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基于超细尾砂絮凝沉降浓密试验及应用分析 被引量:11
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作者 吴再海 《有色金属工程》 CAS 北大核心 2022年第10期117-125,共9页
研究超细尾砂在不同配比聚丙超烯酰胺条件的絮凝沉降浓密试验,探索在不同给料速度、浓度及絮凝剂单耗条件下对料浆浓密效果的影响,借助物理试验参数进行对比回归分析获得最优匹配数据模型,对模型关系中涉及的参数进行正交试验优化设计,... 研究超细尾砂在不同配比聚丙超烯酰胺条件的絮凝沉降浓密试验,探索在不同给料速度、浓度及絮凝剂单耗条件下对料浆浓密效果的影响,借助物理试验参数进行对比回归分析获得最优匹配数据模型,对模型关系中涉及的参数进行正交试验优化设计,考察单因素及组合因素对响应值絮凝度的影响,建立多因素变化对浓度响应值的影响,进一步获得各元素最优条件的絮凝度值,依据函数模型拟合出响应最优值与元素之间的非线性关系,得到优化条件下以絮凝度为指标的各个元素影响作用大小。结果表明:1)无动力浓密条件下料浆达到极限浓度絮凝剂参数确定为最佳添加量30 g/t,阴离子型絮凝剂XS、最佳料浆稀释浓度6.0%;2)固体通量由0.127 t/(m^(2)·h)增加到0.360 t/(m^(2)·h)时,底流浓度表现出稳定的增长趋势,同步确定浓密处理量为0.3 t/(m^(2)·h);3)回归方程及元素曲面响应关联结果的模型关联系数因子R~2值为0.9978,证明模型因子各元素与响应结果紧密关联性较高;4)提出了不同单耗絮凝剂对超细尾砂浓密的机理影响测试方法,将该测试方法成功应用到工程实际中。 展开更多
关键词 絮凝 超细尾砂 最优参数 絮凝浓密 曲面响应
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Numerical study of flocculation settling and thickening of whole-tailings in deep cone thickener using CFD approach 被引量:12
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作者 WU Ai-xiang RUAN Zhu-en +3 位作者 LI Cui-ping WANG Shao-yong WANG Yong WANG Jian-dong 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第3期711-718,共8页
Deep cone thickener (DCT) is the key equipment in cemented paste backfill (CPB), so it is essential to study the flocculation settling and thickening characteristics of the whole-tailings in DCT. Coupled with populati... Deep cone thickener (DCT) is the key equipment in cemented paste backfill (CPB), so it is essential to study the flocculation settling and thickening characteristics of the whole-tailings in DCT. Coupled with population balance model (PBM), computational fluid dynamics (CFD) was used to study the characteristics, namely particle size distribution (PSD) and underflow concentration in DCT. Based on actual production, the effects of rake rotational speed, feed rate and tailings slurry concentration were simulated and analyzed in a certain range. The PSD varied with rake rational speed, feed rate and tailings slurry concentration almost in the same trend, but the influence of feed rate was less than that of rake rational speed and tailings slurry concentration. The underflow concentration increased at first and then declined with rake rational speed and feed rate, but it rose and fell with the tailings slurry concentration. Finally, the optimal key parameters on the flocculation settling and thickening of the whole-tailings in DCT were obtained: rake rotational speed of 17 r/min, feed rate of 3.25 m^3/h and tailings slurry concentration of 20%, giving the reference values to the industrial production in Baishitamu Copper Mine. 展开更多
关键词 deep cone thickener flocculation settling THICKENING whole-tailings computational fluid dynamics
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Numerical simulation of flocculation and settling behavior of whole-tailings particles in deep-cone thickener 被引量:13
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作者 阮竹恩 李翠平 石聪 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期740-749,共10页
Rapid dewatering and thickening of whole-tailings with ultrafine particles is one of the most important processes for the whole-tailings paste preparation. Deep-cone thickener, a kind of such process for the flocculat... Rapid dewatering and thickening of whole-tailings with ultrafine particles is one of the most important processes for the whole-tailings paste preparation. Deep-cone thickener, a kind of such process for the flocculation and settling of whole-tailings, is particularly necessary to study. However, there exist many problems in observing the flocculation and settling process of whole-tailings, as well as the particle size distribution(PSD) of whole-tailings floccules in deep-cone thickener. Population balance model(PBM) is applied to predict the PSD in deep-cone thickener, and LUO model and GHADIRI model are employed to study the aggregation and fragmentation mechanism of the whole-tailings particles, respectively. Through three-dimensional numerical simulation on the whole-tailings flocculation and settling in deep-cone thickener using computational fluid dynamics(CFD)-PBM, the distribution of density and turbulent kinetic energy in deep-cone thickener were obtained, at the same time the spatio-temporal changes of whole-tailings floccules particle size distribution are analyzed. Finally, the major flocculation position in deep-cone thickener is found and the flocculation settling rules of whole-tailings are achieved. 展开更多
关键词 whole-tailings particles flocculation settling numerical simulation deep-cone thickener population balance model
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