TY - JOUR
T1 - Experimental and Simulation Study on the Emissions of a Multi-Point Lean Direct Injection Combustor
AU - Zhu, P.
AU - Li, Q.
AU - Feng, X.
AU - Liang, H.
AU - Suo, J.
AU - Liu, Z.
N1 - Publisher Copyright:
© 2023, Isfahan University of Technology. All Rights Reserved.
PY - 2023
Y1 - 2023
N2 - Spurred by the world’s attention to pollution emissions from commercial aero-engines, the International Civil Aviation Organization (ICAO) has made more stringent emission regulations for civil aircraft engines, especially the NOx emission.This paper develops a Five-Point lean direct injection (LDI) combustor with three swirler schemes to reduce the emissions of commercial aircraft engines. The flowfield of the combustor is studied numerically. Moreover, the combustion efficiency and gaseous emissions in different inlet conditions and fuel ratios of the main stage (α) are studied experimentally. The corresponding results reveal that, under a fuel-air ratio (FAR) between 0.0130 and 0.0283 and an α value between 30% and 60%, the combustion efficiency is 99.18%, 98.83%, and 99.03% when the pilot stage works alone, and 99.69%, 99.23%, and 99.75% when the pilot and main stage work simultaneously. Furthermore, the experimental results suggest that the NOx emission decreases as α increases, demonstrating that the convergent swirler has a tremendous advantage in reducing NOx emissions over Venturi.
AB - Spurred by the world’s attention to pollution emissions from commercial aero-engines, the International Civil Aviation Organization (ICAO) has made more stringent emission regulations for civil aircraft engines, especially the NOx emission.This paper develops a Five-Point lean direct injection (LDI) combustor with three swirler schemes to reduce the emissions of commercial aircraft engines. The flowfield of the combustor is studied numerically. Moreover, the combustion efficiency and gaseous emissions in different inlet conditions and fuel ratios of the main stage (α) are studied experimentally. The corresponding results reveal that, under a fuel-air ratio (FAR) between 0.0130 and 0.0283 and an α value between 30% and 60%, the combustion efficiency is 99.18%, 98.83%, and 99.03% when the pilot stage works alone, and 99.69%, 99.23%, and 99.75% when the pilot and main stage work simultaneously. Furthermore, the experimental results suggest that the NOx emission decreases as α increases, demonstrating that the convergent swirler has a tremendous advantage in reducing NOx emissions over Venturi.
KW - Combustion performance
KW - Combustor
KW - LDI technology
KW - NOx emissions
KW - Venturi
UR - http://www.scopus.com/inward/record.url?scp=85167898490&partnerID=8YFLogxK
U2 - 10.47176/jafm.16.10.1863
DO - 10.47176/jafm.16.10.1863
M3 - 文章
AN - SCOPUS:85167898490
SN - 1735-3572
VL - 16
SP - 1938
EP - 1950
JO - Journal of Applied Fluid Mechanics
JF - Journal of Applied Fluid Mechanics
IS - 10
ER -