燃气加热提高GTU燃烧器燃料燃烧完全性的效率分析

IF 0.3 Q4 ENERGY & FUELS Problemele Energeticii Regionale Pub Date : 2021-11-01 DOI:10.52254/1857-0070.2021.4-52.09
Ahiley Pekov, N. Bachev, A. Shilova, O. Matyunin, O. Betinskaya
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引用次数: 0

摘要

燃气轮机(GTU)燃烧器的一个主要特点是燃料燃烧的完整性,它与CO和未燃烧碳氢化合物CnHm的排放一起直接影响电厂的效率。本文的目的是研究燃料加热作为提高燃料燃烧完整性和控制有害物质排放的一种替代方法的应用。这一目标是通过获得在不同温度的燃料气体供应到燃烧室的CO和NOx排放的实验数据来实现的。这项工作最重要的结果是实验证实了通过加热燃气来提高燃烧效率(降低CO)的可能性,同时保持燃烧室的气体动力学特性不变。所得结果的意义在于实验证实了在不改变燃烧室的工作特性和设计特性的情况下,仅通过加热燃气来控制燃烧质量。燃料燃烧不完全会导致燃烧器不稳定运行,主要表现为不稳定的预喷燃并伴有燃烧器内压力振荡。目前,确保燃料燃烧稳定性和完全性增加的方法都与进气道的空气量和温度变化有关。然而,这些方法的使用可能是不必要的,因为它们会导致效率系数和燃气轮机设施“热部分”资源的减少。
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Analysis of Efficiency upon Enhancing the Fuel Combustion Completeness in the GTU Burners Using Fuel Gas Heating up
One main characteristic of the gas turbine unit (GTU) burner is its fuel combustion completeness, which affects directly the efficiency of the power plant along with CO and unburnt hydrocarbons CnHm emissions. The aim of this work was the research on the application of the fuel heating-up as an alternative method for increasing the fuel combustion completeness and controlling the emission of harmful agents. This goal is achieved by obtaining experimental data on the emissions of CO and NOx at different temperatures of the fuel gas supply to the combustion chamber. The most significant result of the work is the experimentally confirmed possibility of increasing the combustion efficiency (decreasing CO) by heating the fuel gas while maintaining constant gas-dynamic characteristics of the chamber. The significance of the results obtained consists in the experimental confirmation of the combustion quality control only by heating the fuel gas without changing the operating and design characteristics of the combustion chamber. The fuel combustion low completeness can cause the burner unstable operation in the form of the unsteady pre-blowout burning combined with the pressure oscillations in the burner. At present, methods for ensuring the increase in stability and completeness of the fuel combustion are related to the air rate and temperature changes at the inlet. However, the use of these methods can be unwanted because of their causing the decrease in the coefficient of efficiency and in the resource of the ‘hot part’ of the gas-turbine facility.
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CiteScore
0.70
自引率
33.30%
发文量
38
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