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Experimental Study into the Flow Physics of Three-Dimensional Shock Control Bumps

机译:三维减振器冲击流场的实验研究

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摘要

This paper describes a fundamental experimental study of the flow structure around a single three-dimensional (3D) transonic shock control bump (SCB) mounted on a flat surface in a wind tunnel. Tests have been carried out with a Mach 1.3 normal shock wave located at a number of streamwise positions relative to the SCB. Details of the flow have been studied using the experimental techniques of schlieren photography, surface oil flow visualization, pressure sensitive paint, and laser Doppler anemometry. The results of the work build on the findings of previous researchers and shed new light on the flow physics of 3D SCBs. It is found that span wise pressure gradients across the SCB ramp and the shape of the SCB sides affect the magnitude and uniformity of flow turning generated by the bump, which can impact on the spanwise propagation of the quasi-two-dimensional (2D) shock structure produced by a 3D SCB. At the bump crest, vortices can form if the pressure on the crest is significantly lower than at either side of the bump. The trajectories of these vortices, which are relatively weak, are strongly influenced by any spanwise pressure gradients across the bump tail. A significant difference between 2D and 3D SCBs highlighted by the study is the impact of spanwise pressure gradients on 3D SCB performance. The magnitude of these spanwise pressure gradients is determined largely by SCB geometry and shock position.
机译:本文描述了对安装在风洞中平坦表面上的单个三维(3D)跨音速冲击控制凸点(SCB)周围流动结构的基础实验研究。已使用相对于SCB位于多个流向位置的1.3马赫法向冲击波进行了测试。使用schlieren摄影,表面油流可视化,压敏涂料和激光多普勒风速仪等实验技术研究了流的细节。这项工作的结果建立在先前研究人员的发现之上,为3D SCB的流动物理学提供了新的思路。发现横跨SCB斜面的翼展方向压力梯度和SCB侧面的形状会影响由凸块生成的流动转向的大小和均匀性,这可能会影响准二维(2D)冲击的翼展方向传播由3D SCB生成的结构。如果波峰上的压力显着低于波峰两侧的压力,则会在波峰处形成漩涡。这些旋涡的轨迹相对较弱,它们受到整个凸块尾部的翼展方向压力梯度的强烈影响。该研究强调的2D和3D SCB之间的显着差异是翼展方向压力梯度对3D SCB性能的影响。这些翼展方向压力梯度的大小主要取决于SCB的几何形状和冲击位置。

著录项

  • 来源
    《Journal of Aircraft》 |2012年第5期|p.1222-1233|共12页
  • 作者

    P. J. K. Bruce; H. Babinsky;

  • 作者单位

    University of Cambridge, Cambridge CB2 1PZ, England, United Kingdom;

    University of Cambridge, Cambridge CB2 1PZ, England, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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