Skip to main content
Top
Published in: Mathematical Models and Computer Simulations 2/2019

01-03-2019

On the Numerical Simulation of Combustion in a Scramjet Combustor Using OpenFOAM

Authors: V. T. Zhukov, N. D. Novikova, O. B. Feodoritova

Published in: Mathematical Models and Computer Simulations | Issue 2/2019

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

In this paper, we present a methodology for the numerical simulation of the reacting flows of multicomponent fluid mixtures in a scramjet combustor based on solving the Navier-Stokes equation system. The combustion dynamics depending on the oxidizer’s oxidation ratio is studied, and the methodology of the numerical simulation on the multiprocessor supercomputer K-100 is developed using OpenFOAM.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference O. V. Voloshchenko, S. A. Zosimov, and A. A. Nikolaev, “Experimental study of the combustion process of liquid hydrocarbon fuel in a flat channel at supersonic flow rate at the entrance,” in Models and Methods of Aerodynamics, Proceedings of the 1st and 2nd International School-Seminars (MNTSMO, Moscow, 2002), p. 75. O. V. Voloshchenko, S. A. Zosimov, and A. A. Nikolaev, “Experimental study of the combustion process of liquid hydrocarbon fuel in a flat channel at supersonic flow rate at the entrance,” in Models and Methods of Aerodynamics, Proceedings of the 1st and 2nd International School-Seminars (MNTSMO, Moscow, 2002), p. 75.
2.
go back to reference E. V. Piotrovich, V. N. Sermanov, V. N. Ostras, O. V. Voloshchenko, S. A. Zosimov, A. F. Chevagin, V. V. Vlasenko, and E. A. Meshcheryakov, “Study of the problems of burning liquid hydrocarbon fuel in the channels, in Models and Methods of Aerodynamics, Proceedings of the 1st and 2nd International School-Seminars (MNTSMO, Moscow, 2002), p. 102. E. V. Piotrovich, V. N. Sermanov, V. N. Ostras, O. V. Voloshchenko, S. A. Zosimov, A. F. Chevagin, V. V. Vlasenko, and E. A. Meshcheryakov, “Study of the problems of burning liquid hydrocarbon fuel in the channels, in Models and Methods of Aerodynamics, Proceedings of the 1st and 2nd International School-Seminars (MNTSMO, Moscow, 2002), p. 102.
3.
go back to reference V. V. Vlasenko and A. A. Shiryaeva, “Computations of flow in a model high-speed combustor using different kinetic schemes,” Gorenie Vzryv 8, 116–125 (2015). V. V. Vlasenko and A. A. Shiryaeva, “Computations of flow in a model high-speed combustor using different kinetic schemes,” Gorenie Vzryv 8, 116–125 (2015).
4.
go back to reference S. M. Frolov, A. E. Zangiev, I. V. Semenov, V. V. Vlasenko, O. V. Voloshchenko, A. A. Nikolaev, and A. A. Shiryaeva, “Simulation of flow in a high-speed combustor in two- and three-dimensional formulation,” Gorenie Vzryv 8 (1), 126–135 (2015). S. M. Frolov, A. E. Zangiev, I. V. Semenov, V. V. Vlasenko, O. V. Voloshchenko, A. A. Nikolaev, and A. A. Shiryaeva, “Simulation of flow in a high-speed combustor in two- and three-dimensional formulation,” Gorenie Vzryv 8 (1), 126–135 (2015).
5.
go back to reference I. G. Gudich, V. V. Vlasenko, V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “On calculations of a model high-speed combustor,” Gorenie Vzryv 9 (3), 57–65 (2016). I. G. Gudich, V. V. Vlasenko, V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “On calculations of a model high-speed combustor,” Gorenie Vzryv 9 (3), 57–65 (2016).
6.
go back to reference I. G. Gudich, V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “Numerical simulation of high-speed combustion chamber by OpenFOAM,” KIAM Preprint No. 10 (Keldysh Inst. Appl. Math. RAN, Moscow, 2016). I. G. Gudich, V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “Numerical simulation of high-speed combustion chamber by OpenFOAM,” KIAM Preprint No. 10 (Keldysh Inst. Appl. Math. RAN, Moscow, 2016).
8.
go back to reference Hybrid computing cluster K-100. http://www.kiam.ru/MVS/resourses/k100.html. Hybrid computing cluster K-100. http://​www.​kiam.​ru/​MVS/​resourses/​k100.​html.​
9.
go back to reference T. Poinsot and D. Veynante, Theoretical and Numerical Combustion, 3rd ed. (Edwards, Philadelphia, 2011). T. Poinsot and D. Veynante, Theoretical and Numerical Combustion, 3rd ed. (Edwards, Philadelphia, 2011).
10.
go back to reference F. R. Menter, “Two-equation eddy-viscosity turbulence models for engineering applications,” AIAA J. 32, 269–289 (1994).CrossRef F. R. Menter, “Two-equation eddy-viscosity turbulence models for engineering applications,” AIAA J. 32, 269–289 (1994).CrossRef
11.
