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Analysis of Plume Effects on Sonic Boom Signature for Isolated Nozzle Configurations

机译:隔离喷嘴配置中羽流对声波动臂签名的影响分析

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摘要

Computational fluid dynamics (CFD) analysis has been performed to study the plume effects on sonic boom signature for isolated nozzle configurations. The objectives of these analyses were to provide comparison to past work using modern CFD analysis tools, to investigate the differences of high aspect ratio nozzles to circular (axisymmetric) nozzles, and to report the effects of underexpanded nozzle operation on boom signature. CFD analysis was used to address the plume effects on sonic boom signature from a baseline exhaust nozzle. Near-field pressure signatures were collected for nozzle pressure ratios (NPRs) between 6 and 10. A computer code was used to extrapolate these signatures to a ground-observed sonic boom N-wave. Trends show that there is a reduction in sonic boom N-wave signature as NPR is increased from 6 to 10. The performance curve for this supersonic nozzle is flat, so there is not a significant loss in thrust coefficient as the NPR is increased. As a result, this benefit could be realized without significant loss of performance. Analyses were also collected for a high aspect ratio nozzle based on the baseline design for comparison. Pressure signatures were collected for nozzle pressure ratios from 8 to 12. Signatures were nearly twice as strong for the two-dimensional case, and trends also show a reduction in sonic boom signature as NPR is increased from 8 to 12. As low boom designs are developed and improved, there will be a need for understanding the interaction between the aircraft boat tail shocks and the exhaust nozzle plume. These CFD analyses will provide a baseline study for future analysis efforts.
机译:已经进行了计算流体动力学(CFD)分析,以研究羽流对独立喷嘴配置对声波喷杆特征的影响。这些分析的目的是与使用现代CFD分析工具进行的以往工作进行比较,以调查高长宽比喷嘴与圆形(轴对称)喷嘴的区别,并报告喷嘴操作不足对动臂签名的影响。 CFD分析用于解决羽流对基线排气喷嘴对声波喷杆特征的影响。收集了6至10之间的喷嘴压力比(NPR)的近场压力信号。使用计算机代码将这些信号外推到地面观察到的声波N波。趋势表明,随着NPR从6增加到10,声波臂的N波特征会降低。该超音速喷嘴的性能曲线是平坦的,因此当NPR增加时,推力系数不会出现明显的损失。结果,可以在不显着降低性能的情况下实现该好处。还根据基线设计收集了高纵横比喷嘴的分析结果以进行比较。对于8到12的喷嘴压力比,收集了压力信号。二维情况下的信号强度几乎是原来的两倍。趋势还显示,随着NPR从8增加到12,声波臂信号强度会降低。在开发和改进后,将需要理解飞机船尾冲击与排气喷嘴羽流之间的相互作用。这些CFD分析将为将来的分析工作提供基线研究。

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    Castner, Raymond S.;

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  • 年度 2008
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