Pressure Correction for Laminar Combustion Simulation
The space discretized conservation equations for laminar flames are formulated as a system of differential algebraic equations (DAEs). An appropriate constraint is derived, which is used in two new pressure correction schemes. Application to flame simulations with a one-step chemistry model shows th...
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Published in | Combustion science and technology Vol. 149; no. 1-6; pp. 201 - 223 |
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Main Authors | , , |
Format | Journal Article Conference Proceeding |
Language | English |
Published |
London
Taylor & Francis Group
01.12.1999
Taylor & Francis |
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Abstract | The space discretized conservation equations for laminar flames are formulated as a system of differential algebraic equations (DAEs). An appropriate constraint is derived, which is used in two new pressure correction schemes. Application to flame simulations with a one-step chemistry model shows that these new pressure correction schemes yield more accurate results than the standard scheme |
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AbstractList | The space discretized conservation equations for laminar flames are formulated as a system of differential algebraic equations (DAEs). An appropriate constraint is derived, which is used in two new pressure correction schemes. Application to flame simulations with a one-step chemistry model shows that these new pressure correction schemes yield more accurate results than the standard scheme After formulating the state-discretized conservation equations for laminar flames as a system of differential algebraic equations, an appropriate constraint is derived and used in two novel pressure-correction schemes. Application of the schemes to flame simulations with a one-step chemistry model yields more accurate results than the conventional scheme. (AIAA) |
Author | TEN THIJE BOONKKAMP, J.H.M. VAN T HOF, B. MATTHEIJ, R.M.M. |
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CitedBy_id | crossref_primary_10_1016_j_jcp_2009_03_036 crossref_primary_10_1016_j_cam_2009_08_087 crossref_primary_10_1016_j_combustflame_2009_07_017 |
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Keywords | Case study Laminar flame Navier Stokes equation Numerical simulation Combustion Conservation equation Flame propagation Gas burner |
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References | PATANKAR S.V. (CIT0009) 1980 KEE R.J. (CIT0007) WElCKERT J. (CIT0012) 1997 BRAACK M. (CIT0002) 1998 CHORIN A.J. (CIT0003) 1967 WILLIAMS F.A. (CIT0013) 1985 GRESHO P.M. (CIT0004) 1998 BIJL H. (CIT0001) 1996 SOMERS L.M.T. (CIT0010) 1994 MAJDA A. (CIT0008) 1991; 35 ISSA R.I. (CIT0006); 62 TEMAM R. (CIT0011) 1966 HAIRER E. (CIT0005) 1991 |
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Snippet | The space discretized conservation equations for laminar flames are formulated as a system of differential algebraic equations (DAEs). An appropriate... After formulating the state-discretized conservation equations for laminar flames as a system of differential algebraic equations, an appropriate constraint is... |
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SubjectTerms | Applied sciences Combustion. Flame constraint equation differential algebraic equations Energy Energy. Thermal use of fuels Exact sciences and technology laminar flames pressure correction Theoretical studies Theoretical studies. Data and constants. Metering |
Title | Pressure Correction for Laminar Combustion Simulation |
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