504
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

Parameterization of Laminar Burning Velocity Dependence on Pressure and Temperature in Hydrogen/Air/Steam Mixtures

, , , &
Pages 1427-1444 | Received 06 Oct 2011, Accepted 20 Mar 2012, Published online: 01 Nov 2012

REFERENCES

  • Behrendt , F. , and Warnatz , J. 1985 . The dependence of flame propagation in H2-O2-N2 mixtures on temperature, pressure, and initial composition . Int. J. Hydrogen Energy , 10 , 749 .
  • Bradley , D. , Lawes , M. , Liu , K. , Verhelst , S. , and Woolley , R. 2007 . Laminar burning velocities of lean hydrogen-air mixtures at pressures up to 1.0 MPa . Combust. Flame , 146 , 162 .
  • Chaumeix , N. 2010 . Personal communication.
  • Dowdy , D.R. , Smith , D.B. , Taylor , S.C. , and Williams , A. 1990 . The use of expanding spherical flames to determine burning velocities and stretch effects in hydrogen–air mixtures . Proc. Combust. Inst. , 23 , 325 .
  • Hermanns , R.T.E. , Konnov , A.A. , Bastiaans , R.J.M. , and de Goey , L.P.H. 2007. Laminar burning velocities of diluted hydrogen-oxygen-nitrogen mixtures. Energy Fuels , 21, 4.
  • Hong , Z.K. , Davidson , D.F. , and Hanson , R.K. 2011 . An improved H2/O2 mechanism based on recent shock tube/laser absorption measurements . Combust. Flame , 158 ( 4 ), 633 .
  • Hu , E. , Huang , Z. , He , J. , and Miao , H. 2009 . Experimental and numerical study on laminar burning velocities and flame instabilities of hydrogen–air mixtures at elevated pressures and temperatures . Int. J. Hydrogen Energy , 34 , 8741 .
  • Iijima , T. , and Takeno , T. 1986 . Effects of temperature and pressure on burning velocity . Combust. Flame , 65 , 35 .
  • Kee , R.J. , Rupley , F.M. , and Miller , J.A. 1989 . CHEMKIN-II: A Fortran chemical kinetics package for the analysis of gas-phase chemical kinetics. Technical Report SAND89–8009, Sandia National Laboratories.
  • Konnov , A.A. 2008 . Remaining uncertainties in the kinetic mechanism of hydrogen combustion . Combust. Flame , 152 ( 4 ), 507 .
  • Koroll , G.W. , Kumar , R.K. , and Bowles , E.M. 1993 . Burning velocities of hydrogen-air mixtures . Combust. Flame , 94 , 330 .
  • Kuznetsov , M. , Redlinger , R. , Grune , J. , and Breitung , W. 2011a . Auto-ignition temperature of hydrogen-oxygen-steam mixtures at elevated pressures . In Proceedings of the 7th International Conference on Chemical Kinetics , Omnipress, MIT , Cambridge , MA , paper no. 5 .
  • Kuznetsov , M. , Redlinger , R. , Breitung , W. , Grune , J. , Friedrich , A. , and Ichikawa , N. 2011b . Laminar burning velocities of hydrogen–oxygen–steam mixtures at elevated temperatures and pressure . Proc. Combust. Inst. , 33 , 895 .
  • Lamoureux , N. , Djebaili-Chaumeix , N. , and Paillard , C.E. 2002 . Laminar flame velocity determination for H2-air-steam mixtures using the spherical bomb method . J. Phys. IV , 12 , Pr7 , 445 .
  • Le Cong , T. , and Dagaut , P. 2008 . Effect of water vapor on the kinetics of combustion of hydrogen and natural gas: Experimental and detailed modeling study. In Proceedings of the ASME Turbo Expo 2008, June 9–13, Berlin, Germany; ASME Conf. Proc., p. 319.
