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Assessment of Slat Noise Predictions for 30P30N High-Lift Configuration from BANC-Ⅲ Workshop

机译:BANC-Ⅲ车间对30P30N高升空配置的板条噪声预测的评估

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This paper presents a summary of the computational predictions and measurement data contributed to Category 7 of the 3rd AIAA Workshop on Benchmark Problems for Airframe Noise Computations (BANC-Ⅲ), which was held in Atlanta, GA, on June 14-15, 2014. Category 7 represents the first slat-noise configuration to be investigated under the BANC series of workshops, namely, the 30P30N two-dimensional high-lift model (with a slat contour that was slightly modified to enable unsteady pressure measurements) at an angle of attack that is relevant to approach conditions. Originally developed for a CFD challenge workshop to assess computational fluid dynamics techniques for steady high-lift predictions, the 30P30N configurations has provided a valuable opportunity for the airframe noise community to collectively assess and advance the computational and experimental techniques for slat noise. The contributed solutions are compared with each other as well as with the initial measurements that became available just prior to the BANC-Ⅲ Workshop. Specific features of a number of computational solutions on the finer grids compare reasonably well with the initial measurements from FSU and JAXA facilities and/or with each other. However, no single solution (or a subset of solutions) could be identified as clearly superior to the remaining solutions. Grid sensitivity studies presented by multiple BANC-Ⅲ participants demonstrated a relatively consistent trend of reduced surface pressure fluctuations, higher levels of turbulent kinetic energy in the flow, and lower levels of both narrow band peaks and the broadband component of unsteady pressure spectra in the nearfield and farfield. The lessons learned from the BANC-Ⅲ contributions have been used to identify improvements to the problem statement for future Category-7 investigations.
机译:本文总结了2014年6月14日至15日在佐治亚州亚特兰大举行的第三届AIAA飞机噪声计算基准问题研讨会(BANC-Ⅲ)的第7类的计算预测和测量数据的摘要。类别7代表在BANC系列研讨会上要研究的第一个板条噪声配置,即30P30N二维高升力模型(板条轮廓经过微调以实现非稳态压力测量)处于迎角与进场条件有关。 30P30N最初是为CFD挑战研讨会开发的,用于评估用于稳定的高升程预测的计算流体动力学技术,它为机身噪声界提供了宝贵的机会,可以集体评估和推进板条噪声的计算和实验技术。所提供的解决方案将相互比较,并与BANC-Ⅲ研讨会之前的初始测量结果进行比较。在更细的网格上,许多计算解决方案的特定功能与FSU和JAXA设施的初始测量和/或彼此之间的测量结果相当合理。但是,没有任何一个解决方案(或解决方案的子集)可以被确定为明显优于其余解决方案。由多个BANC-Ⅲ参与者进行的网格敏感性研究表明,相对一致的趋势是表面压力波动减小,流动中湍流动能的水平较高,窄带峰的水平较低以及近场中非定常压力谱的宽带分量较低和farfield。从BANC-Ⅲ贡献中吸取的经验教训已被用于确定对问题陈述的改进,以供将来进行7类研究之用。

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