环形燃烧室的设计与数值分析

Fluids Pub Date : 2024-07-16 DOI:10.3390/fluids9070161
L. Moreno-Pacheco, Fernando Sánchez-López, J. Barbosa-Saldaña, José Martínez-Trinidad, Mario Alberto Carpinteyro-Pérez, W. Wong-Angel, R. A. García-León
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摘要

燃气轮机燃烧室的设计既是一门科学,也是一门艺术。本研究介绍了一种设计环形燃烧室的综合方法,该燃烧室是根据 CFM-56 发动机(一种广泛使用的高旁通比涡轮风扇发动机)的工作条件量身定制的。设计过程包括计算外壳、衬垫、扩散器和漩涡的基本准则和尺寸,然后分析衬垫的冷却部分。使用 NUMECA 软件和 HEXPRESS 网格工具进行了数值模拟,采用 κ-ε 湍流模型和 Flamelet 燃烧模型来预测燃烧室的行为和性能。燃料为甲烷,模拟了三种燃料喷射角度:轴向、45° 和 60°。结果表明,燃烧室尺寸合适,在所有配置下都能实现完全燃烧。压力比为 0.96,超过了最低设计标准。此外,未燃烧碳氢化合物的排放量为零,而氮氧化物和一氧化碳的含量低于法规限值。这些结果验证了所提出的设计方法,确保了燃烧室的高效和环保性能。
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Design and Numerical Analysis of an Annular Combustion Chamber
Designing a combustion chamber for gas turbines is considered both a science and an art. This study presents a comprehensive methodology for designing an annular combustion chamber tailored to the operating conditions of a CFM-56 engine, a widely used high bypass ratio turbofan engine. The design process involved calculating the basic criteria and dimensions for the casing, liner, diffuser, and swirl, followed by an analysis of the cooling sections of the liner. Numerical simulations using NUMECA software and the HEXPRESS meshing tool were conducted to predict the combustion chamber’s behavior and performance, employing the κ-ε turbulence model and the Flamelet combustion model. Methane was used as the fuel, and simulations were performed for three fuel injection angles: axial, 45°, and 60°. Results demonstrate that the combustion chamber is properly dimensioned and achieves complete combustion for all configurations. The pressure ratio is 0.96, exceeding the minimum design criteria. Additionally, the emissions of unburned hydrocarbons are zero, while nitrogen oxides and carbon monoxide levels are below regulatory limits. These findings validate the proposed design methodology, ensuring efficient and environmentally compliant combustion chamber performance.
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