结皮量与含水率对尾矿风蚀影响的风洞模拟研究
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国家重点研发计划项目(2018YFC1802903,2018YFC1802906)资助。


Wind Tunnel Simulation of Effects of Crust Quantity and Moisture on Wind Erosion of Tailings
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    摘要:

    尾矿风蚀是影响周边环境空气质量和人体健康的重要因素。以喀拉通克铜镍矿加乌尔尾矿库尾矿为研究对象,通过风洞试验,对不同风速、含水率和结皮量条件下的尾矿风蚀率、风蚀颗粒释放特征进行研究。结果表明:尾矿风蚀率、风蚀颗粒量及其碰撞能量随着试验风速的增加而增加,随着尾矿含水率和结皮量的增加而减小。首次出现颗粒碰撞的风速随着尾矿含水率和结皮量的增加而增加。尾矿风蚀颗粒主要分布在3 cm高度内,占总风蚀颗粒的50%以上。在结皮不被吹破的情况下,结皮的抗风蚀效果要优于含水率。因此,结皮抗风蚀效果与风速和结皮量有关,10 m/s以下风速任何结皮量均能有效抗风蚀,12 m/s需25 g以上结皮量,14 m/s需50 g以上结皮量;而含水率在任何试验风速下需达到2.72%以上才有较好的抗风蚀效果。

    Abstract:

    Wind erosion of tailings is an important factor affecting ambient air quality and human health. In this study, the tailings of copper-nickel tailings pond are taken as the research object, and the effects of wind speed, crust quantity and moisture on the characteristics of wind erosion rate and wind erosion particles of tailings were studied by wind tunnel experiment. The results show that the wind erosion rate, wind erosion particles and collision energy of tailings increase as the wind speed increases, but decrease with the increase of moisture and crust quantity of tailings. The wind speed of first particle collision increases with the increase of moisture and crust quantity of tailings. Wind erosion particles of tailings are mainly concentrated within 3 cm height, accounting for more than 50% of the total wind erosion. Under the condition that the crust is not broken by the wind, crust quantity has the better resistance to wind erosion than moisture. Therefore, wind erosion resistance of crust is related to wind speed and crust quantity. Any crust quality can effectively resist wind erosion at wind speed below 10 m/s, but more than 25 g and 50 g crust are required to resist wind erosion at wind speed of 12 m/s and 14 m/s, respectively. Moisture of tailings should higher than 2.72% for better wind erosion resistance under the experimental wind speed.

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杨小亮,靳正忠,丁刚,俞祥祥,王海峰.结皮量与含水率对尾矿风蚀影响的风洞模拟研究[J].土壤,2022,54(5):1085-1092. YANG Xiaoliang, JIN Zhengzhong, DING Gang, YU Xiangxiang, WANG Haifeng. Wind Tunnel Simulation of Effects of Crust Quantity and Moisture on Wind Erosion of Tailings[J]. Soils,2022,54(5):1085-1092

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  • 收稿日期:2021-12-28
  • 最后修改日期:2022-03-10
  • 录用日期:2022-03-14
  • 在线发布日期: 2022-10-31
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