Spray Flame Characteristics of Bio-Derived Fuels in a Simulated Gas Turbine Burner

Author:

Panchasara Heena1,Kolhe Pankaj S.2,Agrawal Ajay K.3

Affiliation:

1. School of Engineering and Technology, Central Queensland University, Melbourne 3000, Australia

2. Department of Aerospace and Mechanical Engineering, Indian Institute of Technology, Hyderabad, Telangana 502285, India

3. College of Engineering, Mechanical Engineering, University of Alabama, Tuscaloosa, AL 35487

Abstract

Abstract Fuel injection plays an important role in liquid-fueled gas turbine combustion. The strong interdependence of liquid breakup and atomization, turbulent dispersion of these droplets, droplet evaporation, and fuel–air mixing make the spray modeling an extremely challenging task. The physical processes are even more difficult to predict for alternative fuels with different thermophysical properties. In this study, spray flames of unheated and preheated vegetable oil (VO) produced by an air-blast (AB) atomizer in a swirl stabilized combustor are investigated experimentally. Phase Doppler particle analyzer (PDPA) is used to measure the instantaneous diameter and axial velocity of droplets at different axial and radial locations in both flames. Experiments are conducted at an equivalence ratio of 0.79 and atomizing air to liquid ratio by a mass of 2.5 to obtain stable VO flames. Radial profiles of mean axial velocity and Sauter mean diameter (SMD) are presented to show the effect of fuel preheating. Joint probability density functions (joint PDF) are presented to show the correlation between droplet diameter and axial velocity. Results are analyzed to show that both sprays exhibit self-similar droplet diameter distributions at different axial and radial locations when normalized properly. Thus, the vast amount of PDPA data in the spray can be reduced to simple distribution functions. A method to reconstruct the joint PDF from experimentally determined distribution functions is presented. We envision that the joint PDF approach outlined in this study could be implemented in high-fidelity computational fluid dynamic models to improve spray predictions in future studies.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference23 articles.

1. Alternative Fuels,2010

2. The Effect of Liquid-Fuel Preparation on Gas Turbine Emissions,2006

3. Recent Advances in Droplet Vaporization and Combustion;Prog. Energy Combust. Sci.,1982

4. Review of Theory of Distortion and Disintegration of Liquid Streams;Prog. Energy Combust. Sci.,2000

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