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- W3199824493 abstract "Heretofore, the microchannel junction angle θ dependent behavior on Taylor flow with a vertical squeezing route lacks a comprehensive understanding. An experimental study was performed on the vertical squeezing route Taylor flow for θ = 20, 45, 90, 135, and 160° at different flow rates of helium (He) and ethanol. By employing extreme θ of 20 and 160°, an in-depth knowledge of the associated mechanics is gained. Through the formulated theoretical model, the sizes of the bubble and slug were predicted quantitatively for various fluid flow rates and θ, with good qualitative and quantitative agreement with experimental results. With increasing liquid or decreasing gas flow rate, all the employed junction angle channels had insensitive unit cell volume VU variation with flow rate changes because of the near cancellation of the effect of increased liquid slug volume VS with the effect of decreased gas bubble volume VB. Using the 90° channel as the reference, the 20, 45, 135, and 160° channels generated larger VB and VS resulting in a larger VU. This is attributed to the wider junction width WJ when θ deviated from 90°. With the wider WJ, it produces a longer gas neck length that leads to a larger bubble length LB during the blocking process. The longer time due to the slower squeezing rate from the wider WJ results in LB growth during the squeezing process. As WJ values of 20 and 160° channels are similar (similar WJ for 45 and 135° channels), parabolic (U-shaped) trends for VB, VS, and VU against θ were observed for the various fluid flow rates. The understanding gained may be exploited for precise bubble and slug generation control for targeted applications." @default.
- W3199824493 created "2021-09-27" @default.
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- W3199824493 date "2021-09-21" @default.
- W3199824493 modified "2023-10-02" @default.
- W3199824493 title "Vertical Squeezing Route Taylor Flow with Angled Microchannel Junctions" @default.
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- W3199824493 doi "https://doi.org/10.1021/acs.iecr.1c02324" @default.
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