go back to reference W. Vieser, T. Esch, and F. Menter, “Heat transfer predictions using advanced two-equation turbulence models,” CFX Validation Report No. 10/0602 (AEA Technol., 2002), pp. 1–69. W. Vieser, T. Esch, and F. Menter, “Heat transfer predictions using advanced two-equation turbulence models,” CFX Validation Report No. 10/0602 (AEA Technol., 2002), pp. 1–69.
13.
go back to reference Thermodynamic Properties of Individual Substances, Ed. by V. P. Glushko (Nauka, Moscow, 1978–2004) [in Russian]. Thermodynamic Properties of Individual Substances, Ed. by V. P. Glushko (Nauka, Moscow, 1978–2004) [in Russian].
14.
go back to reference V. Ya. Basevich and S. M. Frolov, “Global kinetic mechanisms used in the simulation of multistage autoignition of hydrocarbons in reacting flows,” Khim. Fiz. 25 (6), 54–62 (2006). V. Ya. Basevich and S. M. Frolov, “Global kinetic mechanisms used in the simulation of multistage autoignition of hydrocarbons in reacting flows,” Khim. Fiz. 25 (6), 54–62 (2006).
15.
go back to reference F. Moukalled, L. Mangan, and M. Darwish, The Finite Volume Method in Computational Fluid Dynamics: An Advanced Introduction with OpenFOAM and Matlab (Springer, Switzerland, 2015). F. Moukalled, L. Mangan, and M. Darwish, The Finite Volume Method in Computational Fluid Dynamics: An Advanced Introduction with OpenFOAM and Matlab (Springer, Switzerland, 2015).
16.
go back to reference T. Maric, J. Hopken, and K. Mooney, The OpenFOAM Technology Primer. www.sourceflux.de/book. Accessed 2014. T. Maric, J. Hopken, and K. Mooney, The OpenFOAM Technology Primer. www.sourceflux.de/book. Accessed 2014.
17.
go back to reference V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “On high velocity flow simulation in model ramjet engine,” KIAM Preprint No. 5 (Keldysh Inst. Appl. Math. RAN, Moscow, 2015). V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “On high velocity flow simulation in model ramjet engine,” KIAM Preprint No. 5 (Keldysh Inst. Appl. Math. RAN, Moscow, 2015).
18.
go back to reference V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “Calculation, analysis and visualization of the flow in the model tract of a high-speed aircraft engine,” Nauch. Vizualiz. 7 (1), 78–95 (2015). V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “Calculation, analysis and visualization of the flow in the model tract of a high-speed aircraft engine,” Nauch. Vizualiz. 7 (1), 78–95 (2015).
19.
go back to reference I. G. Gudich, V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “Numerical simulation and visualization of currents with combustion in a high-speed combustion chamber,” Nauch. Vizualiz. 8 (4), 104–127 (2016). I. G. Gudich, V. T. Zhukov, K. V. Manukovskii, N. D. Novikova, Yu. G. Rykov, and O. B. Feodoritova, “Numerical simulation and visualization of currents with combustion in a high-speed combustion chamber,” Nauch. Vizualiz. 8 (4), 104–127 (2016).
20.
go back to reference C. K. Westbrook and F. L. Dryer, “Chemical kinetic modeling of hydrocarbon combustion,” Prog. Energy Combust. Sci. 10, 1–57 (1984).CrossRef C. K. Westbrook and F. L. Dryer, “Chemical kinetic modeling of hydrocarbon combustion,” Prog. Energy Combust. Sci. 10, 1–57 (1984).CrossRef
21.
go back to reference A. E. Zangiev, V. S. Ivanov, S. N. Medvedev, S. M. Frolov, F. S. Frolov, I. V. Semenov, and V. V. Vlasenko, “The effect of turbulence of flow development in scamjet combustor,” Gorenie Vzryv 9 (3), 66–79 (2016). A. E. Zangiev, V. S. Ivanov, S. N. Medvedev, S. M. Frolov, F. S. Frolov, I. V. Semenov, and V. V. Vlasenko, “The effect of turbulence of flow development in scamjet combustor,” Gorenie Vzryv 9 (3), 66–79 (2016).
22.
go back to reference V. V. Vlasenko, O. V. Voloshchenko, and A. A. Nikolaev, “Flow development in a high-speed combustor at various values of air excess ratio,” Gorenie Vzryv 9 (3), 47–56 (2016). V. V. Vlasenko, O. V. Voloshchenko, and A. A. Nikolaev, “Flow development in a high-speed combustor at various values of air excess ratio,” Gorenie Vzryv 9 (3), 47–56 (2016).
Metadata
Title
On the Numerical Simulation of Combustion in a Scramjet Combustor Using OpenFOAM
Authors
V. T. Zhukov
N. D. Novikova
O. B. Feodoritova
Publication date
01-03-2019
Publisher
Pleiades Publishing
Published in
Mathematical Models and Computer Simulations / Issue 2/2019
Print ISSN: 2070-0482
Electronic ISSN: 2070-0490
DOI
https://doi.org/10.1134/S2070048219020170

Other articles of this Issue 2/2019

Mathematical Models and Computer Simulations 2/2019 Go to the issue

Premium Partner