The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution combustion condition, using the Partially-Stirred Reactor model for turbulence-chemistry interactions. The Partially-Stirred Reactor model assumes that reactions are confined in a specific region of the computational cell, whose mass fraction depends both on the mixing and the chemical time scales. Therefore, the appropriate choice of mixing and chemical time scales becomes crucial to ensure the accuracy of the numerical simulation prediction. Results show that the most appropriate choice for mixing time scale in Moderate or Intense Low oxygen Dilution combustion regime is to use a dynamic evaluation, in which the ratio between the variance of mi...
Interaction between turbulent mixing and chemical kinetics is the key parameter which determines the...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
A numerical and experimental investigation of a quasi-industrial furnace operating in moderate or in...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation ofModerate or Intense Low oxygen Dilution combu...
The present work deals with the numerical simulation of Adelaide Jet in Hot Co-flow burner under Mod...
Available online 7 September 2023. OnlinePublIn flames, turbulence can either limit or enhance combu...
© 2020 The Authors. Moderate or Intense Low-oxygen Dilution (MILD) combustion has drawn increasing a...
The present work shows an in-depth analysis about the role of mixing models on the simulation of MIL...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
The present work shows an in-depth analysis about the role of mixing models on the simulation of MIL...
Interaction between turbulent mixing and chemical kinetics is the key parameter which determines the...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
A numerical and experimental investigation of a quasi-industrial furnace operating in moderate or in...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation of Moderate or Intense Low oxygen Dilution comb...
The present work focuses on the numerical simulation ofModerate or Intense Low oxygen Dilution combu...
The present work deals with the numerical simulation of Adelaide Jet in Hot Co-flow burner under Mod...
Available online 7 September 2023. OnlinePublIn flames, turbulence can either limit or enhance combu...
© 2020 The Authors. Moderate or Intense Low-oxygen Dilution (MILD) combustion has drawn increasing a...
The present work shows an in-depth analysis about the role of mixing models on the simulation of MIL...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
The present work shows an in-depth analysis about the role of mixing models on the simulation of MIL...
Interaction between turbulent mixing and chemical kinetics is the key parameter which determines the...
Novel combustion technologies ensuring low emissions, high efficiency and fuel flexibility are essen...
A numerical and experimental investigation of a quasi-industrial furnace operating in moderate or in...