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Impact energy analysis of turbulent water sprays for continuous centrifugal concentration

机译:连续离心浓缩中湍流水雾的冲击能分析

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摘要

A SLon full-scale continuous centrifugal concentrator was used to reconcentrate hematite from a high gradient magnetic separation concentrate to study the effect of impact angle, concentrate mass and drum rotation speed on the impact energy of turbulent water sprays for continuous centrifugal concentration, under conditions of feed volume flow rate around 9 m3/h, feed solid concentration of 25% - 35% and reciprocating velocity of water sprays at 0. 05 m/s. The results indicate that a mimmal critical impact energy is required in the water sprays for achieving continuous concentration of the concentrator; an unfitted impact angle reduces the impact ffciency, and the highest impact efficiency of 0. 6416 is found at the mpact angle of 60°; the increase in concentrate mass leads to an increase in impact energy, and the highest impact efficiency is maintained when the concentrate mass varies in the range of 0. 44 -0. 59 kg/s; when the concentrate mass and the pressure of water sprays are kept at around 0. 45 kg/s and in the range of 0. 4 -0. 6 MPa respectively, the impact energy increases proportionally with the increase of drum rotation speed.
机译:SLon全尺寸连续离心选矿机用于从高梯度磁选精矿中浓缩赤铁矿,以研究在以下条件下冲击角,精矿质量和转鼓转速对连续离心浓缩的湍流水雾冲击能量的影响。进料体积流量约为9 m3 / h,进料固体浓度为25%-35%,喷水的往复速度为0. 05 m / s。结果表明,为了实现浓缩器的连续浓缩,在喷水器中需要有最小的临界冲击能。不合适的冲击角会降低冲击效率,最大冲击效率为0。在60°的冲击角处发现6416。浓缩物质量的增加导致冲击能量的增加,并且当浓缩物质量在0. 44 -0的范围内变化时,可以保持最高的冲击效率。 59公斤/秒;当浓缩物的质量和喷水的压力保持在0. 45 kg / s左右并且在0. 4 -0的范围内。分别为6 MPa时,冲击能量随鼓转速的增加而成比例地增加。

著录项

  • 来源
    《哈尔滨工业大学学报(英文版)》 |2009年第1期|91-95|共5页
  • 作者单位

    State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China;

    State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China;

    SLon Magnetic Separator Ltd. , Ganzhou 341000, China;

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  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 矿业工程;
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