华南理工大学学报(自然科学版) ›› 2026, Vol. 54 ›› Issue (3): 1-9.doi: 10.12141/j.issn.1000-565X.250214

• 能源、动力与电气工程 •    下一篇

基于分级式等离子点火的贫煤燃烧数值模拟

刘定平  吴超超  潘澍桓   

  1. 华南理工大学 电力学院,广东 广州 510640

  • 出版日期:2026-03-25 发布日期:2025-10-24

Numerical Simulation of Lean Coal Combustion Based on Staged Plasma Ignition

LIU Dingping  WU Chaochao  PAN Shuhuan   

  1. School of Electric Power Engineering, South China University of Technology, Guangzhou 510640, Guangdong, China

  • Online:2026-03-25 Published:2025-10-24

摘要:

提高等离子点火装置的煤种适应性对于助力电厂节能减排,实现双碳目标具有重要意义。针对目前分级式等离子燃烧器在电厂运行过程中燃烧低挥发份贫煤所出现的燃烧不稳定、熄火等问题,采用数值模拟的研究方法,首先建立了分级式等离子燃烧器的网格模型,接着验证了所采用网格模型的可靠性,然后采用控制变量法依次研究了等离子功率、一次风速及煤粉浓度这三个重要运行参数对分级式等离子燃烧器中贫煤燃烧过程的影响,最后对等离子燃烧器的运行参数进行优化以解决贫煤的点火燃烧问题。研究结果表明:等离子功率大小是影响贫煤点火的关键因素,为了实现等离子燃烧器中贫煤稳定点火燃烧,等离子功率应不低于150kw;一次风速会影响贫煤点火过程初期的燃烧温度,存在一个最佳范围,应保持一次风速在22~25m/s;煤粉浓度大小是影响贫煤点火成功的重要因素,维持在较高的煤粉浓度才能保证贫煤稳定点火燃烧,煤粉浓度应不低于0.3kg/kg。研究结果对电厂运行等离子燃烧器进行贫煤点火具有重要指导意义。

关键词: 煤粉燃烧, 等离子点火, 贫煤, 数值模拟

Abstract:

Enhancing the coal adaptability of plasma ignition devices holds significant importance for assisting thermal power plants in energy conservation, emission reduction, and achieving carbon peaking and carbon neutrality goals. Currently, graded plasma combustors encounter operational challenges including combustion instability and flameout when burning low-volatility lean coal in power plants. To address these issues, this study employed numerical simulation methods. Initially, a structured mesh of the graded plasma combustor was established and its reliability was verified. Subsequently, using the controlled variable approach, the effects of three critical operating parameters - plasma power, primary air velocity, and pulverized coal concentration - on the lean coal combustion process in graded plasma combustors were systematically investigated. Finally, the operating parameters of the plasma burner were optimized to resolve ignition and combustion challenges associated with lean coal. The research results demonstrate that plasma power is the critical factor influencing lean coal ignition. To achieve stable ignition and combustion of lean coal in the plasma burner, the plasma power should not be lower than 150 kW. The primary air velocity affects the combustion temperature during the initial ignition stage, with an optimal range identified between 22-25 m/s. Furthermore, pulverized coal concentration proves to be a significant factor for successful ignition, where maintaining a relatively high concentration is essential for stable combustion - the coal concentration should not be less than 0.3 kg/kg. These findings provide important operational guidance for power plants utilizing plasma burners in lean coal ignition applications.

Key words: pulverized coal combustion, plasma ignition, lean coal, numerical simulation