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TURBULENCE MODELING IN A MODEL COMBUSTOR

机译:模型燃烧器中的湍流建模

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摘要

The flow field of a propane-air diffusion flame combustor with interior and exterior conjugate heat transfers was numerically investigated. Solutions obtained from four turbulence models together with a laminar flamelet combustion model, discrete ordinates radiation model and enhanced wall treatment are presented and discussed. The numerical results are compared, in detail, with a comprehensive database obtained from a series of experimental measurements. It is found that the Reynolds stress model (RSM), a second moment closure, illustrates superior performance over three popular two-equation eddy-viscosity models. Although the main flow features are captured by all four turbulence models, only the RSM is able to successfully predict the lengths of both recirculation zones and the turbulence kinetic energy distribution in the combustor chamber. In addition, it provides fairly good predictions for all Reynolds stress components, except for the circumferential normal stress at downstream sections. However, the superiority of the RSM is not so obvious for the temperature and species predictions in comparison with eddy-viscosity models, except for the standard k-e model. This suggests that coupling between the RSM and combustion models needs to be further improved in order to enhance its applications in practical combustion systems.
机译:数值研究了具有内外共轭传热的丙烷-空气扩散火焰燃烧器的流场。介绍并讨论了从四个湍流模型以及层流小火焰燃烧模型,离散纵坐标辐射模型和增强壁处理获得的解决方案。将数值结果与从一系列实验测量中获得的综合数据库进行详细比较。发现雷诺应力模型(RSM)是第二矩闭合,说明了优于三种流行的两方程涡流粘度模型的优越性能。尽管所有四个湍流模型都捕获了主要的流动特征,但只有RSM能够成功预测两个回流区的长度以及燃烧室中的湍流动能分布。此外,它为所有雷诺应力分量提供了相当好的预测,除了下游部分的圆周法向应力。然而,除了标准k-e模型外,与涡流-粘度模型相比,RSM的优势在温度和物种预测方面不是那么明显。这表明RSM和燃烧模型之间的耦合需要进一步改善,以增强其在实际燃烧系统中的应用。

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