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Mixing times in single and multi-orifice-impinging transverse(MOIT) jet mixers with crossflow 被引量:1

Mixing times in single and multi-orifice-impinging transverse(MOIT) jet mixers with crossflow
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摘要 We study the macromixing behavior of single and multi-orifice-impinging transverse(MOIT) jet mixers with crossflow, in particular, the overall mixing time and the back-splash mixing time of the injected flow with the crossflow, using the PLIF technique. It is found that for a given mixer configuration, there is a critical jet-tocrossflow velocity ratio rcat which the back-splash begins to occur. Further increase in the velocity ratio r leads to sharp increase in the back-splash mixing time, which can offset the intensification of the downstream mixing. The dimensionless overall mixing time decreases as r increases to reach either a plateau or a local minimum, and the corresponding r value represents the optimal velocity ratio roptfor the macromixing. The momentum ratio of the two liquid streams is a key factor determining rcand ropt. For a larger scale mixer, a higher momentum ratio is required to achieve the optimal macromixing with the minimum dimensionless overall mixing time. We study the macromixing behavior of single and multi-orifice-impinging transverse(MOIT) jet mixers with crossflow, in particular, the overall mixing time and the back-splash mixing time of the injected flow with the crossflow, using the PLIF technique. It is found that for a given mixer configuration, there is a critical jet-tocrossflow velocity ratio rcat which the back-splash begins to occur. Further increase in the velocity ratio r leads to sharp increase in the back-splash mixing time, which can offset the intensification of the downstream mixing. The dimensionless overall mixing time decreases as r increases to reach either a plateau or a local minimum, and the corresponding r value represents the optimal velocity ratio roptfor the macromixing. The momentum ratio of the two liquid streams is a key factor determining rcand ropt. For a larger scale mixer, a higher momentum ratio is required to achieve the optimal macromixing with the minimum dimensionless overall mixing time.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第7期825-831,共7页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China(21476048,21006011) the Fundamental Research Funds for the Central University(104.205.2.5)
关键词 MixingChemical reactorsMixing timeJet mixerPlanar laser induced fluorescence (PLIF) 混合时间 混合器 横流 射流 多孔 搅拌时间 速度比 PLIF
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  • 1J.R. Bourne, Mixing and the selectivity of chemical reactions, Org. Process. Res. Dev. 7 (4) (2003) 471-508.
  • 2E.L. Paul, S.M. Kresta, V.A. Atiemo-Obeng, Handbook of industrial mixing: Science and practice, Wiley-lnterscience, Hoboken, New Jersey, 2004.
  • 3B.A. Haven, M. Kurosaka, Kidney and anti-kidney vortices in crossflow jets, J. Fluid Mech. 352 (1997) 27-64.
  • 4S.H. Smith, M.G. Mungal, Mixing, structure and scaling of the jet in crossflow, J. Fluid Mech. 357 (1998) 83-122.
  • 5R.M. Kelso, A.J. Smits, Horseshoe vortex systems resulting from the interaction between a laminar boundary layer and a transverse jet, Phys. Fluids 7 (1) (1995) 153-158.
  • 6ILM. Kelso, T.T. Lim, A.E. Perry, New experimental observations of vortical motions in transverse jets, Phys. Fluids 10 (9) (1998) 2427-2429.
  • 7G. Pan, H. Meng, Experimental study of turbulent mixing in a tee mixer using PIV and PLIF, AICHEJ. 47 (12) (2001) 2653-2665.
  • 8M. Gordon, J.E. Cater, J. Sofia, Investigation of the mean passive scalar field in zero- net-mass-flux jets in cross-flow using planar-laser-induced fluorescence, Phys. Fluids 16 (3) (2004) 794-808.
  • 9S. Muppidi, K. Mahesh, Study of trajectories of jets in crossflow using direct numer- ical simulations, J. Fluid Mech. 530 (2005) 81-100.
  • 10LL Yuan, ILL Street, Trajectory and entrainment of a round jet in crossflow, Phys. Fluids 10 (9) (1998) 2323-2335.

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