  • Li , J. , Zhao , Z. , Kazakov , A. , and Dryer , F. 2004 . An updated comprehensive kinetic model of hydrogen combustion . Int. J. Chem. Kinet. , 36 , 566 .
  • Liu , D.D.S. , and MacFarlane , R. 1983 . Laminar burning velocities of hydrogen-air and hydrogen-air-steam flames . Combust. Flame , 49 , 59 .
  • Lutz , A.E. , Kee , R.J. , and Miller , J.A. 1996 . SENKIN: A Fortran program for predicting homogeneous gas phase chemical kinetics with sensitivity analysis. SAND87–8248, Sandia National Laboratories.
  • Maas , U. 1988 . Mathematical modeling of transient combustion processes using detailed reaction mechanisms. PhD thesis, University Heidelberg, Heidelberg, Germany.
  • Maas , U. 2010 . Personal communication.
  • Maas , U. , and Warnatz , J. 1988 . Ignition processes in hydrogen-oxygen mixtures . Combust. Flame , 74 , 53 .
  • Marinov , N.M. , Westbrook , C.K. , and Pitz , W.J. 1995 . Detailed and global chemical kinetics model for hydrogen. In Proceedings of the Eighth International Symposium on Transport Processes, vol. 1, p. 118.
  • Mueller , M.A. , Kim , T.J. , Yetter , R.A. , and Dryer , F.L. 1999 . Flow reactor studies and kinetic modeling of the H2/O2 reaction . Int. J. Chem. Kinet. , 31 ( 2 ), 113 .
  • NASA . 1997 . Safety standard for hydrogen and hydrogen systems: Guidelines for hydrogen system: Design, materials selection, operations, storage, and transportation. NSS 1740.16, National Aeronautics and Space Administration, Washington, DC.
  • Ó Conaire , M. , Curran , H.J. , Simmie , J.M. , Pitz , W.J. , and Westbrook , C.K. 2004 . A comprehensive modelling study of hydrogen oxidation . Int J. Chem. Kinet. , 36 , 603 .
  • Shebeko , Y.N. , Tsarichenko , S.G. , Korolchenko , A.Y. , Trunev , A.V. , Navzenya , V.Y. , Papkov , S.N. , and Zaitzev , A.A. 1995. Burning velocities and flammability limits of gaseous mixtures at elevated temperatures and pressures. Combust. Flame , 102, 427.
  • Ströhle , J. , and Myhrvold , T. 2007 . An evaluation of detailed reaction mechanisms for hydrogen combustion under gas turbine conditions . Int. J. Hydrogen Energy , 32 , 125 .
  • Szabó , T. 2010 . Modeling the laminar flame speed of hydrogen combustion. Diplomarbeit, Karlsruhe Institute of Technology, Karlsruhe, Germany.
  • Takahashi , F. , Mizomoto , M. , and Ikai , S. 1983 . Laminar burning velocities of hydrogen/oxygen/inert gas mixtures. Alternative energy sources III . In Nuclear Energy/Synthetic Fuels , T. Nejat Veziroglu (Ed.) , McGraw Hill , New York , vol. 5, pp. 447–457 .
  • Tse , S.D. , Zhu , D.L. , and Law , C.K. 2000 . Morphology and burning rates of expanding spherical flames in H2/O2/inert mixtures up to 60 atmospheres . Proc. Combust. Inst. , 28 , 1793 .
  • Verhelst , S. , and Sierens , R. 2007 . A quasi-dimensional model for the power cycle of a hydrogen-fuelled ICE . Int. J. Hydrogen Energy , 32 , 3545 .
  • Zabetakis , M.G. 1965 . Flammability characteristics of combustible gases and vapors . BuMines Bulletin , 627 , 121 .
  • Zeldovich , Y.B. , Barenblatt , G.I. , Librovich , V.B. , and Makhviladze , G.M. 1985 . The Mathematical Theory of Combustion and Explosion, Consultants Bureau, New York.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.