The effect of reformate gas enrichment on extinction limits and NOX formation in counterflow CH4/air premixed flames
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Mechanical Engineering,General Chemical Engineering
Reference21 articles.
1. The effect of hydrogen addition on flammability limit and NOx emission in ultra-lean counterflow CH4/air premixed flames
2. Diffusion flame extinction at small stretch rates: The mechanism of radiative loss
3. Experimental study on methane-air premixed flame extinction at small stretch rates in microgravity
4. Radiation extinction limit of counterflow premixed lean methane-air flames
5. On the extinction limit and flammability limit of non-adiabatic stretched methane–air premixed flames
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1. Quantitative analyses of NO formations from different reaction pathways in methane-air combustion at various pressures and temperatures;Fuel;2023-04
2. Investigation of Unsteady Premixed Micro/Macro Counterflow Flames for Lean to Rich Methane/Air Mixture;Journal of Energy Resources Technology;2021-01-27
3. Laminar flame speed, Markstein length, and cellular instability for spherically propagating methane/ethylene–air premixed flames;Combustion and Flame;2020-04
4. MILD combustion versus conventional bluff-body flame of a premixed CH4/air jet in hot coflow;Energy;2019-11
5. Effect of additional diluents on flame propagation speed and markstein length in outwardly propagating premixed methane/ethylene–air flames;Journal of Mechanical Science and Technology;2018-11
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