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A Critical Evaluation of Turbulence Modeling in a Model Combustor

机译:对模型燃烧室湍流建模的关键评估

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Based on the previous benchmark studies on combustion, scalar transfer, and radiation models, a critical evaluation of turbulence models in a propane-air diffusion flame combustor with interior and exterior conjugate heat transfers has been performed. Results obtained from six turbulence models are presented and 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, is superior over the five popular eddy-viscosity two-equation models. Although the main flow patterns are captured by all six turbulence models, only the RSM is able to successfully predict the lengths of both recirculation zones and give fairly accurate predictions for mean velocity, temperature, CO_2 and CO mole fractions, as well as turbulence kinetic energy in the combustor chamber. In addition, the realizable k-ε (Rk-ε) model illustrates better performance than four other two-equation models and can provide comparable results to those from the RSM for the configuration and operating conditions considered in the present study.
机译:基于先前对燃烧,标量传递和辐射模型的基准研究,对丙烷-空气扩散火焰燃烧器中具有内部和外部共轭传热的湍流模型进行了严格的评估。介绍了从六个湍流模型获得的结果,并将其与从一系列实验测量获得的综合数据库进行了详细的比较。发现雷诺应力模型(RSM)是第二矩闭合,它优于五个流行的涡流-粘性二方程模型。尽管所有六个湍流模型均捕获了主要流动模式,但只有RSM能够成功预测两个回流区的长度,并且可以对平均速度,温度,CO_2和CO摩尔分数以及湍流动能给出相当准确的预测在燃烧室。另外,可实现的k-ε(Rk-ε)模型说明了比其他四个二方程模型更好的性能,并且对于本研究中考虑的配置和操作条件,可提供与RSM相当的结果。

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