A LIF and cars investigation of upstream heat loss and flue-gas recirculation as NOx control strategies for laminar, premixed natural-gas/air flames
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Mechanical Engineering,General Chemical Engineering
Reference15 articles.
1. Control of combustion-generated nitrogen oxide emissions: Technology driven by regulation
2. A lif and cars study of the effects of upstream heat loss on no formation from laminar premixed burner-stabilized natural-gas/air flames
3. The laminar flame speed of propane/air mixtures with heat extraction from the flame
4. Gas temperature above a porous radiant burner: Comparison of measurements and model predictions
5. The formation of NOx in surface burners
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1. Review of propane-air chemical kinetic mechanisms for a unique jet propulsion application;Journal of the Energy Institute;2020-06
2. Growth of Soot Volume Fraction and Aggregate Size in 1D Premixed C2H4/Air Flames Studied by Laser-Induced Incandescence and Angle-Dependent Light Scattering;Journal of Combustion;2018-10-01
3. Angle-Dependent Light Scattering Study of Silica Aggregate Growth in 1-D Methane/Air Flames with Hexamethyldisiloxane Admixture: Effects of Siloxane Concentration, Flame Temperature, and Equivalence Ratio;Combustion Science and Technology;2016-12-21
4. Investigation of Disk-Stabilized Propane Flames Operated under Stratified and Vitiated Inlet Mixture Conditions;Journal of Energy Engineering;2016-06
5. Lean Premixed Burners;Lean Combustion;2016
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