International audienceThe Moderate or Intense Low-oxygen Dilution (MILD) combustion is a promising technique to reduce pollutant emissions of combustion processes, especially nitrogen oxides. This combustion mode involves Turbulence-Chemistry Interaction (TCI), which constitutes a challenge in terms of numerical simulation since it must be properly captured. Up to now, the TCI has been modelled and the corresponding models generally involve coefficients, leading to epistemic uncertainties and, therefore, to different numerical results depending on the used model. The study presented in this paper aims to assess the relevance of performing Large Eddy Simulation of a typical Jet-in-Hot-Coflow flame, simulating diluted combustion, assuming tha...
In this work, we present a detailed comparison between the conventional Partially Stirred Reactor (P...
Flameless combustion, also known as moderate or intense low oxygen dilution (MILD), ensures high com...
In this paper, we report results of a numerical investigation of turbulent natural gas combustion fo...
Over the past 30 years, the Eddy Dissipation Concept (EDC) has been widely applied in the industry f...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
MILD (Moderate and Intensive Low oxygen Dilution) combustion is a novel approach to reducing NOx em...
The present work focuses on the numerical simulation ofModerate or Intense Low oxygen Dilution combu...
Anumerical study of a jet-in-hot coflow (JHC) burner emulating Moderate or Intense Low-oxygen Dil...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
A Large Eddy Simulation (LES) model capable of accurately representing finite-rate chemistry effects...
The present work deals with the numerical simulation of Adelaide Jet in Hot Co-flow burner under Mod...
Moderate and Intense Low-oxygen Dilution (MILD) combustion is established to achieve high thermal ef...
MILD combustion is a new combustion technology which promises an enhanced efficiency and reduced emi...
Available online 7 September 2023. OnlinePublIn flames, turbulence can either limit or enhance combu...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
In this work, we present a detailed comparison between the conventional Partially Stirred Reactor (P...
Flameless combustion, also known as moderate or intense low oxygen dilution (MILD), ensures high com...
In this paper, we report results of a numerical investigation of turbulent natural gas combustion fo...
Over the past 30 years, the Eddy Dissipation Concept (EDC) has been widely applied in the industry f...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
MILD (Moderate and Intensive Low oxygen Dilution) combustion is a novel approach to reducing NOx em...
The present work focuses on the numerical simulation ofModerate or Intense Low oxygen Dilution combu...
Anumerical study of a jet-in-hot coflow (JHC) burner emulating Moderate or Intense Low-oxygen Dil...
International audienceFlame ignition, stabilization and extinction or pollutant predictions are cruc...
A Large Eddy Simulation (LES) model capable of accurately representing finite-rate chemistry effects...
The present work deals with the numerical simulation of Adelaide Jet in Hot Co-flow burner under Mod...
Moderate and Intense Low-oxygen Dilution (MILD) combustion is established to achieve high thermal ef...
MILD combustion is a new combustion technology which promises an enhanced efficiency and reduced emi...
Available online 7 September 2023. OnlinePublIn flames, turbulence can either limit or enhance combu...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
In this work, we present a detailed comparison between the conventional Partially Stirred Reactor (P...
Flameless combustion, also known as moderate or intense low oxygen dilution (MILD), ensures high com...
In this paper, we report results of a numerical investigation of turbulent natural gas combustion fo...