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超声速混合层中PIV粒子的湍流变动作用研究

陈小虎 陈方 刘洪 沙莎 逯雪铃 张庆兵

实验流体力学2017,Vol.31Issue(6):8-14,21,8.
实验流体力学2017,Vol.31Issue(6):8-14,21,8.DOI:10.11729/syltlx20160144

超声速混合层中PIV粒子的湍流变动作用研究

Investigation of turbulence modification by PIV tracer particles in a supersonic mixing layer

陈小虎 1陈方 1刘洪 1沙莎 2逯雪铃 2张庆兵2

作者信息

  • 1. 上海交通大学航空航天学院,上海 200240
  • 2. 北京电子工程总体研究所,北京 100854
  • 折叠

摘要

Abstract

The turbulence modification by Particle Image Velocimetry (PIV) tracer particles was investigated with the two-way coupling of 2D spatial development supersonic gas-solid two-phase mixing layer. The gas phase coupled with the dispersion phase were simulated by the large eddy simulation and the Lagrangian trajectory model, respectively. It is found that the stream-wise turbulence of the mixing layer is weakened, the transverse turbulence of the mixing layer strengthened and the Reynolds stress peak value increased by 9.68% than that of the unladen mixing layer due to the small Stokes particles. However, the root mean square velocity of the mixing layer is weakened by the large Stokes particles, and the Reynolds stress peak value is only 41.74% of that of the unladen mixing layer. The root mean square transverse velocity with the large mass loading is 38.63% of that of unladen mixing layer, and it is partly counteracted by the motion of particles. The root mean square transverse velocity and the Reynolds stress with the middle mass loading are almost equal to those of the unladen mixing layer. The largest root mean square streamwise velocity is reduced by 19.29 % whereas the root mean square transverse velocity near the centerline of the mixing layer is increased by the small mass loading. The modification to the turbulence of the supersonic mixing layer under the small Stokes number and middle mass loading condition is smaller than other cases. The study provides important reference for improving PIV experiment in high speed flows.

关键词

PIV/超声速混合层/湍流变动/Stokes数/质量载荷

Key words

PIV/supersonic mixing layer/turbulence modification/Stokes number/mass loading

分类

航空航天

引用本文复制引用

陈小虎,陈方,刘洪,沙莎,逯雪铃,张庆兵..超声速混合层中PIV粒子的湍流变动作用研究[J].实验流体力学,2017,31(6):8-14,21,8.

基金项目

国家自然科学基金(11672183) (11672183)

实验流体力学

OA北大核心CSCDCSTPCD

1672-9897

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