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首页> 外文期刊>Journal of Electrostatics >Effect of spark discharges on the trajectories of insulating particles in roll-type corona-electrostatic separators. Experimental and numerical study
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Effect of spark discharges on the trajectories of insulating particles in roll-type corona-electrostatic separators. Experimental and numerical study

机译:火花放电对辊式电晕静电分离器中绝缘颗粒轨迹的影响。实验与数值研究

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摘要

Corona-electrostatic separation is a multi-variable process that has been thoroughly studied in connection with its various applications in the recycling industry. The aim of the present paper is to point out one parasitic phenomenon that adversely affects the efficiency of the separation: the sparks generated at the passage of conductive particles through the electric field zone. The experiments were carried out on a laboratory roll-type corona electrostatic separators, and the sparks were generated by introducing 16 calibrated copper pins in 40-g samples of granular insulating material (PVC; typical granule size: 1.5 mm) that were fed at a constant rate onto the surface of the grounded rotating roll electrode. The distribution of the PVC granules in the 14 boxes of the collector was altered by the occurrence of the spark discharges, as they were accompanied by the annealing of the electric field between the electrodes. The numerical simulation of insulating granules charging and movement under the action of the electric field enabled a better understanding of the interactions between the spark discharges and the other factors that influence their trajectories and affect the efficiency of the separation: roll-speed, particle size and ambient humidity. The particle dynamics equations were solved using an iterative scheme by using the electric field calculated in any point with the commercial software TRICOMP. The good agreement between the predictions made by these simulations and the experimental findings confirms the ability of the mathematical model to reflect the complexity of the physical phenomena.
机译:电晕静电分离是一个多变量过程,已对其在回收行业中的各种应用进行了深入研究。本文的目的是指出一种对分离效率产生不利影响的寄生现象:在导电粒子通过电场区域时产生的火花。实验是在实验室辊式电晕静电分离器上进行的,通过在40 g颗粒绝缘材料(PVC;典型颗粒尺寸:1.5 mm)样品中引入16根校准过的铜销来产生火花,该样品以150℃进料。以恒定的速率旋转到接地旋转辊电极的表面上。聚氯乙烯颗粒在14箱收集器中的分布因发生火花放电而改变,因为它们伴随着电极之间电场的退火。绝缘颗粒在电场作用下的充电和运动的数值模拟可以更好地理解火花放电与其他影响其轨迹并影响分离效率的因素之间的相互作用:辊速,粒径和环境湿度。通过使用商业软件TRICOMP在任意点计算的电场,使用迭代方案求解粒子动力学方程。这些模拟所作的预测与实验结果之间的良好一致性,证实了数学模型反映物理现象复杂性的能力。

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