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Research on experiment and simulation of charged spherical metal particle collision characteristic under DC electric field

机译:直流电场下带电球形金属粒子碰撞特性实验与仿真研究

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Since there exist discharge problems in gas insulated metal-enclosed switchgear due to internal metal particle movement, the study in this paper thus, conducted an experiment and simulation research on the movement characteristics of particles, where the charge on particle and the collision recovery coefficient (CRC) was obtained. When the electrode is brass, the charge on the particle is close to the theory one and the CRC of aluminum, stainless steel and particle are 0.52, 0.75 and 0.79 respectively. Accordingly, the study, in order to take the particle charge and its collision process into consideration, established a particle movement model, and conducted a test has thereof. The results show that there exists excellent consistency between charge and its collision. According to the research, the relationship between particle size, material and collision characteristics was revealed. The result shows that under DC voltage the metal particle collision frequency decreases with the increase of particle size when the material of the particles is the same. The time difference between particles' moving to high voltage electrode and ground electrode becomes greater with the increase of the size of the particle. When the particle material is different, the collision characteristics are influenced by its density and collision recovery coefficient of restitution. Particle motion velocity loss becomes less before and after the collision when its collision recovery coefficient of restitution is larger. So the collision frequency is higher. The research results in this paper can offer some reference value to particles suppression measures in gas insulated metal-enclosed transmission line.
机译:由于气体绝缘金属封闭开关设备由于内部金属颗粒的运动而存在放电问题,因此本文的研究针对颗粒的运动特性进行了实验和模拟研究,其中颗粒上的电荷和碰撞恢复系数( CRC)。当电极为黄铜时,粒子上的电荷接近理论值1,铝,不锈钢和粒子的CRC分别为0.52、0.75和0.79。因此,为了考虑粒子电荷及其碰撞过程,该研究建立了粒子运动模型并进行了测试。结果表明,电荷与碰撞之间存在极好的一致性。根据研究,揭示了粒径,材料和碰撞特性之间的关系。结果表明,在直流电压下,当颗粒材料相同时,金属颗粒的碰撞频率随颗粒尺寸的增加而减小。随着粒子尺寸的增加,粒子向高压电极和接地电极移动的时间差变得更大。当颗粒材料不同时,碰撞特性受其密度和碰撞回复恢复系数的影响。当其碰撞恢复恢复系数较大时,粒子运动速度损失在碰撞前后变得较小。因此碰撞频率更高。本文的研究结果可为气体绝缘金属封闭输电线路的颗粒抑制措施提供参考。

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