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Direct and Large-Eddy Simulation VIII

Author: Hans Kuerten; Bernard Geurts; Vincenzo Armenio; Jochen Fröhlich
Publisher: Dordrecht : Springer Netherlands, 2011.
Series: ERCOFTAC Series, 15; ERCOFTAC series, 15.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This volume continues previous DLES proceedings books, presenting modern developments in turbulent flow research. It is comprehensive in its coverage of numerical and modeling techniques for fluid mechanics. After Surrey in 1994, Grenoble in 1996, Cambridge in 1999, Enschede in 2001, Munich in 2003, Poitiers in 2005, and Trieste in 2009, the 8th workshop, DLES8, was held in Eindhoven, The Netherlands, again under  Read more...
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Genre/Form: Electronic books
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Hans Kuerten; Bernard Geurts; Vincenzo Armenio; Jochen Fröhlich
ISBN: 9789400724822 9400724829
OCLC Number: 779202238
Description: 1 online resource.
Contents: Direct and Large-Eddy Simulation VIII; Preface; Contents; Part I Fundamentals; Direct simulations of wall-bounded turbulence; 1 Introduction; 2 The turbulent boundary layer; 3 The breakdown of viscous flow over riblets; 4 Conclusions; References; Structure of a turbulent boundary layer studied by DNS; 1 Introduction and numerical method; 2 Results; 2.1 Turbulent statistics and streamwise development; 2.2 Vortical coherent structures; 3 Summary and conclusions; References; A physical length-scale for LES of turbulent flow; 1 Introduction; 2 Governing equations and numerical model. 3 Results for channel flow4 Conclusions; References; Regularization modeling of buoyancy-driven flows; 1 Introduction; 2 C4-regularization modeling; 2.1 Stopping the vortex-stretching mechanism; 3 Results for a turbulent differentially heated cavity; 3.1 Grid (in)dependence analysis; 3.2 Performance at higher (and lower) Ra-numbers; 4 Concluding remarks; References; On the relevance of discrete test-filtering in the integral-based dynamic modelling; 1 Introduction; 2 The framework of the analysis; 3 Computational assessment. Results; 4 Conclusions; References. Hybrid assessment method for LES models1 Introduction; 2 Framework; 3 Future work; References; Time-reversibility of Navier-Stokes turbulence and its implication for subgrid-scale models; 1 Introduction; 2 Numerical results; 3 Conclusion; References; Shearless turbulence --
wall interaction: a DNS database for second-order closure modeling; 1 Introduction; 2 Parametric study; 3 DNS database; 4 Scaling of the Reynolds-stress budgets; 5 Conclusion; References; Anisotropic dynamics in filtered wall-turbulent flows; 1 Introduction: anisotropic effects on the energy cascade. 2 Filtered wall-turbulent dynamics3 Correct resolution of the wall-turbulent physics; 4 Conclusions; References; Large Eddy Simulations of high Reynolds number cavity flows; 1 Introduction; 2 Numerical method and configurations; 3 Influence of the incoming boundary layer; 4 Influence of lateral walls; 5 Conclusions; References; Part II Methodologies and Modeling Techniques; On the development of a 6th order accurate compact finite difference scheme for incompressible flow; 1 Introduction; 2 Governing equations and numerical method; 2.1 Spatial derivatives. 2.2 Application to incompressible Navier-Stokes3 Results; 4 Discussion & conclusion; References; A multilevel method applied to the numerical simulation of two-dimensional incompressible flows past obstacles at high Reynolds number; 1 Introduction; 2 Description of the problem; 2.1 The governing equations and their discretization; 2.2 The multilevel methodology; 2.3 A second-order immersed boundary method; 3 Numerical results; 3.1 2D periodic flows; 3.2 Flow past a 2D cylinder at Reynolds number 9 500; 4 Conclusion; References.
Series Title: ERCOFTAC Series, 15; ERCOFTAC series, 15.
Responsibility: edited by Hans Kuerten, Bernard Geurts, Vincenzo Armenio, Jochen Fröhlich.

Abstract:

This volume continues previous DLES proceedings books, presenting modern developments in turbulent flow research. It is comprehensive in its coverage of numerical and modeling techniques for fluid mechanics. After Surrey in 1994, Grenoble in 1996, Cambridge in 1999, Enschede in 2001, Munich in 2003, Poitiers in 2005, and Trieste in 2009, the 8th workshop, DLES8, was held in Eindhoven, The Netherlands, again under the auspices of ERCOFTAC. Following the spirit of the series, the goal of this workshop is to establish a state-of-the-art of DNS and LES techniques for the computation and modeling of transitional/turbulent flows covering a broad scope of topics such as aerodynamics, acoustics, combustion, multiphase flows, environment, geophysics and bio-medical applications. This gathering of specialists in the field was a unique opportunity for discussions about the more recent advances in the prediction, understanding and control of turbulent flows in academic or industrial situations.

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