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Study of high-pressure air curtain and combined dedusting of gas water spray in multilevel ore pass based on CFD-DEM
- Source :
- Advanced Powder Technology. 30:1789-1804
- Publication Year :
- 2019
- Publisher :
- Elsevier BV, 2019.
-
Abstract
- In order to solve the problem of dust pollution caused by ore unloading in ore pass, this paper, taking Li Lou Mining as a case study, conducted the wind speed variation law in the fluid domain and the impact of the collision between the ore in the unloading process on the fluid to determine the key dust control point based on the CFD-DEM coupling software. By Fluent software, the air curtain dust-proof efficiency under the action of unloading airflow is analyzed, and the relationship between the dust-control wind speed and the impinging airflow is known. And an experimental model of gas water spray is established to analyze the effect of spray dust removal. By analyzing the impact airflow and dust migration caused by ore unloading and the effect of air curtain dust control through numerical simulation, it can be seen that when the ore discharging quantity Mo = 4000 kg, the dust production is mainly concentrated in the fourth middle section. By high-pressure air shield assisting dust removal, dust diffusion can be better controlled when the ratio of impact wind speed of ore pass wellhead (denoted as λ) to high-pressure air curtain wind speed (denoted as ζ) is at least 1:8. When the dust removal effect is optimal, the ratio δ of the water supply amount ql and the gas supply amount Qg is determined by the gas water spray dust control experimental platform.
- Subjects :
- Computer simulation
Petroleum engineering
General Chemical Engineering
Airflow
02 engineering and technology
010402 general chemistry
021001 nanoscience & nanotechnology
Collision
01 natural sciences
Wind speed
0104 chemical sciences
Mechanics of Materials
Wellhead
Shield
Environmental science
Diffusion (business)
0210 nano-technology
CFD-DEM
Subjects
Details
- ISSN :
- 09218831
- Volume :
- 30
- Database :
- OpenAIRE
- Journal :
- Advanced Powder Technology
- Accession number :
- edsair.doi...........3f9e57e3284be46eb72fd9575c07097a
- Full Text :
- https://doi.org/10.1016/j.apt.2019.05.019