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浓密机内细尾砂沉降脱水规律模拟研究 被引量:1
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作者 李翠平 侯贺子 +2 位作者 阮竹恩 李雪 陈格仲 《中南大学学报(自然科学版)》 北大核心 2025年第4期1523-1533,共11页
为分析细尾砂粒径对浓密机内料浆沉降脱水效果的影响规律,基于计算流体力学(CFD)方法,对实验室规模的细尾砂浓密脱水过程进行模拟,研究给料井内流场特征及固相分布、沉降区内水分流动及颗粒沉降速度变化等,并建立10~50μm范围内细尾砂... 为分析细尾砂粒径对浓密机内料浆沉降脱水效果的影响规律,基于计算流体力学(CFD)方法,对实验室规模的细尾砂浓密脱水过程进行模拟,研究给料井内流场特征及固相分布、沉降区内水分流动及颗粒沉降速度变化等,并建立10~50μm范围内细尾砂的料浆固相体积分数数学模型和固体通量模型。研究结果表明:当粒径增大到50μm时,给料井中上部湍动能显著增加,湍流耗散率明显提高;随着粒径逐渐增大,沉降区流线形态会发生变化,竖直流线逐渐减少,水平流线和弯曲流线增多,旋涡数量增多且尺度变大;当粒径每增加10μm时,沉降区细尾砂沉降速度提高约0.5 mm/s;当粒径增大时,底流固相体积分数和最小固体通量均呈线性增大。该研究成果可为膏体充填技术中细尾砂高效浓密脱水提供参考。 展开更多
关键词 细尾砂 粒径 浓密 重力沉降 颗粒沉降速度
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Particle deposition in ventilation duct with convex or concave wall cavity 被引量:2
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作者 WANG Fei-fei ZHANG En-shi +2 位作者 XU Xin-hua WANG Jin-bo MI Jian-chun 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第11期2601-2614,共14页
A numerical study is carried out on particle deposition in ducts with either convex or concave wall cavity.Results show that,if compared with smooth duct,particle deposition velocitiesVd^+increase greatly in ducts wit... A numerical study is carried out on particle deposition in ducts with either convex or concave wall cavity.Results show that,if compared with smooth duct,particle deposition velocitiesVd^+increase greatly in ducts with wall cavities.More specifically,forτ+<1,Vd^+increase by about 2–4 orders of magnitude in the cases with the convex and concave wall cavities;forτ+>1,Vd^+grows relatively slower.Enhancement of particle deposition with wall cavities is caused by the following mechanisms,i.e.,interception by the wall cavities,expanded deposition area,and the enhanced flow turbulence.In general,addition of wall cavities is contributive for particle deposition,so it provides an efficient approach to remove particles,especially with small size,e.g.,PM2.5.Moreover,the convex wall cavity leads to a larger increment ofVd^+than the concave wall cavity.However,taking pressure loss into account,thoughVd^+is relatively lower,duct with the concave wall cavity is more efficient than that with the convex wall cavity. 展开更多
关键词 numerical simulation ventilation duct particle deposition deposition velocity
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