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Simulation and optimization study on the methane combustion chamber

XING Jing-fang, QU Hong-qiang, HUI Ji, ZHENG Xue-jing, HU Fang-shu, WANG Ying-jie

Abstract

This paper simulated and optimized the combustion chamber of the direct metering of the natural gas calorific value experimental platform. This material conducted a numerical simulation of methane combustion in the combustion chamber using ANSYS Fluent software, and the effects of different mixture inlet pipe length, combustion chamber diameter, and methane nozzle diameter on carbon monoxide emission concentration were studied. Aim to promote the complete combustion of methane, a more appropriate combustion chamber structure, and size were determined through carbon monoxide emission concentration. Through the comparison and analysis of the temperature field, velocity field, and concentration field of each component, it is suggested to set the length of the inlet pipe to 25 mm, and set the diameter of the combustion chamber and methane nozzle as 44 mm and 1.5 mm, respectively. After optimization, carbon monoxide emission concentration decreased from 27.9 PPM to 17.8 PPM, decreasing by 36.2 %.

Keywords
Natural gas calorific value; Methane combustion; Combustion chamber structure optimization; Simulation optimization
Download
IMEKO-TC9-2019-143.pdf
DOI
10.21014/tc9-2022.143
IMEKO TC
TC9 - Flow Measurement

Event details

Event
FLOMEKO 2022
Technical Committee
TC9
Email
lich@nim.ac.cn
Place
Chongqing, CHINA
Time
1 November 2022 - 4 November 2022
Website
http://flomeko2022.msmk.tech/c/index.html

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