In the present study, Reynolds-Averaged Navier-Stokes simulations together with a novel flamelet generated manifold (FGM) hybrid combustion model incorporating preferential diffusion effects is utilised for the investigation of a hydrogen-blended diesel-hydrogen dual-fuel engine combustion process with high hydrogen energy share. The FGM hybrid combustion model was developed by coupling laminar flamelet databases obtained from diffusion flamelets and premixed flamelets. The model employed three control variables, namely, mixture fraction, reaction progress variable and enthalpy. The preferential diffusion effects were included in the laminar flamelet calculations and in the diffusion terms in the transport equations of the control variables...
A flamelet-generated manifold (FGM) method that explicitly considers the preferential diffusion effe...
Superior fuel economy, higher torque and durability have led to the diesel engine being widely used ...
In this study, we investigate some preliminary reaction model predictions analytically in comparison...
In the present study, Reynolds-Averaged Navier-Stokes simulations together with a novel flamelet gen...
Most applications are currently powered by compression ignition (CI) engines due to their reliabilit...
Modeling hydrogen-air flames is challenging for several reasons. Due to its high diffusivity and rea...
This study reports on the development of a flamelet-based reduction method for autoignition of hydro...
In this paper, we investigate the extension of the flamelet-generated manifold (FGM) method to inclu...
The idea of reducing emissions and pollution in turbo-machinery technology is growing significantly ...
Preferential diffusion is very important in simulations of hydrogen flames. Flame stretch and curvat...
Among the alternative fuels, hydrogen shows great potential as fuel and energy carrier. The advantag...
In this paper we study the possibility to account for preferential diffusion effects in lean turbule...
A flamelet-generated manifold (FGM) method that explicitly considers the preferential diffusion effe...
Superior fuel economy, higher torque and durability have led to the diesel engine being widely used ...
In this study, we investigate some preliminary reaction model predictions analytically in comparison...
In the present study, Reynolds-Averaged Navier-Stokes simulations together with a novel flamelet gen...
Most applications are currently powered by compression ignition (CI) engines due to their reliabilit...
Modeling hydrogen-air flames is challenging for several reasons. Due to its high diffusivity and rea...
This study reports on the development of a flamelet-based reduction method for autoignition of hydro...
In this paper, we investigate the extension of the flamelet-generated manifold (FGM) method to inclu...
The idea of reducing emissions and pollution in turbo-machinery technology is growing significantly ...
Preferential diffusion is very important in simulations of hydrogen flames. Flame stretch and curvat...
Among the alternative fuels, hydrogen shows great potential as fuel and energy carrier. The advantag...
In this paper we study the possibility to account for preferential diffusion effects in lean turbule...
A flamelet-generated manifold (FGM) method that explicitly considers the preferential diffusion effe...
Superior fuel economy, higher torque and durability have led to the diesel engine being widely used ...
In this study, we investigate some preliminary reaction model predictions analytically in comparison...