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Numerical Simulation of Atmospheric Migration of Particles From Uranium Tailings Impoundment

机译:铀尾矿蓄积粒子大气迁移的数值模拟

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Based on the discrete phase model (DPM), this paper studies the concentration distribution and settlement regularity of particles which sizes are 10μm and 100μm under the wind speed of 0.5, 1, 2, and 4 m/s with the method of numerical simulation. The simulation results show that the particle concentration of 10μm at the downwind direction of tailing is constantly decreasing with the increase of wind speed and migration distance, and the particle concentration of 100μm is gradually increasing, as well as the local pollution also become gradually worse. As wind speed is 0.5 m/s, the local concentration of 10μm particles at the beach face of uranium tailings impoundment is higher, and there is much deposition within 2000 m of the downwind direction. While the dust emission rate of 100μm is less and its concentration is lower. 10μm particles are taken away by the wind, and its concentration would fall rapidly with wind speed increased to 4.0 m/s. The concentration of 100μm particle would increase and local pollution becomes more serious.
机译:基于离散相模型(DPM),本文研究了尺寸为10μm,100μm的颗粒的浓度分布和沉降规律,在0.5,1,2和4m / s的情况下,具有数值模拟的方法。仿真结果表明,随着风速和迁移距离的增加,拖尾的下行方向10μm的颗粒浓度不断地降低,100μm的颗粒浓度逐渐增加,以及局部污染也逐渐变差。由于风速为0.5米/秒,铀尾矿污染的海滩面上的10μm颗粒的局部浓度较高,并且在向下时方向的2000米范围内有很多沉积。虽然粉尘排放率为100μm,但其浓度较低。 10μm颗粒被风从风中取出,其浓度会随风速度迅速下降至4.0 m / s。 100μm粒子的浓度增加,局部污染变得更严重。

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