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Multi-objective optimization approach toward conceptual design of gas turbine combustor

机译:燃气轮机燃烧器概念设计的多目标优化方法

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This paper focused on the conceptual design of a conventional gas turbine combustor via the multi-objective optimization approach. The suggested method integrated the design and estimation of the performance of the combustion chamber. The geometry and performance parameters could be found by applying the design tool. According to the level of available information in the primary phases of the design process, a chemical reactor network approach for modeling the combustion was chosen; thus, the droplet evaporation of the liquid fuel and unmixedness of the fuel-air mixture in the primary zone was modeled. The results obtained from the design tool for the two annular combustors were compared with the empirical data and showed an acceptable convergence between the dimensions and exhaust pollutants emission. The targets in the optimization process were the amount of the emission indices for two important pollutants (NOx and CO) produced by engines. Also, the parameters of the mass fractions of the primary zone, secondary zone, dilution zone, and the length of the primary and secondary zone were considered as the optimization variables. The results of the optimization process showed that minor changes in the combustor design could minimize the specified objectives to an acceptable level.
机译:本文集中于通过多目标优化方法的传统燃气轮机燃烧器的概念设计。建议的方法集成了燃烧室性能的设计和估计。通过应用设计工具,可以找到几何和性能参数。根据设计过程的主要阶段中的可用信息水平,选择了一种用于建模燃烧的化学反应器网络方法;因此,模拟了初级区中燃料 - 空气混合物的液体燃料和未混合的液滴蒸发。将来自两个环形燃烧器的设计工具获得的结果与经验数据进行了比较,并且在尺寸和排气污染物排放之间显示了可接受的会聚。优化过程中的目标是由发动机产生的两个重要污染物(NOx和CO)的排放指数的量。而且,主要区域,次区,稀释区和初级和次微区的长度的质量级分的参数被认为是优化变量。优化过程的结果表明,燃烧器设计的微小变化可以使指定的目标最小化到可接受的水平。

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