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DC negative corona discharge characteristics in air flowing transversely and longitudinally through a needle-plate electrode gap

机译:通过针板电极间隙横向且纵向流动的空气中的DC负电晕放电特性

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CThe electrical characteristics of a steady-state DC negative corona discharge in air flowing transversely or longitudinally in relation to the needle-to-plate (or mesh) electrode axis were experimentally investigated. The velocity of air flowing into the corona discharge chamber was limited to a range from 0 to 6 m/s, typical of electrostatic precipitators, gas ionisation sensors and EHD pumps. The investigations showed that in this airflow velocity range three discharge current modes of the DC negative corona could exist: the Trichel-pulse corona mode, the 'Trichel pulses superimposed on the steady current (or DC) component' mode and the steady glow (the steady current or DC) corona mode, regardless of the airflow direction. The average corona discharge current, which is a macroscopic corona discharge parameter, was almost not affected by the airflow. However, both microscopic corona discharge parameters: the electric charge and the repetition frequency of Trichel pulses were influenced by the airflow. The transverse airflow caused an increase in the electric charge and a decrease in the repetition rate of Trichel pulses, the both by about 25% at a velocity of 6 m/s. In the case of longitudinal airflow the average corona current slightly increased when the airflow was directed towards the mesh and decreased when the airflow was directed towards the needle tip. Similarly as in the case of transverse airflow, the electric charge and the repetition frequency of Trichel pulses were affected by the longitudinal airflow. The electric charge and the repetition frequency of Trichel pulses increased and decreased, respectively, with growing airflow in the direction towards the needle electrode. The airflow growing in the direction towards the mesh electrode produced the opposite effect - the electric charge and the repetition frequency of Trichel pulses decreased and increased, respectively. The opposite behaviours of the electric charge and the repetition frequency of Tri
机译:实验研究了稳态直流负电晕放电在空气中相对于针-板(或网状)电极轴线横向或纵向流动的电学特性。流入电晕放电室的空气速度限制在0到6 m/s的范围内,这是静电除尘器、气体电离传感器和EHD泵的典型情况。研究表明,在该气流速度范围内,直流负电晕可能存在三种放电电流模式:Trichel脉冲电晕模式、“叠加在稳定电流(或直流)分量上的Trichel脉冲”模式和稳定辉光(稳定电流或直流)电晕模式,与气流方向无关。平均电晕放电电流是一个宏观电晕放电参数,几乎不受气流的影响。然而,微观电晕放电参数:电荷和Trichel脉冲的重复频率都受到气流的影响。横向气流导致电荷增加,Trichel脉冲重复率降低,两者在6 m/s的速度下都增加了约25%。在纵向气流的情况下,当气流朝向网格时,平均电晕电流略有增加,当气流朝向针尖时,平均电晕电流有所减少。与横向气流的情况类似,纵向气流会影响Trichel脉冲的电荷和重复频率。随着朝向针电极方向气流的增加,Trichel脉冲的电荷和重复频率分别增加和减少。气流朝着网状电极的方向增长产生了相反的效果——电荷和Trichel脉冲的重复频率分别降低和增加。电荷与Tri重复频率的相反行为

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