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- W4306167130 endingPage "118009" @default.
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- W4306167130 abstract "To overcome the limitations of traditional spouted beds, two novel internal-intensified spouted beds were proposed: swirl-nozzle anticlockwise-axial-swirler (SNAAS) and swirl-nozzle clockwise-axial-swirler (SNCAS) spouted beds. The hydrodynamics of the novel internal-intensified, conventional, and swirl-nozzle spouted beds (SBs) were experimentally and numerically investigated. Adding internal-intensified structures could reduce the minimum spouting velocity and accelerate particle fluidization. The gas radial velocity in novel spouted beds with ξ = 3 is the largest, which is the optimal height ratio. Compared with conventional and swirl-nozzle SBs, adding novel internal-intensified structures can effectively promote the radial velocity of gas and particle, reduce the flow-dead zone in the bed, obtaining larger gas turbulent kinetic energy. The flow field uniformity of gas and particle within beds in descending order as SNCAS SB > SNAAS SB > swirl-nozzle SB > conventional SB. The enhancement factor I of flow field uniformity in novel internal-intensified SBs is 2 to 3 times that in the swirl-nozzle SB." @default.
- W4306167130 created "2022-10-14" @default.
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- W4306167130 date "2022-11-01" @default.
- W4306167130 modified "2023-09-27" @default.
- W4306167130 title "Experiment and CFD study on the hydrodynamics in novel internal-intensified spouted beds" @default.
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- W4306167130 doi "https://doi.org/10.1016/j.powtec.2022.118009" @default.
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