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Prediction of the structure of fuel sprays in gas turbine combustors

机译:燃气轮机燃烧器中燃料喷雾的结构预测

摘要

The structure of fuel sprays in a combustion chamber is theoretically investigated using computer models of current interest. Three representative spray models are considered: (1) a locally homogeneous flow (LHF) model, which assumes infinitely fast interphase transport rates; (2) a deterministic separated flow (DSF) model, which considers finite rates of interphase transport but ignores effects of droplet/turbulence interactions; and (3) a stochastic separated flow (SSF) model, which considers droplet/turbulence interactions using random sampling for turbulence properties in conjunction with random-walk computations for droplet motion and transport. Two flow conditions are studied to investigate the influence of swirl on droplet life histories and the effects of droplet/turbulence interactions on flow properties. Comparison of computed results with the experimental data show that general features of the flow structure can be predicted with reasonable accuracy using the two separated flow models. In contrast, the LHF model overpredicts the rate of development of the flow. While the SSF model provides better agreement with measurements than the DSF model, definitive evaluation of the significance of droplet/turbulence interaction is not achieved due to uncertainties in the spray initial conditions.
机译:理论上,使用当前关注的计算机模型研究了燃烧室中燃料喷雾的结构。考虑了三个代表性的喷雾模型:(1)局部均质流动(LHF)模型,该模型假定相间传输速率无限快; (2)确定性分离流(DSF)模型,该模型考虑了有限的相间传输速率,但忽略了液滴/湍流相互作用的影响; (3)随机分离流(SSF)模型,该模型使用随机采样的湍流特性结合用于液滴运动和传输的随机游走计算来考虑液滴/湍流相互作用。研究了两种流动条件,以研究旋流对液滴寿命历史的影响以及液滴/湍流相互作用对流动特性的影响。计算结果与实验数据的比较表明,使用两个分离的流动模型可以合理地预测流动结构的一般特征。相反,LHF模型高估了流量的发展速度。尽管与DSF模型相比,SSF模型与测量结果具有更好的一致性,但由于喷雾初始条件的不确定性,无法对液滴/湍流相互作用的重要性进行确定的评估。

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    Shuen J. S.;

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  • 年度 1985
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