Numerical simulation of flotation bubble motion in a three-phase inner suspension fluid
-
摘要: 為獲取浮選氣泡在礦漿中的運動規律及三相流中浮選氣泡的最佳尺寸,運用歐拉模型模擬不同初始直徑的氣泡在不同密度礦漿中的運動過程.結果表明:在給定的初始條件下,同一濃度的礦漿中,單個浮選氣泡所能捕獲的礦物量以直徑4mm的氣泡最多,氣泡尺寸增大或減小后,其礦物捕獲量都有所減少.當礦漿中固相質量分數在20%~40%之間變化時,礦物捕獲量最多的氣泡尺寸變化不大,并且隨著礦漿中固相質量分數的增大,單個氣泡的捕獲量增大,礦物粒子回收率增加.在實際生產中,直徑為3.5~4 mm的中等大小氣泡在運動過程中變形程度小,氣泡水平偏移及浮升速度適中,對礦物粒子的捕獲率及運載能力和浮升能力較強,有利于提高浮選產量和質量.Abstract: To find the motion law and optimum size of floatation bubbles in a three-phase flow,the Eulerian model is used to simulate the motion process of bubbles with different initial diameters in pulps of different concentrations. The simulation results show that under the given initial condition,in the pulp with a certain concentration,bubbles of 4 mm catch the most mine grains; bubbles of any size above or below 4 mm cannot capture mine grains as many as those of 4 mm. When the pulp concentration is in the range of 20%-40%,the size of bubbles that capture the most mine grains does not change much. As the pulp concentration increases,the amount captured by a single bubble increases,so does the recovery rate of mine grains. In real production,bubbles of 3.5-4 mm have small deformation,moderate horizontal shift and lifting speed,and strong ability of capturing and carrying mine grains and lifting,which are benefit for improving the quality and quantity of floatation production.
-
Key words:
- flotation /
- bubbles /
- motion simulation /
- numerical simulation /
- suspensions
-

計量
- 文章訪問數: 456
- HTML全文瀏覽量: 157
- PDF下載量: 15
- 被引次數: 0