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Flow interactions of finite-span synthetic jets and a cross flow.

机译:有限跨度合成射流与错流的流动相互作用。

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摘要

The interaction of a finite-span synthetic jet with a cross-flow over a swept-back finite wing was studied experimentally at a Reynolds number of 100,000 and at multiple angles of attack. The focus of the work was to explore the interaction of finite span synthetic jets with a locally attached or separated flow field in the vicinity of the synthetic jet orifice. The effect of blowing ratio and aspect ratio of the jet orifice was discussed in detail. As was shown in previous work for an unswept finite configuration, the time-averaged velocity field exhibits secondary streamwise flow structures that evolve due to the finite span of the synthetic jet orifice. Furthermore, these structures depend upon actuation level of the jet, as well as orifice geometry. Phase-averaged measurements over the swept-back finite configuration showed that in the presence of sweep the flow becomes highly three-dimensional almost immediately downstream of the synthetic jet orifice. It was demonstrated that the baseline flow field that develops over a swept-back configuration (dependent on angle of attack), which is characterized by spanwise and streamwise vorticity components, is responsible for the immediate breakdown of the coherent structures that are introduced by the synthetic jet orifice, and for the formation of the secondary flow structures that were seen in the time-averaged flow field.;Furthermore, the effect of jet placement along the span of the wing was studied. A finite-span synthetic jet was placed near the tip of a finite sweptback wing. The focus of that part of the work was to explore the interaction of the synthetic jet with a spatially non-uniform velocity field (due to the presence of a tip vortex), especially the formation and advection of flow structures in the vicinity of the synthetic jet. As was shown, the time-averaged velocity field exhibited streamwise flow structures downstream of the jet.;The tip vortex was found to influence the development of the flow structures generated by the synthetic jet; conversely, an investigation on the effect of a finite-span synthetic jet on the development of the tip vortex was also undertaken. The effect of actuation resulted in global changes to the tip vortex by altering its development. Actuation resulted in an overall increase in vorticity magnitude in the core of the vortex with a corresponding decrease in fluctuations of the vortex. Ultimately, the effect of actuation led to both a stronger and more coherent tip vortex.;Finally, a simple semi-empirical/theoretical model was developed in order to help depict the flow interactions of the streamwise vortical structures that are generated at the edges of a finite-span synthetic jet orifice in the presence of a cross flow. Using superposition of simple two-dimensional flow fields, the Vortex Dynamics Model was successful in predicting the footprint of finite-span synthetic jets on three-dimensional configurations.;The overarching goal of the work was to understand the flow physics associated with a finite-span synthetic jet placed on an aerodynamic configuration. Through experimental investigation, the flow mechanisms of the interaction between a finite span synthetic jet and the flow over a finite span swept back wing was described and successfully understood.
机译:实验研究了有限跨度合成射流与后掠有限机翼上的横流的相互作用,其雷诺数为100,000,且攻角为多个。工作的重点是探索有限跨度合成射流与合成射流孔口附近局部附着或分离的流场之间的相互作用。详细讨论了喷射比的吹气比和纵横比的影响。如先前工作中未扫掠的有限构型所示,时间平均速度场显示出二次流向流动结构,该结构由于合成射流孔口的有限跨度而演化。此外,这些结构取决于射流的致动水平以及孔的几何形状。在后掠有限构型上的相平均测量结果表明,在存在掠掠的情况下,流量几乎在合成射流孔的下游立即变为高度三维。结果表明,在后掠构造(取决于迎角)上发展的基线流场,其特征在于跨度和沿流的涡度分量,导致合成材料引入的相干结构立即破裂。射流孔,以及在时间平均流场中看到的二次流结构的形成。;此外,研究了沿机翼跨度的射流布置效果。将有限跨度的合成射流放置在有限后掠翼的机头附近。该部分工作的重点是探索合成射流与空间非均匀速度场的相互作用(由于存在尖端涡流),特别是合成射流附近的流动结构的形成和对流喷射。如图所示,时间平均速度场在射流的下游呈现出沿流的流动结构。尖端涡被发现会影响合成射流产生的流动结构的发展;相反,还研究了有限跨度合成射流对尖端涡旋发展的影响。通过改变其发展,促动的作用导致了尖端涡的整体变化。致动导致涡流核心的涡度大小整体增加,而涡旋的波动相应减少。最终,促动的作用导致了更强且更连贯的尖端涡流。最后,开发了一个简单的半经验/理论模型,以帮助描述在流场边缘产生的沿流涡流结构的流动相互作用。存在横流时的有限跨度合成射流孔。使用简单的二维流场的叠加,Vortex动力学模型成功地预测了有限跨度合成射流在三维构型上的足迹。该工作的总体目标是了解与有限空间相关的流物理学。跨度合成射流置于空气动力学结构上。通过实验研究,描述并成功理解了有限跨度合成射流与有限跨度后掠流之间相互作用的流动机理。

著录项

  • 作者

    Vasile, Joseph D.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 248 p.
  • 总页数 248
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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