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High-Speed Local Particle Injection for Particle Image Velocimetry

机译:高速局部粒子注入用于粒子图像测速

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摘要

High-speed local seeding particle injection for particle image velocimetry has been developed and demonstrated by measuring Mach 3 and Mach 10 turbulent boundary layers. The seeding injectors accelerate the particle aerosol through a converging/diverging supersonic nozzle that exits tangentially to the wall. Computational fluid dynamics codes using the multiphase application program interface particle tracking simulation were used to optimize the nozzle geometry in order to minimize impact to the flow and maximize seeding particle concentration. Normalized particle image velocimetry particle concentration profiles have excellent agreement with computational fluid dynamics, although the dimensional concentrations are higher by factors of about three and two for Mach 3 and Mach 10, respectively. This difference may be due to uncertainty in the measured laser sheet volume. Mach 3 experiments duplicated with global seeding indicate minimal impact of the local injection in the majority of the boundary layer. The boundary-layer thickness increased by less than 2.5%, and the relative errors in the mean and fluctuating velocities are within measurement uncertainty. The characteristic particle distribution of local injection is shown to lead the phenomenon of particle biasing. There is a high number of low-momentum particles ejected higher in the boundary layer but little to no high-momentum freestream particles swept back into the boundary layer. This creates an unrepairable detrimental bias to measurements above the point where the particle concentration diminishes: y/delta >= 0.6-0.9. Particle biasing is shown to affect mean velocity and turbulence statistics profiles.
机译:通过测量3马赫和10马赫的湍流边界层,已经开发并证明了用于粒子图像测速的高速局部播种粒子注入技术。播种喷射器通过切向离开壁的会聚/发散超音速喷嘴来加速颗粒气溶胶。使用多相应用程序界面粒子跟踪仿真的计算流体动力学代码来优化喷嘴的几何形状,以最大程度地减少对流动的影响并最大化播种粒子的浓度。归一化粒子图像测速仪的粒子浓度曲线与计算流体动力学具有极好的一致性,尽管对于3马赫数和10马赫数而言,尺寸浓度分别高出约3倍和2倍。该差异可能是由于所测量的激光片体积的不确定性所致。与全局播种重复的马赫3实验表明,在大多数边界层中,局部注入的影响最小。边界层厚度增加了不到2.5%,并且平均速度和波动速度的相对误差在测量不确定度之内。局部注入的特征性颗粒分布显示出导致颗粒偏斜现象。在边界层中有较高数量的低动量粒子喷射出,但很少或没有高动量自由流粒子扫回到边界层中。这会在颗粒浓度降低的点(y / delta> = 0.6-0.9)以上的点产生无法修复的有害偏差。结果表明,粒子偏向会影响平均速度和湍流统计数据。

著录项

  • 来源
    《AIAA Journal》 |2019年第10期|4490-4503|共14页
  • 作者单位

    Univ Maryland College Pk MD 20742 USA|European Gravitat Observ Interferometer Control I-56021 Cascina PI Italy;

    Univ Maryland Dept Mech Engn College Pk MD 20742 USA;

    Arnold Engn Dev Complex White Oak MD 20904 USA;

    Arnold Engn Dev Complex White Oak MD 20904 USA|Hypersonics Off Naval Res Code 351 Arlington VA 22203 USA;

    Arnold Engn Dev Complex Arnold AFB TN 37389 USA;

  • 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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