Numerical modeling of distributed combustion without air dilution in a novel ultra-low emission turbulent swirl burner
@article{Fzesi2021NumericalMO, title={Numerical modeling of distributed combustion without air dilution in a novel ultra-low emission turbulent swirl burner}, author={D{\'a}niel F{\"u}zesi and Milan Mal{\'y} and Jan Jedelsk{\'y} and Viktor J{\'o}zsa}, journal={Physics of Fluids}, year={2021} }
Distributed combustion, often associated with the low-oxygen condition, offers ultra-low NOx emission. However, it was recently achieved without combustion air dilution or internal flue gas recirculation, using a distinct approach called mixture temperature-controlled combustion. Here, the fuel–air stream is cooled at the inlet to delay ignition and, hence, foster homogeneous mixture formation. This numerical study aims to understand its operation better and present a robust framework for…
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