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Effects of fuel line acoustics on the self-excited combustion instability mode transition with hydrogen-enriched laboratory-scale partially premixed combustor

机译:燃料管路声学对自激燃烧不稳定模式过渡的富氢实验室尺度部分预混燃烧器的影响

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摘要

A finite-element method study was conducted on a laboratory-scale partially premixed combustor, for investigating the characteristics of combustion instability due to fuel composition variations. The authors' previous studies reported frequency mode shifting in the same combustor with hydrogen enrichment, and the cause of this phenomenon was analyzed only from the viewpoint of the flame shape change and time lag theory. An increase in hydrogen fraction results in an increase in the speed of sound in the fuel feeding line, resulting in an increase in resonant frequencies determined by the fuel line geometry. This analysis shows that the hydrogen enrichment increases the bulk and longitudinal resonant frequencies of the fuel feeding line. When one of these fuel line resonances is coupled with the intrinsic acoustic mode of the combustor, the hydrogen fraction can be one of the key parameters affecting the main characteristics of combustion instability in a partially premixed system. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在实验室标度部分预混合的燃烧器上进行有限元方法研究,用于研究由于燃料组成变化而导致的燃烧不稳定性的特性。作者之前的研究报告报告的频率模式在具有氢气的相同燃烧器中移位,并且仅从火焰形状变化和时间滞后理论的观点出发地分析了这种现象的原因。氢馏分的增加导致燃料供给线中声速的增加,导致由燃料管线几何形状确定的谐振频率的增加。该分析表明,氢富集增加了燃料供给线的体积和纵向谐振频率。当这些燃料管线共振之一与燃烧器的固有声学模式耦合时,氢馏分可以是影响部分预混合系统中燃烧不稳定的主要特性的关键参数之一。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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