高保真燃烧模拟co2富集环境下CH4/空气两步反应机理优化

IF 2 Q2 ENGINEERING, MECHANICAL Frontiers in Mechanical Engineering Pub Date : 2023-10-13 DOI:10.3389/fmech.2023.1240761
S. Castellani, P. C. Nassini, A. Andreini
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引用次数: 0

摘要

在燃气轮机框架中,采用碳捕获和储存(CCS)系统,结合提高废气二氧化碳含量的策略,是一种很有前途的技术,可以减少此类机器的碳足迹。然而,任何从空气中脱离的氧化剂都可能损害传统模型的准确性,以表示燃烧过程。本文采用大涡模拟(LES)方法研究了CO 2浓度对大气预混旋转火焰的影响,并将数值预测结果与实验结果进行了比较。高保真数值模型的特点是通过本研究提出的内部优化程序推导出专用的全局反应机制。通过优化一种广泛应用的ch4 -空气两步机理,得到了在适度CO 2稀释条件下,提高层流火焰速度、厚度和火焰抗拉伸性能等关键火焰参数的化学方案。从火焰形状、热损失和压力波动等方面对数值计算结果进行了分析,结果与实验测量结果吻合较好,证明了该数值模型对CO 2稀释燃烧的能力。
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Optimization of a two-step CH4/air reaction mechanism in a CO2-enriched environment for high-fidelity combustion simulations
In the gas turbine framework, the adoption of carbon capture and storage (CCS) systems coupled with strategies to improve the exhaust CO 2 content is a promising technology to abate the carbon footprint of such machines. However, any departure of the oxidant from the air can compromise the accuracy of the conventional models to represent the combustion process. In this work, the effect of the CO 2 enrichment of the mixture on an atmospheric premixed swirled flame is investigated by means of large eddy simulation (LES), comparing the numerical predictions with the experimental results. The high-fidelity numerical model features a dedicated global reaction mechanism derived through an in-house optimization procedure presented in this study. The chemical scheme is obtained by optimizing a widely used CH 4 –air two-step mechanism to improve key flame parameters such as the laminar flame speed and thickness and the resistance of the flame to the stretch with moderate CO 2 dilution. The numerical results are analyzed in terms of flame shape, heat losses, and pressure fluctuations, showing a promising agreement with the experimental measurements and demonstrating the capabilities of the numerical model for CO 2 -diluted combustion.
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来源期刊
Frontiers in Mechanical Engineering
Frontiers in Mechanical Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
4.40
自引率
0.00%
发文量
115
审稿时长
14 weeks
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