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- W4309189685 abstract "Flow and mixing in cross-shaped mixers with various chamber depths (wi/h, in which wi and h are the chamber depth and inlet height, respectively) were studied by Plane Laser-Induced Fluorescence (PLIF) and numerical simulation at 20 ≤ Re ≤ 500. Emphasis was placed on engulfment flows and pulsation flows, as well as the dominant role of vortices and their dynamic evolution. For wi/h > 0.3, segregated flows, steady engulfment flows, pulsation flows, and unsteady engulfment flows emerge successively with increasing Reynolds number (Re = ρu0Dh/μ, where ρ, μ, Dh, and u0 are the fluid density, fluid viscosity, inlet hydraulic diameter, and inlet bulk mean velocity, respectively). As wi/h decreases, engulfment and pulsation flows are delayed, and the recirculation regions induced by vortex breakdown are shifted. For wi/h ≤ 0.3, pulsation flows and recirculation regions disappear, and a hybrid mode of deflecting oscillation and vortex merging is identified. The degree of mixing was quantitatively analyzed to reveal the mixing mechanism. At low Re, an increase in wi/h improves the mixing due to the earlier onset of steady engulfment flows. For higher Re, better mixing appears for wi/h ≤ 0.3 attributed to vortex merging and deflecting oscillations." @default.
- W4309189685 created "2022-11-24" @default.
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- W4309189685 date "2022-11-15" @default.
- W4309189685 modified "2023-10-14" @default.
- W4309189685 title "Effect of Chamber Depth Modifications on Flow Regimes and Mixing Performance in Cross-Shaped Mixers" @default.
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- W4309189685 doi "https://doi.org/10.1021/acs.iecr.2c02573" @default.
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