LAPSE:2023.13712
Published Article
LAPSE:2023.13712
Breakup Mechanism of a Jet in the L-Shape Crossflow of a Gas Turbine Combustor
March 1, 2023
Abstract
Experimental investigations are conducted to determine the mechanism and characteristics of a jet in an L-shape crossflow simulating the radial swirl injector of a lean premixed-prevaporized (LPP) combustor. To simplify the radial flow of the actual injector while ignoring the centrifugal effect, the L-shaped 2D-channel is used for the crossflow, and water is used as a fuel simulant. The jet breakup is captured using a high-speed camera, and the density gradient magnitude is post-processed to clarify the spray. The Sauter mean diameter (SMD) of the spray is measured via a laser diffraction method with a helium−neon laser optical system (HELOS). The characteristics of the jet in the L-shape crossflow are compared with the characteristics of the jet in a typical crossflow through the flat channel. The results for different outlet heights of the L-shape channel (H/d0) and different injector positions (L/d0) are presented. A dimensionless number (τ) consisting of a time ratio is introduced to describe the jet characteristics. In a previous work, the spraying tendency was demonstrated for different injector positions. In addition, the effect of the recirculation area on H/d0 was empirically shown. H/d0 determines the size of the recirculation area, and the range of τ determines the jet breakup mechanism inside the L-shape channel. The results of this study present the breakup mechanism of the jet in the L-shape channel flow, which simulates a jet in a radial swirler injector for gas turbine engines. It is expected that these results can be used to assist in designing gas turbine engines with more combustion efficiency.
Keywords
atomization, breakup, jet in crossflow, radial swirler, Sauter mean diameter, spray
Suggested Citation
Choi MH, An J, Koo J. Breakup Mechanism of a Jet in the L-Shape Crossflow of a Gas Turbine Combustor. (2023). LAPSE:2023.13712
Author Affiliations
Choi MH: Graduate School, Korea Aerospace University, Goyang 10540, Korea [ORCID]
An J: Department of Smart Air Mobility, Korea Aerospace University, Goyang 10540, Korea [ORCID]
Koo J: School of Aerospace Mechanical Engineering, Korea Aerospace University, Goyang 10540, Korea
Journal Name
Energies
Volume
15
Issue
9
First Page
3360
Year
2022
Publication Date
2022-05-05
ISSN
1996-1073
Version Comments
Original Submission
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PII: en15093360, Publication Type: Journal Article
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LAPSE:2023.13712
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https://doi.org/10.3390/en15093360
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