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Time-Accurate Simulations and Acoustic Analysis of Slat Free-Shear-Layer

机译:板条自由剪切层的时间精确模拟和声学分析

摘要

Unsteady computational simulations of a multi-element, high-lift configuration are performed. Emphasis is placed on accurate spatiotemporal resolution of the free shear layer in the slat-cove region. The excessive dissipative effects of the turbulence model, so prevalent in previous simulations, are circumvented by switching off the turbulence-production term in the slat cove region. The justifications and physical arguments for taking such a step are explained in detail. The removal of this excess damping allows the shear layer to amplify large-scale structures, to achieve a proper non-linear saturation state, and to permit vortex merging. The large-scale disturbances are self-excited, and unlike our prior fully turbulent simulations, no external forcing of the shear layer is required. To obtain the farfield acoustics, the Ffowcs Williams and Hawkings equation is evaluated numerically using the simulated time-accurate flow data. The present comparison between the computed and measured farfield acoustic spectra shows much better agreement for the amplitude and frequency content than past calculations. The effect of the angle-of-attack on the slat's flow features radiated acoustic field are also simulated presented.
机译:进行了多元素高升力配置的非稳态计算仿真。重点放在板条湾区域中自由剪切层的精确时空分辨率上。通过关闭板条湾区域的湍流产生项,可以避免湍流模型的过度耗散效应(在以前的模拟中如此普遍)。详细说明了采取此步骤的理由和实际理由。消除这种多余的阻尼可以使剪切层放大大型结构,实现适当的非线性饱和状态,并实现涡旋合并。大规模扰动是自激的,与我们之前的完全湍流模拟不同,不需要剪切层的外部强迫。为了获得远场声学效果,使用模拟的时间精确流量数据对Ffowcs Williams和Hawkings方程进行数值评估。在计算和测量的远场声谱之间的当前比较显示,振幅和频率含量比过去的计算具有更好的一致性。还模拟了攻角对板条流动特征辐射声场的影响。

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