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Cross-Stream PIV Measurements of Jets With Internal Lobed Mixers

机译:带有内部叶状混合器的射流的交叉流PIV测量

摘要

With emphasis being placed on enhanced mixing of jet plumes for noise reduction and on predictions of jet noise based upon turbulent kinetic energy, unsteady measurements of jet plumes are a very important part of jet noise studies. Given that hot flows are of most practical interest, optical techniques such as Particle Image Velocimetry (PIV) are applicable. When the flow has strong azimuthal features, such as those generated by chevrons or lobed mixers, traditional PIV, which aligns the measurement plane parallel to the dominant flow direction is very inefficient, requiring many planes of data to be acquired and stacked up to produce the desired flow cross-sections. This paper presents PIV data acquired in a plane normal to the jet axis, directly measuring the cross-stream gradients and features of an internally mixed nozzle operating at aircraft engine flow conditions. These nozzle systems included variations in lobed mixer penetration, lobe count, lobe scalloping, and nozzle length. Several cases validating the accuracy of the PIV data are examined along with examples of its use in answering questions about the jet noise generation processes in these nozzles. Of most interest is the relationship of low frequency aft-directed noise with turbulence kinetic energy and mean velocity.
机译:由于着重于增强喷射羽流的混合以降低噪声,并基于湍流动能预测喷射噪声,喷射羽流的不稳定测量是喷射噪声研究中非常重要的一部分。鉴于热流是最实际的关注点,因此可以应用诸如粒子图像测速(PIV)之类的光学技术。当流具有强大的方位角特征(例如人字形或有瓣混合器产生的方位角)时,传统的PIV(使测量平面平行于主要流向对齐)效率很低,需要采集和堆叠许多数据平面以产生所需的流动横截面。本文介绍了在垂直于喷气轴的平面上采集的PIV数据,直接测量了交叉流梯度和在飞机发动机流量条件下运行的内部混合喷嘴的特征。这些喷嘴系统包括叶片混合器穿透度,叶片数,叶片扇贝形和喷嘴长度的变化。检验了验证PIV数据准确性的几种情况,以及在回答有关这些喷嘴中喷射噪声产生过程的问题时使用PIV数据的示例。最令人感兴趣的是低频后向噪声与湍流动能和平均速度的关系。

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