DocumentCode :
1791047
Title :
Polymetallic Sulfide Particle Hydraulic Lifting Performance Simulation
Author :
Huang Zhonghua ; Cao Yue ; Xie Ya
Author_Institution :
Hunan Inst. of Eng., Xiangtan, China
fYear :
2014
fDate :
25-26 Oct. 2014
Firstpage :
423
Lastpage :
427
Abstract :
Polymetallic sulfide particle hydraulic lifting process was simulated with theoretical analysis and numerical calculation. Simulation goal was to obtain polymetallic sulfide particle hydraulic lifting conditions in vertical pipe and action rules between hydraulic lifting system parameters and hydraulic lifting performance. Mechanics analysis model of polymetallic sulfide particle hydraulic lifting was established. Vertical pipe polymetallic sulfide particle hydraulic lifting process solid-liquid two-phase flow motion simulation model based on FLUENT software was established. Maximum concentration distributions of particle phase in lifting process with different system parameters were simulated. Simulation results are as follows: polymetallic sulfide particle hydraulic lifting performance is increased with water phase initial velocity increasing, polymetallic sulfide particle hydraulic lifting performance is decreased with particle diameter increasing and particle phase initial concentration increasing. There exists a hydraulic lifting threshold velocity v0 in polymetallic sulfide particle hydraulic lifting process. Polymetallic sulfide particle hydraulic lifting process can´t be realized smoothly when vw<;v0 . Polymetallic sulfide particle hydraulic lifting process can be realized smoothly when vw≥v0.
Keywords :
flow simulation; lifting; mineral processing; minerals; mining; two-phase flow; FLUENT software; concentration distributions; deep sea polymetallic sulfide mining; hydraulic lifting system parameters; hydraulic lifting threshold velocity; mechanics analysis model; ore collection; particle diameter; particle phase initial concentration; polymetallic sulfide particle hydraulic lifting performance simulation; solid-liquid two-phase flow motion simulation model; vertical pipe polymetallic sulfide particle hydraulic lifting process; water phase initial velocity; Fluids; Force; Minerals; Numerical models; Oceans; Simulation; Solid modeling; Polymetallic sulfide; hydraulic lifting performance; particle; simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Computation Technology and Automation (ICICTA), 2014 7th International Conference on
Conference_Location :
Changsha
Print_ISBN :
978-1-4799-6635-6
Type :
conf
DOI :
10.1109/ICICTA.2014.108
Filename :
7003571
Link To Document :
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