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Parametric Testing of Chevrons on Single Flow Hot Jets

机译:单流热喷嘴上人字形的参数测试

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摘要

A parametric family of chevron nozzles have been studied, looking for relationships between chevron geometric parameters, flow characteristics, and far-field noise. Both cold and hot conditions have been run at acoustic Mach number 0.9. Ten models have been tested, varying chevron count, penetration, length, and chevron symmetry. Four comparative studies were defined from these datasets which show: that chevron length is not a major impact on either flow or sound; that chevron penetration increases noise at high frequency and lowers it at low frequency, especially for low chevron counts; that chevron count is a strong player with good low frequency reductions being achieved with high chevron count without strong high frequency penalty; and that chevron asymmetry slightly reduces the impact of the chevron. Finally, it is shown that although the hot jets differ systematically from the cold one, the overall trends with chevron parameters is the same.
机译:已研究了人字形喷嘴的参数族,以寻找人字形几何参数,流动特性和远场噪声之间的关系。冷和热条件都在声马赫数0.9下运行。已经测试了十个模型,它们的人字形数量,穿透力,长度和人字形对称性各不相同。从这些数据集中定义了四项比较研究,这些研究表明:V形长度对流量或声音没有重大影响;人字形穿透在高频下会增加噪声,而在低频下会降低噪声,尤其是在人字形计数较低时;人字形计数是一个强大的参与者,高人字形计数可以实现良好的低频降低,而不会产生强烈的高频损失;人字形的不对称性会稍微减少人字形的影响。最后,结果表明,尽管热流与冷流有系统的区别,但人字形参数的总体趋势是相同的。

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