The present work investigates the formation and development of cavitation of a multicomponent Diesel fuel surrogate discharging from a high-pressure fuel injector operating in the range of injection pressures from 60MPa to 450MPa. The compressible form of the Navier-Stokes equations is numerically solved with a density-based solver employing the homogeneous mixture model for accounting the presence of liquid and vapour phases, while turbulence is resolved using a Large Eddy Simulation approximation. Simulations are performed on a tapered heavy-duty Diesel engine injector at a nominal fully-open needle valve lift of 350μm. To account for the effect of extreme fuel pressurisation, two approaches have been followed: (i) a barotropic evolution ...
Efforts to improve diesel fuel sprays have led to a significant increase in fuel injection pressures...
In the current paper, indicative results of the flow simulation during the opening phase of a Diesel...
The modern fuel injectors work with ultra-high injection pressure with a micro-size nozzle, which in...
The present work investigates the formation and development of cavitation of a multicomponent Diesel...
An investigation of the fuel heating, vapor formation, and cavitation erosion location patterns insi...
The present work investigates the influence of properties variation of Diesel fuel in the range of i...
Variation of fuel properties occurring during extreme fuel pressurisation in Diesel fuel injectors r...
The tendency of today’s fuel injection systems to reach injection pressures up to 3000 bar in order ...
Investigations with 300MPa injection pressures show significant soot reduction, but the e...
Most modern high-pressure common rail diesel fuel injection systems employ an internal pressure equa...
In-nozzle flow dominates primary break-up characteristics and therefore the combustion efficiency. H...
Fuel pressurisation up to 3000 bar, as required by modern Diesel engines, can result in significant ...
In this study, the influence of in-nozzle phenomena including flow separation, cavitation, turbulenc...
Includes bibliographical references (leaves 78-81).Reducing the pollution of new vehicles has become...
This work investigates the effect of liquid fuel viscosity, as specific by the European Committee fo...
Efforts to improve diesel fuel sprays have led to a significant increase in fuel injection pressures...
In the current paper, indicative results of the flow simulation during the opening phase of a Diesel...
The modern fuel injectors work with ultra-high injection pressure with a micro-size nozzle, which in...
The present work investigates the formation and development of cavitation of a multicomponent Diesel...
An investigation of the fuel heating, vapor formation, and cavitation erosion location patterns insi...
The present work investigates the influence of properties variation of Diesel fuel in the range of i...
Variation of fuel properties occurring during extreme fuel pressurisation in Diesel fuel injectors r...
The tendency of today’s fuel injection systems to reach injection pressures up to 3000 bar in order ...
Investigations with 300MPa injection pressures show significant soot reduction, but the e...
Most modern high-pressure common rail diesel fuel injection systems employ an internal pressure equa...
In-nozzle flow dominates primary break-up characteristics and therefore the combustion efficiency. H...
Fuel pressurisation up to 3000 bar, as required by modern Diesel engines, can result in significant ...
In this study, the influence of in-nozzle phenomena including flow separation, cavitation, turbulenc...
Includes bibliographical references (leaves 78-81).Reducing the pollution of new vehicles has become...
This work investigates the effect of liquid fuel viscosity, as specific by the European Committee fo...
Efforts to improve diesel fuel sprays have led to a significant increase in fuel injection pressures...
In the current paper, indicative results of the flow simulation during the opening phase of a Diesel...
The modern fuel injectors work with ultra-high injection pressure with a micro-size nozzle, which in...