Lean Low NOx Primary Zones Using Radial Swirlers

Author:

Alkabie H. S.1,Andrews G. E.1,Ahmad N. T.1

Affiliation:

1. The University of Leeds, Leeds, UK

Abstract

Swirling flow primary zones with between 30% and 60% simulated primary zone air flow were investigated using curved blade radial swirlers. Two radial swirlers were compared with the same open area but different outlet diameters, d, giving different expansion ratios, D/d, from the swirler to the combustor diameter, D. Two combustors were used, 76 mm and 140 mm diameter, the larger one corresponding to the size of several gas turbine can combustors. There was no influence of D/d on the weak extinction. It was demonstrated that an adequate efficiency was not achieved in the weak region until there was a significant outer expansion and associated recirculation zone. It was shown that these systems with central gaseous fuel injection had good flame stability with very low NOx emissions. Propane and natural gas were compared and the NOx emissions were 50% lower with natural gas. The optimum NOx emissions, compatible with a high combustion efficiency, were close to 10 ppm NOx emissions corrected to 15% oxygen.

Publisher

American Society of Mechanical Engineers

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1. Combustion Dynamics in a Single-Element Lean Direct Injection Gas Turbine Combustor;Combustion Science and Technology;2019-07-31

2. Influence of the Primary Jets and Fuel Injection on the Aerodynamics of a Prototype Annular Gas Turbine Combustor Sector;Journal of Engineering for Gas Turbines and Power;2010-09-24

3. Experimental Investigation of a Multiplex Fuel Injector Module for Low Emission Combustors;41st Aerospace Sciences Meeting and Exhibit;2003-01-06

4. OH imaging in a lean burning high-pressure combustor;AIAA Journal;1996-03

5. High-Intensity Burners with Low Nox Emissions;Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy;1992-02

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