Models for the LES equations to describe multi-species mixing occurring at supercritical pressure
- Creators
- Borghesi, G.
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Bellan, Josette
Abstract
An existing database of Direct Numerical Simulations (DNS) representing mixing of species under supercritical pressure (supercritical-p) conditions has been investigated for the purpose of understanding the modelling of ∇p(Φ), ∇·q(Φ) and ∇·j_o(Φ) in the context of Large Eddy Simulation (LES). The analysis consists of two separate parts. The activities of all terms appearing in the LES equations are first evaluated, and the dominant terms for each of the transport equations are identified. These data are used to check whether the standard LES assumptions ∇p(Φ) = ∇p(Φ), ∇·q(Φ) = ∇·q(Φ) and ∇·j_o(Φ) = ∇·j_o(Φ) which are routinely used for atmospheric-p flows, continue to be valid also in the realm of supercritical-p conditions. Having found that these assumptions do not hold under supercritical-p conditions, alternative modelling strategies for these terms are proposed, and their accuracy with respect to the standard LES assumptions is assessed.
Additional Information
© 2014 American Institute of Aeronautics and Astronautics. Published Online: 10 Jan 2014.Additional details
- Eprint ID
- 98011
- Resolver ID
- CaltechAUTHORS:20190819-154932580
- Created
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2019-08-19Created from EPrint's datestamp field
- Updated
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2021-11-16Created from EPrint's last_modified field
- Other Numbering System Name
- AIAA Paper
- Other Numbering System Identifier
- 2014-0823