Matches in SemOpenAlex for { <https://semopenalex.org/work/W1638677139> ?p ?o ?g. }
- W1638677139 abstract "Significant progress has been made in the development of subgrid scale (SGS) closures based on a filtered density function (FDF) for large eddy simulations (LES) of turbulent reacting flows. The FDF is the counterpart of the probability density function (PDF) method, which has proven effective in Reynolds averaged simulations (RAS). However, while systematic progress is being made advancing the FDF models for relatively simple flows and lab-scale flames, the application of these methods in complex geometries and high speed, wall-bounded flows with shocks remains a challenge. The key difficulties are the significant computational cost associated with solving the FDF transport equation and numerically stiff finite rate chemistry. For LES/FDF methods to make a more significant impact in practical applications a pragmatic approach must be taken that significantly reduces the computational cost while maintaining high modeling fidelity. An example of one such ongoing effort is at the NASA Langley Research Center, where the first generation FDF models, namely the scalar filtered mass density function (SFMDF) are being implemented into VULCAN, a production-quality RAS and LES solver widely used for design of high speed propulsion flowpaths. This effort leverages internal and external collaborations to reduce the overall computational cost of high fidelity simulations in VULCAN by: implementing high order methods that allow reduction in the total number of computational cells without loss in accuracy; implementing first generation of high fidelity scalar PDF/FDF models applicable to high-speed compressible flows; coupling RAS/PDF and LES/FDF into a hybrid framework to efficiently and accurately model the effects of combustion in the vicinity of the walls; developing efficient Lagrangian particle tracking algorithms to support robust solutions of the FDF equations for high speed flows; and utilizing finite rate chemistry parametrization, such as flamelet models, to reduce the number of transported reactive species and remove numerical stiffness. This paper briefly introduces the SFMDF model (highlighting key benefits and challenges), and discusses particle tracking for flows with shocks, the hybrid coupled RAS/PDF and LES/FDF model, flamelet generated manifolds (FGM) model, and the Irregularly Portioned Lagrangian Monte Carlo Finite Difference (IPLMCFD) methodology for scalable simulation of high-speed reacting compressible flows." @default.
- W1638677139 created "2016-06-24" @default.
- W1638677139 creator A5000317520 @default.
- W1638677139 creator A5008168396 @default.
- W1638677139 creator A5060417632 @default.
- W1638677139 creator A5090479079 @default.
- W1638677139 date "2012-07-30" @default.
- W1638677139 modified "2023-09-27" @default.
- W1638677139 title "Progress Toward Affordable High Fidelity Combustion Simulations Using Filtered Density Functions for Hypersonic Flows in Complex Geometries" @default.
- W1638677139 cites W1484033701 @default.
- W1638677139 cites W1554822654 @default.
- W1638677139 cites W1575104486 @default.
- W1638677139 cites W1636658800 @default.
- W1638677139 cites W1669295846 @default.
- W1638677139 cites W1968837713 @default.
- W1638677139 cites W1969731295 @default.
- W1638677139 cites W1969875687 @default.
- W1638677139 cites W1977392470 @default.
- W1638677139 cites W1977508784 @default.
- W1638677139 cites W1980016266 @default.
- W1638677139 cites W1981537195 @default.
- W1638677139 cites W1986681974 @default.
- W1638677139 cites W1988356775 @default.
- W1638677139 cites W1994376567 @default.
- W1638677139 cites W1995418017 @default.
- W1638677139 cites W1995907179 @default.
- W1638677139 cites W1999010882 @default.
- W1638677139 cites W2006386344 @default.
- W1638677139 cites W2007001202 @default.
- W1638677139 cites W2007058479 @default.
- W1638677139 cites W2011012479 @default.
- W1638677139 cites W2025598143 @default.
- W1638677139 cites W2028499920 @default.
- W1638677139 cites W2036127126 @default.
- W1638677139 cites W2038782089 @default.
- W1638677139 cites W2041169649 @default.
- W1638677139 cites W2042405181 @default.
- W1638677139 cites W2045264761 @default.
- W1638677139 cites W2045760829 @default.
- W1638677139 cites W2046100676 @default.
- W1638677139 cites W2047710483 @default.
- W1638677139 cites W2051843852 @default.
- W1638677139 cites W2053291935 @default.
- W1638677139 cites W2055687326 @default.
- W1638677139 cites W2065279843 @default.
- W1638677139 cites W2074157885 @default.
- W1638677139 cites W2075296586 @default.
- W1638677139 cites W2083708678 @default.
- W1638677139 cites W2084389971 @default.
- W1638677139 cites W2084751292 @default.
- W1638677139 cites W2089828550 @default.
- W1638677139 cites W2091345137 @default.
- W1638677139 cites W2094419769 @default.
- W1638677139 cites W2097646397 @default.
- W1638677139 cites W2104471335 @default.
- W1638677139 cites W2105524676 @default.
- W1638677139 cites W2114260566 @default.
- W1638677139 cites W2118898240 @default.
- W1638677139 cites W2127061564 @default.
- W1638677139 cites W2129918249 @default.
- W1638677139 cites W2133177477 @default.
- W1638677139 cites W2147360693 @default.
- W1638677139 cites W2154747448 @default.
- W1638677139 cites W2166952818 @default.
- W1638677139 cites W2169944043 @default.
- W1638677139 cites W2313042544 @default.
- W1638677139 cites W2316236711 @default.
- W1638677139 cites W2319759372 @default.
- W1638677139 cites W2332431834 @default.
- W1638677139 cites W2503455548 @default.
- W1638677139 cites W2531604619 @default.
- W1638677139 cites W3044661485 @default.
- W1638677139 cites W3202068209 @default.
- W1638677139 cites W57243869 @default.
- W1638677139 cites W79881533 @default.
- W1638677139 cites W2741957021 @default.
- W1638677139 hasPublicationYear "2012" @default.
- W1638677139 type Work @default.
- W1638677139 sameAs 1638677139 @default.
- W1638677139 citedByCount "0" @default.
- W1638677139 crossrefType "journal-article" @default.
- W1638677139 hasAuthorship W1638677139A5000317520 @default.
- W1638677139 hasAuthorship W1638677139A5008168396 @default.
- W1638677139 hasAuthorship W1638677139A5060417632 @default.
- W1638677139 hasAuthorship W1638677139A5090479079 @default.
- W1638677139 hasConcept C1034443 @default.
- W1638677139 hasConcept C121332964 @default.
- W1638677139 hasConcept C121448008 @default.
- W1638677139 hasConcept C121864883 @default.
- W1638677139 hasConcept C126255220 @default.
- W1638677139 hasConcept C127413603 @default.
- W1638677139 hasConcept C146978453 @default.
- W1638677139 hasConcept C1633027 @default.
- W1638677139 hasConcept C196558001 @default.
- W1638677139 hasConcept C2778770139 @default.
- W1638677139 hasConcept C33923547 @default.
- W1638677139 hasConcept C41008148 @default.
- W1638677139 hasConcept C44154836 @default.
- W1638677139 hasConcept C459310 @default.
- W1638677139 hasConcept C57879066 @default.