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强迫振动下超声速混合层的掺混特性
引用本文:张冬冬,谭建国,吕良,王前程.强迫振动下超声速混合层的掺混特性[J].航空动力学报,2015,30(9):2181-2188.
作者姓名:张冬冬  谭建国  吕良  王前程
作者单位:国防科学技术大学 航天科学与工程学院 高超声速冲压发动机技术重点实验室, 长沙 410073,国防科学技术大学 航天科学与工程学院 高超声速冲压发动机技术重点实验室, 长沙 410073,国防科学技术大学 航天科学与工程学院 高超声速冲压发动机技术重点实验室, 长沙 410073,国防科学技术大学 航天科学与工程学院 高超声速冲压发动机技术重点实验室, 长沙 410073
基金项目:国家自然科学基金(11272351,91441121)
摘    要:利用实验研究与数值仿真相结合的方法,对强迫振动下对流马赫数为0.22的超声速混合层的掺混特性进行了分析,采用动量混合、雷诺应力以及标量混合指标对超声速混合层的掺混效率进行评估.研究结果表明:强迫振动对超声速混合层的掺混特性有重要影响.与无振动下相比,强迫振动使混合层的失稳位置提前,卷起的展向涡尺度变大,加快上下两层流动的混合.同时,强迫振动下,动量混合和标量混合更加充分.振动频率为4 500Hz时,雷诺应力峰值提高约48%,薄平板后缘下游160mm处,动量厚度增长120%.

关 键 词:超声速混合层  强迫振动  掺混特性  动量混合  雷诺应力  标量混合
收稿时间:3/4/2015 12:00:00 AM

Mixing characteristics of supersonic mixing layer induced by forced vibration
ZHANG Dong-dong,TAN Jian-guo,L&#; Liang and WANG Qian-cheng.Mixing characteristics of supersonic mixing layer induced by forced vibration[J].Journal of Aerospace Power,2015,30(9):2181-2188.
Authors:ZHANG Dong-dong  TAN Jian-guo  L&#; Liang and WANG Qian-cheng
Institution:Science and Technology on Scramjet Laboratory, College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China,Science and Technology on Scramjet Laboratory, College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China,Science and Technology on Scramjet Laboratory, College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China and Science and Technology on Scramjet Laboratory, College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China
Abstract:Through combining an experimental study with numerical simulation, an analysis of mixing characteristics of a supersonic mixing layer was carried out, which was influenced by forced vibration under the condition of convective Mach number 0.22. The indexes of momentum mixing, Reynolds stress and scalar mixing were adopted to assess the mixing efficiency of supersonic mixing layer. The results show that forced vibration has an important effect on the mixing efficiency. Compared with no vibration, forced vibration advances the instability position of mixing layer and enlarges the scales of rolled-up spanwise vortices, which can promote the mixing of upper and lower streams. Meanwhile, with forced vibration, both momentum and scalar are more fully mixed. The peak value of Reynolds stress increases by about 48% when the vibration frequency is 4500Hz and the momentum thickness increases by 120% at 160mm position downstream the trailing edge of thin metal plate.
Keywords:supersonic mixing layer  forced vibration  mixing characteristics  momentum mixing  Reynolds stress  scalar mixing
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