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后台阶气固两相流动的PDPA实验 被引量:2

Measurements of gas-particle two-phase flows over a backward-facing step using a PDPA
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摘要 为了获得后台阶气粒两相湍流的流动特征,用相位Doppler粒子动态分析仪(PDPA)对其进行了实验研究. 45 μm 颗粒速度几乎都大于相应位置上的气相速度,而脉动速度分布与气相相似,具有双峰结构.颗粒平均速度和脉动速度的分布在不同Re下是相似的,其流向脉动速度的最大值在7~8倍后台阶高度的流向距离之前,大致能够保持不变,但此后会显著减小,并在12倍后台阶高度的距离之后整个截面分布趋向均匀.随着Re的增大,颗粒相的回流区长度也逐渐变长.这些结果为认识颗粒相的流动规律以及发展和改进颗粒相数值模型提供了依据. Turbulent gas-particle flows over a backward-facing step were investigated experimentally using a Phase Doppler Particle analyzer (PDPA). The results show that the mean velocities of almost all the 45μm particles are larger than the gas phase velocities at the same position due to the larger inertias of the particles, while the fluctuating particle velocity distributions are similar to the gas phase distributions, which are characterized by double peaks. The distributions of the mean and fluctuating velocities of the 45 pm particles at different Re are similar to each other. The maximum values of the fluctuating velocities at each section do not vary much before 7H - 8H in the streamwise direction, and then decrease quickly. After 12H, the fluctuating velocity distributions tend towards uniformity. The reattachment lengths of the particle phase increase with Re.
出处 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2005年第8期1099-1102,共4页 Journal of Tsinghua University(Science and Technology)
基金 国家自然科学基金资助项目(19972026)
关键词 气粒两相流动 后台阶流动 相位Doppler粒子动态分析仪 gas-particle flows flows over a backward-facing step phase Doppler particle analyzer (PDPA)
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参考文献7

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  • 2王兵,张会强,虞建丰,王希麟,郭印诚,林文漪.气粒两相二维后台阶突扩流动的大涡模拟[J].燃烧科学与技术,2003,9(5):447-452. 被引量:5
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二级参考文献3

  • 1Eaton J K, Johnston J P. Turbulent flow reattachment: an experimental study of the flow and structure behind a backward-facing step[ R].Standford Univ Rept,1980 MD-39.
  • 2Ruck B, Makiola B. Particle dispersion in a single-sided backward-facing step flow[ J ]. Int J Multiphase Flow, 1988,14(6 ) :787-800.
  • 3Fessler J, Eaton J K. Turbulence modification by particles in a backward-facing step flow[J]. J Fluid Mech, 1999,394:97-117.

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