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- W2896744857 abstract "Potential flow (PF) model exhibits some advantages to simulate granular flow in industrial packed beds such as an iron-making blast furnace. To change the status of solving PF equations in the flowing zone, based on the difference analysis between PF and actual flow, the components of granular flow resistance were confirmed, and a novel potential flow (NPF) model for the flow of packed particles was established. The obvious difference from the PF model is that the NPF model can simultaneously predict the stagnant zone and the distribution of velocities in the flowing zone. The stagnant zone or the flowing zone calculated with NPF model under certain boundary conditions is only determined by a dimensionless parameter group R⁎. R⁎ has a clear physical meaning, so it’s easy to decide the effect on the distribution of stagnant zone and granular flow velocities. Furthermore, NPF model was validated by experimental data obtained with a two-dimensional flat-bottomed packed bed with centric discharge. Predicted results respectively by PF and NPF models were also compared." @default.
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- W2896744857 date "2019-01-01" @default.
- W2896744857 modified "2023-10-17" @default.
- W2896744857 title "A novel potential flow model for granular flow in two-dimensional flat-bottomed packed bed with centric discharge" @default.
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- W2896744857 doi "https://doi.org/10.1016/j.powtec.2018.10.019" @default.
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