Impact of Oxygen Content on Flame Dynamics in a Non-Premixed Gas Turbine Model Combustor

Author:

Chen Mingmin1,Huang Xinbo1,Wang Zhaokun2,Zheng Hongtao1,Deng Fuquan12

Affiliation:

1. College of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, China

2. Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hong Kong SAR 999077, China

Abstract

In this study, large eddy simulation (LES) was used to investigate the dynamic characteristics of diffusion flames in a swirl combustion chamber at an oxygen content of 11–23 wt% and temperature of 770 K. The proper orthogonal decomposition (POD) method was employed to obtain flame dynamic modes. The results indicate that oxygen content has a significant impact on the downstream flow and flame combustion characteristics of the swirl combustion chamber. With oxygen content increasing, the size of the recirculation zone is reduced, and the flame field fluctuations are intensified. The pressure and heat release fluctuations under different oxygen contents were analyzed using frequency spectrum analysis. Finally, the flame modes were analyzed using the POD method, and it was found that the coherent structures are asymmetric relative to the local coordinate system. At an oxygen content of 11 wt%, they exhibit larger coherent structures, while at an oxygen content of 23 wt%, they exhibit numerous turbulent structures.

Funder

Heilongjiang Provincial Natural Science Foundation

National Science and Technology Major Project

Publisher

MDPI AG

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