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Experimental study and empirical prediction of fuel flow parameters under air evolution conditions
Experimental study and empirical prediction of fuel flow parameters under air evolution conditions
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Experimental study and empirical prediction of fuel flow parameters under air evolution conditions
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Experimental study and empirical prediction of fuel flow parameters under air evolution conditions
Experimental study and empirical prediction of fuel flow parameters under air evolution conditions
Journal Article

Experimental study and empirical prediction of fuel flow parameters under air evolution conditions

2017
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Overview
Air evolution in kerosene under the effect of gravity flow with various hydraulic resistances in the pipeline was studied experimentally. The study was conducted at pressure ranging from 0.2 to 1.0 bar and temperature varying between -20°C and +20°C. Through these experiments, the oversaturation limit beyond which dissolved air starts evolving intensively from the fuel was established and the correlations for the calculation of pressure losses and air evolution on local loss elements were obtained. A method of calculating two-phase flow behaviour in a titled pipeline segment with very low mass flow quality and fairly high volume flow quality was developed. The complete set of empirical correlations obtained by experimental analysis was implemented in the engineering code. The software simulation results were repeatedly verified against our experimental findings and Airbus test data to show that the two-phase flow simulation agrees quite well with the experimental results obtained in the complex branched pipelines.