The influence of spray-wall interaction on air entrainment in an unsteady non-evaporating diesel spray was studied using laser Doppler anemometry. The spray was injected into confined quiescent air at ambient pressure and temperature and made to impact on a flat wall. The air velocity component normal to a cylindrical surface surrounding the spray was measured during the entire injection period, allowing to evaluate the time history of the entrained air mass flow rate. The influence of wall distance and spray impingement angle on air entrainment characteristics has been investigated and the results indicate that the presence of a wall increases the entrained mass flow rate in the region close to the surface, during the main injection period. Normal impingement appears to produce stronger effects than oblique incidence at 30 and 45 deg. A qualitative explanation of the results is also proposed, based on the drop-gas momentum exchange mechanism.

Effect of spray-wall interaction on air entrainment in a transient diesel spray

Brunello G
1993

Abstract

The influence of spray-wall interaction on air entrainment in an unsteady non-evaporating diesel spray was studied using laser Doppler anemometry. The spray was injected into confined quiescent air at ambient pressure and temperature and made to impact on a flat wall. The air velocity component normal to a cylindrical surface surrounding the spray was measured during the entire injection period, allowing to evaluate the time history of the entrained air mass flow rate. The influence of wall distance and spray impingement angle on air entrainment characteristics has been investigated and the results indicate that the presence of a wall increases the entrained mass flow rate in the region close to the surface, during the main injection period. Normal impingement appears to produce stronger effects than oblique incidence at 30 and 45 deg. A qualitative explanation of the results is also proposed, based on the drop-gas momentum exchange mechanism.
1993
Air motion
Air velocity components
Ambient pressures
Applied field
Black smoke
Combustible mixture
Combustion efficiencies
Cylindrical surface
Dense core
DI diesel engine
Diesel spray
Droplet breakup
Engine speed
Entrained air
Experimental evidence
Experimental research
Flow-mixing
Fuel delivery
Fuel injection characteristics
Fuel sprays
Gaseous phase
Hydrocarbon emission
Injection period
Injection pressures
Injection systems
Injection timing
Jet impingement
Laser Doppler anemometry
Liquid jets
Mass flow rate
Mixture formation
Momentum exchange
Near-field zones
Nozzle diameter
Oblique incidence
Penetration process
Room temperature
Soot concentration
Spray combustion
Spray impingement
Strong turbulence
Time history
Wall distances
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/200926
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