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The Local Variational Multiscale Method for Turbulence Simulation

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Release : 2005
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Book Synopsis The Local Variational Multiscale Method for Turbulence Simulation by :

Download or read book The Local Variational Multiscale Method for Turbulence Simulation written by . This book was released on 2005. Available in PDF, EPUB and Kindle. Book excerpt: Accurate and efficient turbulence simulation in complex geometries is a formidable chal-lenge. Traditional methods are often limited by low accuracy and/or restrictions to simplegeometries. We explore the merger of Discontinuous Galerkin (DG) spatial discretizationswith Variational Multi-Scale (VMS) modeling, termed Local VMS (LVMS), to overcomethese limitations. DG spatial discretizations support arbitrarily high-order accuracy on un-structured grids amenable for complex geometries. Furthermore, high-order, hierarchicalrepresentation within DG provides a natural framework fora prioriscale separation crucialfor VMS implementation. We show that the combined benefits of DG and VMS within theLVMS method leads to promising new approach to LES for use in complex geometries. The efficacy of LVMS for turbulence simulation is assessed by application to fully-developed turbulent channelflow. First, a detailed spatial resolution study is undertakento record the effects of the DG discretization on turbulence statistics. Here, the localhp refinement capabilites of DG are exploited to obtain reliable low-order statistics effi-ciently. Likewise, resolution guidelines for simulating wall-bounded turbulence using DGare established. We also explore the influence of enforcing Dirichlet boundary conditionsindirectly through numericalfluxes in DG which allows the solution to jump (slip) at thechannel walls. These jumps are effective in simulating the influence of the wall commen-surate with the local resolution and this feature of DG is effective in mitigating near-wallresolution requirements. In particular, we show that by locally modifying the numericalviscousflux used at the wall, we are able to regulate the near-wall slip through a penaltythat leads to improved shear-stress predictions. This work, demonstrates the potential ofthe numerical viscousflux to act as a numerically consistent wall-model and this successwarrents future research. As in any high-order numerical method some mechanism is required to control aliasingeffects due to nonlinear interactions and to ensure nonlinear stability of the method. Inthis context, we evaluate the merits of two approaches to de-aliasing -- spectralfilteringand polynomial dealiasing. While both approaches are successful, polynomial-dealiasingis found to be better suited for use in large-eddy simulation. Finally, results using LVMSare reported and show good agreement with reference direct numerical simulation therebydemonstrating the effectiveness of LVMS for wall-bounded turbulence. This success pavesthe way for future applications of LVMS to more complex turbulentflows. 3.

A Variational Multiscale Method for Turbulent Flow Simulation with Adaptive Large Scale Space

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Release : 2013
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Book Synopsis A Variational Multiscale Method for Turbulent Flow Simulation with Adaptive Large Scale Space by : Volker John

Download or read book A Variational Multiscale Method for Turbulent Flow Simulation with Adaptive Large Scale Space written by Volker John. This book was released on 2013. Available in PDF, EPUB and Kindle. Book excerpt:

Numerical Analysis of a Variational Multiscale Method for Turbulence

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Author :
Release : 2011-10
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Kind : eBook
Book Rating : 083/5 ( reviews)

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Book Synopsis Numerical Analysis of a Variational Multiscale Method for Turbulence by : Songül Kaya Merdan

Download or read book Numerical Analysis of a Variational Multiscale Method for Turbulence written by Songül Kaya Merdan. This book was released on 2011-10. Available in PDF, EPUB and Kindle. Book excerpt: Despite efforts of more than centuries, turbulence phenomena is categorized as an unsolved problem. Turbulence is part of everyday's life. The majority of flows of industrial and technological applications are turbulent; natural flows are invariably so. There are many important and interesting physical phenomena which are connected with turbulent flows. Turbulence is observed in natural and engineering applications such as in weather prediction, air pollution, water pollution, aerodynamics and heat exchangers. This work considers an accurate and reliable solutions of turbulent flows. It is concerned with one of the most promising approaches to the numerical simulation of turbulent flows, the subgrid eddy viscosity models. We analyze both continuous and discontinuous finite element approximation of the new subgrid eddy viscosity model. This approach has the advantage that the diffusivity is introduced only on the small scales of the flow. Numerical test shows the new stabilization technique is robust and efficient in solving Navier-Stokes equations for a wide range of Reynolds numbers.

Turbulence Modeling by a Projection-based Variational Multiscale Method for Incompressible Flow Problems

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Author :
Release : 2011
Genre :
Kind : eBook
Book Rating : 737/5 ( reviews)

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Book Synopsis Turbulence Modeling by a Projection-based Variational Multiscale Method for Incompressible Flow Problems by : Lars Röhe

Download or read book Turbulence Modeling by a Projection-based Variational Multiscale Method for Incompressible Flow Problems written by Lars Röhe. This book was released on 2011. Available in PDF, EPUB and Kindle. Book excerpt:

Geometric Modeling with Splines

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Author :
Release : 2001-07-18
Genre : Computers
Kind : eBook
Book Rating : 209/5 ( reviews)

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Book Synopsis Geometric Modeling with Splines by : Elaine Cohen

Download or read book Geometric Modeling with Splines written by Elaine Cohen. This book was released on 2001-07-18. Available in PDF, EPUB and Kindle. Book excerpt: Written by researchers who have helped found and shape the field, this book is a definitive introduction to geometric modeling. The authors present all of the necessary techniques for curve and surface representations in computer-aided modeling with a focus on how the techniques are used in design. They achieve a balance between mathematical rigor

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