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Numerical simulation and optimization of red mud separation thickener with self-dilute feed

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【作者】 周天李茂周谦周孑民

【Author】 ZHOU Tian;LI Mao;ZHOU Chenn-qian;ZHOU Jie-min;School of Energy Science and Engineering,Central South University;Hunan Key Laboratory of Energy Conservation in Process Industry;Department of Mechanical Engineering,Purdue University Calumet;

【机构】 School of Energy Science and Engineering,Central South UniversityHunan Key Laboratory of Energy Conservation in Process IndustryDepartment of Mechanical Engineering,Purdue University Calumet

【摘要】 In order to acquire the flow pattern and investigate the settling behavior of the red mud in the separation thickener,computational fluid dynamics(CFD),custom subroutines and agglomerates settling theory were employed to simulate the three-dimensional flow field in an industrial scale thickener with the introduction of a self-dilute feed system.The simulation results show good agreement with the measurement onsite and the flow patterns of the thickener are presented and discussed on both velocity and concentration field.Optimization experiments on feed well and self-dilute system were also carried out,and indicate that the optimal thickener system can dilute the solid concentration in feed well from 110 g/L to 86 g/L which would help the agglomerates’ formation and improve the red mud settling speed.Furthermore,the additional power of recirculation pump can be saved and flocculants dosage was reduced from 105g/t to 85g/t in the operation.

【Abstract】 In order to acquire the flow pattern and investigate the settling behavior of the red mud in the separation thickener,computational fluid dynamics(CFD),custom subroutines and agglomerates settling theory were employed to simulate the three-dimensional flow field in an industrial scale thickener with the introduction of a self-dilute feed system.The simulation results show good agreement with the measurement onsite and the flow patterns of the thickener are presented and discussed on both velocity and concentration field.Optimization experiments on feed well and self-dilute system were also carried out,and indicate that the optimal thickener system can dilute the solid concentration in feed well from 110 g/L to 86 g/L which would help the agglomerates’ formation and improve the red mud settling speed.Furthermore,the additional power of recirculation pump can be saved and flocculants dosage was reduced from 105g/t to 85g/t in the operation.

【基金】 Project(50876116)supported by the National Natural Science Foundation of China
  • 【文献出处】 Journal of Central South University ,中南大学学报(英文版) , 编辑部邮箱 ,2014年01期
  • 【分类号】X703
  • 【被引频次】7
  • 【下载频次】76
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