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机构地区:[1]湖南工业大学机械工程学院,湖南株洲412008 [2]重庆交通大学机电学院,重庆400074
出 处:《应用基础与工程科学学报》2012年第3期440-446,共7页Journal of Basic Science and Engineering
基 金:国家自然科学基金项目(50374087);科技部国际科技合作项目(2008DFA70300);湖南省教育厅重点项目(04A067)
摘 要:以BHM采矿工具中的核心部件气举为研究对象,设计了小型气举输沙装置.选择河沙模拟井下矿层,并引入水射流喷嘴研究气举底部吸口与沙床表层距离H对气举工作特性的影响规律.结果表明:水射流喷嘴布置方式和H对气举工作特性会产生显著影响,通过合理调整这些参数,可以实现最大排沙量的有效控制.另外,对气举提沙的临界情况进行分析发现,在定浸入率下,提升液体对应临界气量值Qgl相同,均为16.5m3/h;提升固体对应临界气量值Qgs随水射流喷嘴个数N’增加而单调递减,但随H(H>0)单调增加.本研究结论对工程应用具有较强的指导意义.By taking core component (Air-lift) of BHM as the research object, a small air-lift for Conveying River Sand was designed and the river sand was used as simulation of underground ore bed. The law of distance from sand bed surface to the air-lift suction, defined as H, on the air-lift performance was analyzed in the case of water jet nozzles. Results showed that the water jet nozzles and H had great effect on the performance characteristic of the air-lift,the maximum discharged solid particles could be controlled effectively by adjusting these parameters mentioned above. In addition,the critical condition for lifting solid particles was discussed from a practical viewpoint,the results showed that the critical air flow rates for lifting fluid was 16.5m^3/h under same submergence ratio. But for lifting solid particles, the critical value decreased with the increase of water jet nozzles and increased with H ( H 〉 0) increasing. It has active guidance meaning and applied value to the engineering practice.
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