Refinement of the Spectral Model of Turbulent Burning Velocity : In the Case of Stoichiometric Mixtures
Autor: | Jun Hyo Kim, Hiroyuki Kido, Toshiaki Kitagawa, Kenshiro Nakashima |
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Rok vydání: | 1992 |
Předmět: |
Materials science
Hydrogen K-epsilon turbulence model Turbulence Mechanical Engineering General Engineering Thermodynamics chemistry.chemical_element Laminar flow Mechanics Condensed Matter Physics Combustion Quantitative accuracy Physics::Fluid Dynamics Classical mechanics chemistry Turbulence kinetic energy Combustion chamber Stoichiometry |
Zdroj: | JSME international journal. Ser. 2, Fluids engineering, heat transfer, power, combustion, thermophysical properties. 35:421-427 |
ISSN: | 0914-8817 |
Popis: | A formerly proposed spectral model of turbulent mass burning velocity is refined in regard to the following three points: (1) a small modification of the characteristic spectrum of mixture, (2) consideration of varying turbulence spectrum shape with turbulence intensity and (3) a new idea of the upper limit of the integral which is strongly related to the small-scale structure of turbulent flame. Predictions of turbulent mass burning velocity were made by this spectral model. The predicted velocities were compared with the measured turbulent mass burning velocities, where laminar burning velocity, laminar flame thickness and turbulence intensity were varied extensively and independently with each other under a stoichiometric mixture condition. As the result of comparison, the quantitative accuracy of the refined model was confirmed. |
Databáze: | OpenAIRE |
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