The Modes Of Gaseous Combustion

Author: Nickolai M. Rubtsov
Publisher: Springer
ISBN: 3319259334
Size: 26.92 MB
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Gaseous. Systems. Abstract It is illustrated that one-dimensional Zeldovich–von
Neumann–Doering model of detonation wave gives satisfactory approach for the
description of a stationary detonation wave, despite a large number of the ...
Springer International Publishing Switzerland 2016 N.M. Rubtsov, The Modes of
Gaseous Combustion, Heat and Mass Transfer, DOI 10.1007/978-3-319-25933-
8_7 193 Processes of heat and mass transfer play the major role 7 Detonation
Limits in ...

Heat Transfer Xiii

Author: B. Sundén
Publisher: WIT Press
ISBN: 1845647947
Size: 68.59 MB
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Heat Transfer XIII: Simulation and Experiments in Heat and Mass Transfer contains the proceedings of the thirteenth conference in the well established series on Simulation and Experiments in Heat Transfer and its applications.

Analytic Combustion

Author: Anil W. Date
Publisher: Cambridge University Press
ISBN: 1139499076
Size: 66.56 MB
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The book features over 60 solved numerical problems and analytical derivations and nearly 145 end-of-chapter exercise problems.

Ignition And Wave Processes In Combustion Of Solids

Author: Nickolai M. Rubtsov
Publisher: Springer
ISBN: 3319565087
Size: 35.11 MB
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Necessary and sufficient conditions of the realization of the convective mode of
combustion of “gasless” systems are given. The investigation of the model
presented in the section allowed explaining the distinctions observed in
experimental studies of the features of combustion of “gasless” systems under
conditions of the counter, cocurrent, and bilateral filtration of impurity gases. 2
Convective Heat and Mass Transfer in the Processes of 1 Convective
Combustion of ... 131.

Radiative Heat Transfer

Author: Michael F. Modest
Publisher: Academic Press
ISBN: 0123869900
Size: 21.73 MB
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513–526, 2004. Byun, D. Y., and S. W. Baek: “Numerical investigation of
combustion with non-gray thermal radiation and soot formation effect in a liquid
rocket engine,” International Journal of Heat and Mass Transfer, vol. 50, pp. 412–
422, 2007. Mohamad ... of Energy, vol. 70, pp. 57–70, 1997. Song, G., T. Bjorge, J
. Holen, and B. F. Magnussen: “Simulation of fluid flow and gaseous radiation
heat transfer in a natural gas-fired furnace,” Int. J. Numerical Methods for Heat
and Fluid Flow ...

Combustion And Incineration Processes

Author: Walter R. Niessen
Publisher: CRC Press
ISBN: 9780203908365
Size: 66.46 MB
Format: PDF
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Countercurrent mode operations are primarily for high-moisture content (>30%)
wastes and for waste with a low heat of combustion. kilns operated in the
countercurrent mode maximize heat and mass transfer. They have a distinct "cold
end" where the solids are charged. Since the preheating of the solids withdraws
heat from the gases, the leaving gases are considerably colder than in the firing
zone, where preheated solids and burning fuels combine. Also, since the freshly
fed solids ...

Heat Transfer In Industrial Combustion

Author: Charles E. Baukal, Jr.
Publisher: CRC Press
ISBN: 142003975X
Size: 21.52 MB
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R.P. Lindstedt and E.M. Váos, Modeling of premixed turbulent flames with second
moment methods, Comb. Flame, 116,461-485, 1999. N. Swaminathan and R.W.
Bilger, Assessment of combustion submodels for turbulent nonpremixed
hydrocarbon flames, Comb. Flame, 116, 519-545, 1999. R.W. Bilger, Turbulent
jet diffusion flames, Prog. Energy Combust. Sci., 1,87-109, 1976. R.D. Cess and
S.N. Tiwari, Infrared radiative energy transfer in gases, in Advances in Heat
Transfer, Vol.

Key Factors Of Combustion

Author: Nikolai M. Rubtsov
Publisher: Springer
ISBN: 331945997X
Size: 38.66 MB
Format: PDF
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In addition, interrelation of gas dynamic and kinetic features of branching chain
processes (BCP) including the presence of ultra-disperse solid phase will be
examined to give rather exhaustive description of which governing parameters in
which mode of combustion process should be considered first. In brief, it should
be noted that the complexity of combustion processes increases in the following
order: mass transfermass and heat transfer → turbulence → flame
acceleration ...