공업로 연소기의 수소 전소 시 NOx 배출 및 저감 특성 분석을 위한 전산유체역학 해석 연구

Computational Fluid Dynamic Analysis for NOx Emission and Reduction Characteristics in Hydrogen Burners in Industrial Furnace Combustors
  • 최락준; 
  • 김규보; 
  • 임호; 
  • 허정기; 
  • 오혁진; 
  • ... 김설하; 
  • 외 2명

초록

In this study used Computational Fluid Dynamic analysis to examine NOx reduction in hydrogen combustion, analyzing six conditions with varying air/fuel ratios, temperatures, and concentrations. Results were compared between two combustor shapes and previous experimental data. Findings showed increased air/fuel ratios decreased flame temperature and increased post-combustion O2. NOx emissions peaked at high temperatures and low O2. Numerical results aligned with previous experimental trends, validating the approach. Combustor shape differences, reflecting variations in fuel and air pipes, significantly affected flow rates and combustion positions. This reduced NOx emissions up to a certain air/fuel ratio, but excessive increases diminished this effect. The study highlights the complex relationship between combustor design, operating conditions, and NOx emissions. Further research is needed to optimize NOx reduction by considering pipe numbers and combustion locations. Future studies should explore various combustor geometries, fine-tune air/fuel ratios, and investigate additional parameters influencing NOx formation and reduction in hydrogen combustion systems.

키워드

Industrial furnace; Hydrogen Combustion; Computational Fluid Dynamic Analysis; NOx emission; Air/Fuel Ratio; 공업로; 수소전소; 전산유체역학 해석; 질소산화물; 공기비
제목
공업로 연소기의 수소 전소 시 NOx 배출 및 저감 특성 분석을 위한 전산유체역학 해석 연구
제목 (타언어)
Computational Fluid Dynamic Analysis for NOx Emission and Reduction Characteristics in Hydrogen Burners in Industrial Furnace Combustors
저자
최락준; 김규보; 임호; 허정기; 오혁진; 김설하; 권종서; 김량균
DOI
10.17958/ksmt.26.5.202410.1053
발행일
2024-10
유형
Y
저널명
한국기계기술학회지
권
26
호
5
페이지
1053 ~ 1059