Stochastic fields;
Joint velocity-species-energy probability;
density function;
Adaptive mesh refinement;
PROBABILITY DENSITY-FUNCTION;
LARGE-EDDY SIMULATION;
FINITE-RATE CHEMISTRY;
PDF METHODS;
JET;
VELOCITY;
MODEL;
D O I:
10.1016/j.combustflame.2024.113897
中图分类号:
O414.1 [热力学];
学科分类号:
摘要:
This paper presents a fully compressible joint velocity-species-energy probability density function (PDF) for modelling turbulent reactive flows across all Mach numbers. By incorporating velocities into the PDF, the approach unifies the treatment of non-linear source and turbulent transport terms with minimal model parameters. The PDF transport is solved using Eulerian stochastic fields, leveraging features from existing grid-based solvers like high-order shock-capturing schemes and adaptive mesh refinement. Validation test cases show that the solver achieves the theoretical convergence rate, maintains accuracy across refinement levels, and demonstrates convergence with a moderate number of fields. Additionally, it outperforms the Smagorinsky model by adding dissipation only when necessary. When applied to a supersonic jet flame, the solver reproduces experimental measurements and results from highly-resolved large eddy simulations, demonstrating robustness in supersonic reacting flows with dynamic flow fields and shocklet structures.
机构:
Department of Biomedical Engineering, Southern University of Science and TechnologyDepartment of Biomedical Engineering, Southern University of Science and Technology
LINYANG LI
WEI QIN
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Department of Biomedical Engineering, Southern University of Science and TechnologyDepartment of Biomedical Engineering, Southern University of Science and Technology
WEI QIN
TINGTING LI
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机构:
Department of Biomedical Engineering, Southern University of Science and TechnologyDepartment of Biomedical Engineering, Southern University of Science and Technology
TINGTING LI
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JUNNING ZHANG
BAOCHEN LI
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Department of Biomedical Engineering, Southern University of Science and TechnologyDepartment of Biomedical Engineering, Southern University of Science and Technology
BAOCHEN LI
LEI XI
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机构:
Department of Biomedical Engineering, Southern University of Science and Technology
Guangdong Provincial Key Laboratory of Advanced Biomaterials, Southern University of Science and Technology
Shenzhen Bay LaboratoryDepartment of Biomedical Engineering, Southern University of Science and Technology
机构:
CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Vanbersel, Benjamin
Ramirez, Francis Adrian Meziat
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CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Air Liquide Paris Innovat Campus, 1 Chemin Porte Loges, F-78354 Les Loges En Josas, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Ramirez, Francis Adrian Meziat
Mohanamuraly, Pavanakumar
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CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Mohanamuraly, Pavanakumar
Staffelbach, Gabriel
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CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Staffelbach, Gabriel
Jaravel, Thomas
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CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Jaravel, Thomas
Douasbin, Quentin
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CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Douasbin, Quentin
Dounia, Omar
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CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France
Dounia, Omar
Vermorel, Olivier
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CERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, FranceCERFACS, 42 Ave G Coriolis, F-31057 Toulouse 1, France