Direct Numerical Simulation for Turbulent Reacting Flows.pdf

Direct Numerical Simulation for Turbulent Reacting Flows

Markus Baum

Date de parution

The objective of this research is to make use of Large Eddy Simulation (LES) and Direct Numerical Simulation (DNS) for the computational analyses of high speed reacting flows. Our efforts in the first phase of this research conducted within the past three years have been directed in several issues pertaining to intricate physics of turbulent reacting flows. In our previous 5 semi-annual Direct numerical simulation of turbulent reacting …

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9782710806981 ISBN
Direct Numerical Simulation for Turbulent Reacting Flows.pdf

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Notes actuelles

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Sofya Voigtuh

A direct numerical simulation (DNS) solver for turbulent reacting flows is developed using libraries and functions from the open-source computational fluid dynamics package OpenFOAM. The solver

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Mattio Müllers

ISBN: 2710806983 9782710806981: OCLC Number: 300444888: Description: vi, 310 pages : illustrations: Contents: Description of accurate boundary conditions for the simulation of reactive flows --Parallel direct numerical simulation of turbulent reactive flow --Flame-wall interaction and heat flux modelling in turbulent channel flow --A numerical study of laminar flame wall interaction with

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Noels Schulzen

Direct simulation of compressible reacting flows - …

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Jason Leghmann

Stochastic Modeling and Simulation of Turbulent Reacting Flows where φ (x; t) is the variable being filtered, hs x is an isotropic, non-negative definite, spatial filter, and h φ (x; t) i L is the variable with the high wavenumber content removed. The large scale component, or the “mean,” is associated with the size of the filter,∆, which (PDF) Direct Numerical Simulation of Scalar …

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Jessica Kolhmann

Theory and Modeling of Dispersed Multiphase … To simulate dispersed multiphase turbulent reacting flows, at first it is necessary to understand some fundamentals of dispersed multiphase flows. This chapter gives some knowledge in this aspect, as particle/droplet size and its distribution, apparent density and volume fraction, particle drag and heat and mass transfer, and single-particle dynamics.