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Stagnation flow catalytic combustion

A simulation of catalytic combustion in a stagnation-flow reactor, using this reaction mechanism, is given in Chapter 17. [Pg.478]

L.L. Raja, R.J. Kee, and L.R. Petzold. Simulation of the Transient, Compressible, Gas-Dynamic, Behavior of Catalytic-Combustion Ignition in Stagnation Flows. Proc. Combust. Inst., 27 2249-2257,1998. [Pg.833]

Ikeda H, Sato J, Williams FA Surface kinetics for catalytic combustion of hydrogen-air mixtures on platinum at atmospheric-pressure in stagnation flows. Surf Sd 326 11—26, 1995. [Pg.93]

For all steady-state applications, the Stefan velocity is identically zero (there is no etching or deposition in steady-state catalytic combustion). Given the ID dimensionality of the stagnation-flow problem, a full multicomponent transport approach for the diffusion velocities is computationally manageable ... [Pg.116]

Raja LL, Kee RJ, Petzold LR Simulation of the transient, compressible, gas-dynamic behavior of catalytic combustion ignition in stagnation flows, Proc Combust Inst 27 2249—2257, 1998. [Pg.156]

Bar JN, Karakaya C, Deutschmann O Catalytic ignition of light hydrocarbons over Rh/ AI2O3 studied in a stagnation-point flow reactor, Proc Combust Inst 34 2313-2320, 2013. [Pg.152]


See other pages where Stagnation flow catalytic combustion is mentioned: [Pg.270]    [Pg.55]    [Pg.136]   
See also in sourсe #XX -- [ Pg.717 ]




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