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Experimental and numerical studies on the premixed syngas swirl flames in a model combustor

机译:模型燃烧室中预混合合成气旋流火焰的实验和数值研究

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Experimental and numerical investigations were performed to study the combustion characteristics of synthesis gas (syngas) under premixed swirling flame mode. Four different type of syngases, ranging from low to high H-2 content were tested and simulated. The global flame structures and post emission results were obtained from experimental work, providing the basis of validation for simulations using flamelet generated manifold (FGM) modelling approach via a commercial computational fluid dynamic software. The FGM method was shown to provide reasonable agreement with experimental result, in particular the post-exhaust emissions and global flame shapes. Subsequently, the FGM method was adopted to model the flame structure and predict the radical species in the reaction zones. Simulation result shows that H-2-enriched syngas has lower peak flame temperature with lesser NO species formed in the reaction zone. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:进行了实验和数值研究,以研究在预混合旋流火焰模式下合成气(syngas)的燃烧特性。测试和模拟了从低H-2含量到高H-4含量的四种不同类型的合成气。整体火焰结构和排放后的结果是从实验工作中获得的,为通过商业计算流体动力学软件使用小火焰生成歧管(FGM)建模方法进行的仿真验证提供了基础。结果表明,FGM方法与实验结果可以合理地吻合,特别是尾气排放和整体火焰形状。随后,采用FGM方法对火焰结构进行建模并预测反应区的自由基种类。模拟结果表明,富氢的合成气具有较低的峰值火焰温度,在反应区中形成的NO较少。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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