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Numerical investigations of cooling holes system role in the protection of the walls of a gas turbine combustion chamber

机译:冷却孔系统在燃气轮机燃烧室壁保护中作用的数值研究

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摘要

Numerical simulations in a gas turbine Swirl stabilized combustor were conducted to investigate the effectiveness of a cooling system in the protection of combustor walls. The studied combustion chamber has a high degree of geometrical complexity related to the injection system as well as the cooling system based on a big distribution of small holes (about 3,390 holes) bored on the flame tube walls. Two cases were considered respectively the flame tube without and with its cooling system. The calculations were carried out using the industrial CFD code FLUENT 6.2. The various simulations made it possible to highlight the role of cooling holes in the protection of the flame tube walls against the high temperatures of the combustion products. In fact, the comparison between the results of the two studied cases demonstrated that the walls temperature can be reduced by about 800℃ by the mean of cooling holes technique.
机译:进行了燃气轮机涡流稳定燃烧室的数值模拟,以研究冷却系统在保护燃烧室壁方面的有效性。所研究的燃烧室具有与喷射系统以及冷却系统相关的高度几何复杂性,该冷却系统基于在火焰管壁上钻出的小孔(约3,390个孔)的大量分布而形成的冷却系统。分别考虑有和没有冷却系统的火焰管有两种情况。使用工业CFD代码FLUENT 6.2进行计算。各种模拟使得有可能强调冷却孔在保护火焰管壁免受燃烧产物高温的作用。实际上,对两个案例的结果进行比较表明,采用冷却孔技术可以将壁温降低约800℃。

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  • 来源
    《Heat and mass transfer》 |2012年第5期|p.779-788|共10页
  • 作者单位

    Unite de Thermique et Thermodynamique des Precedes industriels, Ecole Nationale D'Ingenieurs de Monastir,Route de Ouardanine, 5020 Monastir, Tunisie;

    Unite de Thermique et Thermodynamique des Precedes industriels, Ecole Nationale D'Ingenieurs de Monastir,Route de Ouardanine, 5020 Monastir, Tunisie;

    Unite de Thermique et Thermodynamique des Precedes industriels, Ecole Nationale D'Ingenieurs de Monastir,Route de Ouardanine, 5020 Monastir, Tunisie;

    IUSTI, UMR CNRS 6595, 5 Rue Enrico Fermi,Technopole de Chateau- Gombert, 13013 Marseille, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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