The Calculation of Furnace-Flow Properties and Their Experimental Verification

Author:

Hutchinson P.1,Khalil E. E.2,Whitelaw J. H.2,Wigley G.2

Affiliation:

1. Theoretical Physics Division, A. E. R. E. Harwell, Oxfordshire, England

2. Department of Mechanical Engineering, Imperial College, London, England

Abstract

Measurements of mean axial velocity, and the corresponding normal stress are reported for the isothermal flow of air and for a combusting mixture of natural gas in an axisymmetric furnace enclosure with a coaxial burner. Temperature and wall heat flux measurements were also obtained for the combusting flow. The swirl number of the flow was 0.5. The measurements are compared with the results of a calculation procedure incorporating a two equation turbulence model and a one step reaction model. The combustion model allowed fuel and oxygen to coexist at the same place but not at the same time. The comparison indicates that the calculation procedure qualitatively represents the measurements but that quantitative differences exist. The argument is sufficiently close, however, to justify the use of the method for some design purposes.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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1. Numerical Investigation of Fuel Dilution Effects on the Performance of the Conventional and the Highly Preheated and Diluted Air Combustion Furnaces;Chinese Journal of Chemical Engineering;2009-10

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3. Simulation of Swirling Turbulent Flow and Combustion in a Combustor;Numerical Heat Transfer, Part A: Applications;2009-03-06

4. Heat Transfer Characteristics Of Turbulent Flames In Furnaces and Combustion Chambers;47th AIAA Aerospace Sciences Meeting including The New Horizons Forum and Aerospace Exposition;2009-01-05

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