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Accurate Boundary Conditions for Multicomponent Reactive Flows

✍ Scribed by M. Baum; T. Poinsot; D. Thévenin


Publisher
Elsevier Science
Year
1995
Tongue
English
Weight
554 KB
Volume
116
Category
Article
ISSN
0021-9991

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✦ Synopsis


Procedures to define accurate boundary conditions for reactive flows described by Navier-Stokes equations are discussed. A formulation based on one-dimensional characteristic waves relations at the boundaries, previously developed by Poinsot and Lele for perfect gases with constant homogeneous thermodynamic properties, is rewritten and extended in order to be used in the case of gases described with realistic thermodynamic and reactive models. This kind of formulation appears to be particularly accurate and stable, which is a necessity for non-dissipative codes, in particular for direct simulation of turbulent reactive flows. The simple and solid physical basis of the method is also very attractive and makes it an easy technique to implement in any Navier-Stokes solver. Examples of application in several different computations performed with mixtures of gases and using detailed chemistry and thermodynamic modeling are described. In all cases, acoustic waves, entropy waves, and flames are proved to propagate without perturbation through the boundaries. (a) 1995 Academic Press, Inc.


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Artificial boundary conditions for visco
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## Abstract The steady three‐dimensional exterior flow of a viscoelastic non‐Newtonian fluid is approximated by reducing the corresponding nonlinear elliptic–hyperbolic system to a bounded domain. On the truncation surface with a large radius __R__, nonlinear, local second‐order artificial boundary