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Effect of Pressure on Velocity of Burning
Nature, 1949IN a recent paper Gaydon and Wolfhard1 state: “In stationary pre-mixed flames of hydrocarbons at pressures between 1 atm. and a few mm. of mercury . . . the flame speed is independent of pressure". Reference is made to determinations by Wolfhard2 of the effect of pressure on the burning velocities of acetylene/air, acetylene/oxygen and acetylene/oxygen/
J W, LINNETT, P J, WHEATLEY
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The Problems of the Turbulent Burning Velocity
Flow, Turbulence and Combustion, 2011zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Bradley, Derek +2 more
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Theory of Burning Velocity. II. The Square Root Law for Burning Velocity
The Journal of Chemical Physics, 1947Previous papers by the authors having suggested that the diffusion of active particles (chiefly hydrogen atoms) from the flame front is the controlling factor in combustion in Bunsen-type burners, an equation for burning velocity based on such a concept is derived.
Charles Tanford, Robert N. Pease
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Effect of Pressure on Burning Velocity
Nature, 1949The measurement of burning velocity is important in providing results for testing the various theories of flame propagation1–4. Linnett and Wheatley5 have recently reviewed the earlier work on the effect of pressure on burning velocity, and from this and from their own experiments on ethylene–air mixtures conclude "that burning velocities are affected ...
F. H. GARNER, G. K. ASHFORTH, R. LONG
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Symposium (International) on Combustion, 1977
Measurements are reported of premixed hydrogen-air turbulent burning velocities, made by the double kernel method during explosions. Turbulence was created by four high speed fans within the explosion vessel. The method is described for calibrating the system, which is capable of giving high values of turbulent Reynolds numbers. The values obtained are
Ramzy G. Abdel-Gayed, Derek Bradley
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Measurements are reported of premixed hydrogen-air turbulent burning velocities, made by the double kernel method during explosions. Turbulence was created by four high speed fans within the explosion vessel. The method is described for calibrating the system, which is capable of giving high values of turbulent Reynolds numbers. The values obtained are
Ramzy G. Abdel-Gayed, Derek Bradley
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Burning velocities of CO flames
Combustion and Flame, 1997Asymptotic and computational methods are employed to investigate premixed laminar burning velocities of planar adiabatic flames in ideal gas mixtures containing carbon monoxide, oxygen, an inert, and trace amounts of hydrogen-containing species. The chemical-kinetic steps that control the burning velocity are identified, and the dependence of the ...
M.L. Rightley, F.A. Williams
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Determination of the Velocity of Burning
Nature, 1952IN a recent paper by Linnet and Conan1, it is pointed out that the Schlieren cone is better suited for determining the velocity of burning than the luminous flame cone and the shadow cone. The Schlieren cone lies closer to the centre, as has been demonstrated by Broeze2 and by others.
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On the burning velocity of stretched flames
Combustion and Flame, 1991Abstract The term “burning velocity” is commonly defined as the velocity of the gas ahead of and relative to the flame. This definition is appropriate for a one-dimensional flow because the mass flow rate across the flame is constant. In more general circumstances, however, this definition becomes ambiguous because the mass flow rate varies with ...
J.H. Tien, M. Matalon
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Burning velocity of stretched flames
2008Application d'un modele superficiel de flammes.
Tadao Takeno +2 more
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The determination of laminar burning velocity
Progress in Energy and Combustion Science, 1980The relevance of data on laminar burning velocities, both from their value to industry and related research areas, and for the validation of theoretical chemical kinetic models, is discussed, as are certain fundamental problems associated with the measurement of this intrinsic property.
C.J. Rallis, A.M. Garforth
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