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Numerical investigation of scale effect of various injection diameters on interaction in cold kerosene-fueled supersonic flow

机译:各种注入直径尺度效应对煤油冷超音速流动相互作用的数值研究

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The incident shock wave generally has a strong effect on the transversal injection field in cold kerosene-fueled supersonic flow, possibly due to its affecting the interaction between incoming flow and fuel through various operation conditions. This study is to address scale effect of various injection diameters on the interaction between incident shock wave and transversal cavity injection in a cold kerosene-fueled scramjet combustor. The injection diameters are separately specified as from 0.5 to 1.5 mm in 0.5 mm increments when other performance parameters, including the injection angle, velocity and pressure drop are all constant. A combined three dimensional Couple Level Set & Volume of Fluids (CLSVOF) approach with an improved K-H & R-T model is used to characterize penetration height, span expansion area, angle of shock wave and sauter mean diameter (SMD) distribution of the kerosene droplets with/without considering evaporation. Our results show that the injection orifice surely has a great scale effect on the transversal injection field in cold kerosene-fueled supersonic flows. Our findings show that the penetration depth, span angle and span expansion area of the transverse cavity jet are increased with the injection diameter, and that the kerosene droplets are more prone to breakup and atomization at the outlet of the combustor for the orifice diameter of 1.5 mm. The calculation predictions are compared against the reported experimental measurements and literatures with good qualitative agreement. The simulation results obtained in this study can provide the evidences for better understanding the underlying mechanism of kerosene atomization in cold supersonic flow and scramjet design improvement. (C) 2016 IAA. Published by Elsevier Ltd. All rights reserved.
机译:入射冲击波通常对冷煤油供油的超音速流中的横向喷射场产生强烈影响,这可能是因为入射声波通过各种运行条件影响了流入流与燃料之间的相互作用。这项研究的目的是解决在煤油为燃料的超燃冲压燃烧器中,不同注入直径对入射冲击波与横向腔注入之间相互作用的尺度效应。当其他性能参数(包括注射角度,速度和压降)都恒定时,注射直径分别指定为0.5到1.5 mm(以0.5 mm为增量)。结合改进的KH和RT模型的三维三维液位和液量耦合方法(CLSVOF)来表征煤油液滴的渗透高度,跨度扩展面积,冲击波角度和Sauter平均直径(SMD)分布。 /不考虑蒸发。我们的结果表明,在冷煤油供能的超音速流中,注入孔口肯定会对横向注入场产生很大的比例效应。我们的发现表明,横向腔射流的穿透深度,跨度角和跨度扩展面积随注入直径的增加而增加,并且对于1.5的节流孔直径,煤油滴更容易在燃烧器的出口处破裂和雾化。毫米将计算预测与报告的实验测量结果和文献进行比较,并具有良好的定性一致性。这项研究获得的模拟结果可以为更好地理解冷超音速流动中煤油雾化的基本机理和改进超燃冲压发动机设计提供证据。 (C)2016 IAA。由Elsevier Ltd.出版。保留所有权利。

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