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Particulate flow modelling in a spiral separator by using the Eulerian multi-fluid VOF approach 被引量:2
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作者 Lingguo Meng Shuling Gao +4 位作者 Dezhou Wei Qiang Zhao Baoyu Cui Yanbai Shen zhenguo song 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第2期251-263,共13页
The Euler-Euler model is less effective in capturing the free surface of flow film in the spiral separator,and thus a Eulerian multi-fluid volume of fluid(VOF)model was first proposed to describe the particulate flow ... The Euler-Euler model is less effective in capturing the free surface of flow film in the spiral separator,and thus a Eulerian multi-fluid volume of fluid(VOF)model was first proposed to describe the particulate flow in spiral separators.In order to improve the applicability of the model in the high solid concentration system,the Bagnold effect was incorporated into the modelling framework.The capability of the proposed model in terms of predicting the flow film shape in a LD9 spiral separator was evaluated via comparison with measured flow film thicknesses reported in literature.Results showed that sharp air–water and air-pulp interfaces can be obtained using the proposed model,and the shapes of the predicted flow films before and after particle addition were reasonably consistent with the observations reported in literature.Furthermore,the experimental and numerical simulation of the separation of quartz and hematite were performed in a laboratory-scale spiral separator.When the Bagnold lift force model was considered,predictions of the grade of iron and solid concentration by mass for different trough lengths were more consistent with experimental data.In the initial development stage,the quartz particles at the bottom of the flow layer were more possible to be lifted due to the Bagnold force.Thus,a better predicted vertical stratification between quartz and hematite particles was obtained,which provided favorable conditions for subsequent radial segregation. 展开更多
关键词 Spiral separator Computational fluid dynamics(CFD) Eulerian multi-fluid VOF model Bagnold effect Particulate flow
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不同剂量纳洛酮联合地佐辛用于乳腺癌患者术后镇痛的效果 被引量:8
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作者 李莹 宋振国 张广华 《中国肿瘤临床》 CAS CSCD 北大核心 2019年第2期86-89,共4页
目的:评价不同剂量纳洛酮联合地佐辛用于乳腺癌患者术后镇痛的效果。方法:选取2018年5月至2019年1月天津医科大学肿瘤医院120例行乳腺癌改良根治术患者的临床资料,随机分为L、M、H、C组(n=30)。各组均给予地佐辛0.15 mg/kg,L、M、H组分... 目的:评价不同剂量纳洛酮联合地佐辛用于乳腺癌患者术后镇痛的效果。方法:选取2018年5月至2019年1月天津医科大学肿瘤医院120例行乳腺癌改良根治术患者的临床资料,随机分为L、M、H、C组(n=30)。各组均给予地佐辛0.15 mg/kg,L、M、H组分别给予纳洛酮0.5、1.0、1.5μg/kg,C组给予等容量生理盐水。分别记录患者苏醒及拔除喉罩时间,喉罩拔除期间的血压、心率,术后1 h(T1)、6 h(T2)、12 h(T3)、24 h(T4)的视觉模拟评分(VAS)、舒适评分(BCS)、Ramsay评分,术后补救镇痛及不良反应次数。结果:L、M、H组的苏醒及拔除喉罩时间短于C组,M组苏醒时间最短(P<0.05)。T1、T2、T3时M组VAS评分低于其他3组(P<0.05),C组术后补救镇痛及不良反应次数多于其他3组(P<0.05)。结论:纳洛酮1.0μg/kg联合地佐辛(0.15 mg/kg)可增强地佐辛术后镇痛效果,缩短苏醒时间,减少不良反应。 展开更多
关键词 地佐辛 纳洛酮 术后镇痛 乳腺癌 不良反应
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