Impacts of Flow Swirl on Stability and Flow/Flame Interactions of Premixed Oxy-Methane Swirl Flames

Author:

Nemitallah Medhat A.123,Hossain Shorab4,Abdelhafez Ahmed524,Habib Mohamed A.524

Affiliation:

1. King Fahd University of Petroleum and Minerals Interdisciplinary Research Center for Hydrogen and Energy Storage (IRC-HES);, Department of Aerospace Engineering, , Dhahran 31261 , Saudi Arabia ;

2. SDAIA-KFUPM Joint Research Center for Artificial Intelligence (JRC-AI), KFUPM , Dhahran 31261 , Saudi Arabia ;

3. Researcher at K.A. CARE Energy Research & Innovation Center , Dhahran , Saudi Arabia

4. King Fahd University of Petroleum & Minerals Department of Mechanical Engineering, , Dhahran 31261 , Saudi Arabia

5. King Fahd University of Petroleum and Minerals Interdisciplinary Research Center for Hydrogen and Energy Storage (IRC-HES), , Dhahran 31261 , Saudi Arabia ;

Abstract

Abstract Effects of flow swirl on stability and flow/flame interactions of premixed oxy-methane flames (CH4/O2/CO2) are investigated experimentally and numerically in a premixed model gas turbine combustor. Two swirlers of 55-deg and 45-deg swirl angles were considered to perform this study over a range of combustor operating equivalence ratio (Φ = 0.1–1.0) and oxygen fraction (OF = 21%–70%) at a constant inlet flow velocity of 5.2 m/s. Combustor stability maps (representing flashback and blowout bounds) were identified experimentally in the Φ-OF space for the two swirlers, and the results were plotted over the calculated contours of adiabatic flame temperature (AFT). Specific flames were photographed using a camera to investigate the impact of flow swirl on flame macrostructure. Also, the shapes of the selected flames were calculated numerically using the contours of OH radicals, and the results showed good agreement with the photographed flame shapes. Contours of temperature and flow streamlines were plotted based on numerical calculations to figure out the influence of flow swirl on flame/flow interactions. The results showed that CH4/O2/CO2 swirl flames blow out at fixed AFT of ∼1600 K with no effect of swirl on flame stability near the blowout. Flow/flame interactions significantly affect flame stability near the flashback limit. Flame speed (FS) and AFT correlate with one another as log(FS) ∝ 1/AFT. The 45-deg swirler resulted in a wider stable combustion zone than that of the 55-deg swirler.

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference42 articles.

1. Performance Simulation and Cost Assessment of oxy-Combustion Process for CO2 Capture From Coal-Fired Power Plants;Varagani,2005

2. Trial Design for a CO2 Recovery Power Plant by Burning Pulverized Coal in O2/CO2;Okawa;Energy Convers. Manage.,1997

3. Applications of Oxygen for NOx Control and CO2 Capture in Coal-Fired Power Plants;Châtel-Pélage;Therm. Sci.,2006

4. Oxy-Fuel Combustion of Solid Fuels;Toftegaard;Prog. Energy Combust. Sci.,2010

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