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EVALUATION OF THE VAPORIZATION ENERGY OF A FUEL SPRAY IN A RESEARCH ENGINE USING INFRARED IMAGING AND 1D MODEL

Conference Paper
Publication Date:
2017
abstract:
This paper deepens the study on fuel evaporation in a modern internal combustion engine equipped with high pressure injection system by modelling and optical diagnostics. A 1d model has been coupled to experimental results of infrared imaging measurements carried out in an optical diesel engine. Images of the in-cylinder processes have been recorded at different crank angle using a research compression ignition engine with optical access through the piston. A bandpass filter has been used to isolate the fuel vapor phase (3.4 ?m) and to analyze the distribution and concentration of fuel in the combustion chamber. On the other hand, a 1d model of fuel injection has been implemented to calculate the instantaneous fuel vapor mass and the evaporation rate. The energy required for the vaporization of the fuel and its contribution to the calculated rate of heat release in the cylinder has been evaluated with the support of the infrared emission measurements.
Iris type:
04.01 Contributo in Atti di convegno
Keywords:
Optical engine; Heat of fuel vaporization; Infrared imaging; 1d model of evaporation rate
List of contributors:
Mancaruso, Ezio; Sequino, Luigi; Vaglieco, BIANCA MARIA
Authors of the University:
MANCARUSO EZIO
SEQUINO LUIGI
VAGLIECO BIANCA MARIA
Handle:
https://iris.cnr.it/handle/20.500.14243/330649
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