent numerical dissipation in upwind spatial finitedifference schemes on turbulent power spectra, and the sensitivity of separated and vortex dominated flow solutions to inflow and outflow boundary conditions. We also describe the results from several la
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Perspektiven der Biotechnologiethe basic equations and subgrid scale models, the applied discretization methods, solution schemes and boundary conditions with their implementation on high-performance computers are presented. The two discretization methods for the advective terms used in the simulations are a second-order mixed ce
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Reinhard Renneberg,Viola Berklingormulations. Principal features of turbulence, viewed mainly in statistical terms, are highlighted first. This is followed by considerations directed, principally, towards processes which arise from the interaction between the Reynolds stresses and mean-flow features. Attention focuses, in particula
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https://doi.org/10.1007/978-3-642-78649-5tions are presented in different formulations adapted to various practical applications corresponding to rotating and non-rotating flows. A summary of the mathematical properties of the equations and of the main numerical schemes used among the CFD community is presented. Because, in this paper, we
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