4.7 Article

The effect of Stokes number on particle velocity and concentration distributions in a well-characterised, turbulent, co-flowing two-phase jet

期刊

JOURNAL OF FLUID MECHANICS
卷 809, 期 -, 页码 72-110

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/jfm.2016.666

关键词

jets; multiphase and particle-laden flows; particle/fluid flow

资金

  1. Australian government through the Australian Research Council [DP120102961]
  2. Australian Renewable Energy Agency [USO034]

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Simultaneous measurements of particle velocity and concentration (number density) in a series of mono-disperse, two-phase turbulent jets issuing from a long, round pipe into a low-velocity co-tlow were performed using planar nephelometry and digital particle image velocimetry. The exit Stokes number, S-kD was systematically varied over two orders of magnitude between 0.3 and 22.4, while the Reynolds number was maintained in the turbulent regime (10 000 <= Re-D <= 40 000). The mass loading was fixed at phi = 0.4, resulting in a flow that is in the two-way coupling regime. The results show that, in contrast to all previous work where a single Stokes number has been used to characterise fluid particle interactions, the characteristic Stokes number in the axial direction is lower than that for the radial direction. This is is attributed to the significantly greater length scales in the axial motions than in the radial ones. It further leads to a preferential response of particles to gas phase axial velocity fluctuations, nip, over radial velocity fluctuations, upsilon'(p). This, in turn, leads to high levels of anisotropy in the particle-phase velocity fluctuations, u'(p/)upsilon'(p) > 1, throughout the jet, with u'(p/)upsilon'(p) increasing as S-kD is increased. The results also show that the region within the first few diameters of die exit plane is characterised by a process of particle reorganisation, resulting in significant particle migration to the jet axis for S-kD <= 2.8 and away from the axis for S-kD >= 5.6. This migration, together with particle deceleration along the axis, causes local humps in the centreline concentration whose value can even exceed those at the exit plane.

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