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上湾选煤厂浅槽重介质分选机上升流系统改造实践 被引量:9
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作者 许联航 《选煤技术》 CAS 2017年第4期35-39,共5页
为了解决上湾选煤厂浅槽重介质分选机上升流系统堵塞的问题,在对产生原因分析的基础上,提出了上升流系统改造方案,并以305浅槽重介质分选机为对象予以实施。生产实践表明:浅槽重介质分选机上升流系统的结构改造,对其分选效果基本没有影... 为了解决上湾选煤厂浅槽重介质分选机上升流系统堵塞的问题,在对产生原因分析的基础上,提出了上升流系统改造方案,并以305浅槽重介质分选机为对象予以实施。生产实践表明:浅槽重介质分选机上升流系统的结构改造,对其分选效果基本没有影响,而上升流系统堵塞频率下降80多个百分点,因此节约了大量生产成本,并带来了可观的经济效益。 展开更多
关键词 浅槽重介质分选机 上升流系统 系统管路 布流孔板 上升流介质斗
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CFD Simulation of Orifice Flow in Orifice-type Liquid Distributor 被引量:2
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作者 Yu Hongfeng Li Xingang +1 位作者 Sui Hong Li Hong 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2013年第3期70-78,共9页
In this study,a suitable CFD(computational fluid dynamics)model has been developed to investigate the influence of liquid height on the discharge coefficient of the orifice-type liquid distributors.The orifice flow in... In this study,a suitable CFD(computational fluid dynamics)model has been developed to investigate the influence of liquid height on the discharge coefficient of the orifice-type liquid distributors.The orifice flow in different diameters and liquid heights has been realized using the shear stress transport(SST)turbulence model and the Gamma Theta transition(GTT)model.In the ANSYS CFX software,two models are used in conjunction with an automatic wall treatment which allows for a smooth shift from a wall function(WF)to a low turbulent-Re near wall formulation(LTRW).The results of the models coupled with LTRW are closer to the experimental results compared with the models with WF,indicating that LTRW is more appropriate for the prediction of boundary layer characteristics of orifice flow.Simulation results show that the flow conditions of orifices change with the variation of liquid height.With respect to the turbulence in orifice,the SST model coupled with LTRW is recommended.However,with respect to the transition to turbulence in orifice with an increase in liquid height,the predictions of GTT model coupled with LTRW are superior to those obtained using other models. 展开更多
关键词 discharge coefficient orifice-type liquid distributors CFD liquid height
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