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Discharge Characteristics of Ring-Type Flow-Stabilized Pulsed Corona Discharge Radical Shower Systems

机译:环形流动稳定脉冲电晕放电自由基淋浴系统的放电特性

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The discharge characteristics of a ring-type flow-stabilized pulsed corona discharge radical shower system (RCDRS) were investigated. An RCDRS with six hollow electrodes was studied. A low dc voltage charging of an ignition coil-type power supply was used to generate a pulse high voltage. Experiments were conducted for an applied charging dc voltage from 5 V to 18 V, a pulse repetition rate from 50 Hz to 200 Hz, and an injected air flow rate from 2.5 to 4.6 L/min per hollow electrode. The discharge characteristics were measured using current and voltage probes, and the morphology of the discharge was observed using a CCD camera. The pulsed waveforms of current, voltage, and power (secondary side output) were studied in terms of the input power (primary side), as well as the current and voltage, with the observed optical images for optimization. The results show that the maximum discharge current, voltage, and power increase with increasing primary side dc voltage or power. The pulse repetition rate affected the maximum discharge characteristics in terms of the primary side dc voltage, while the air flow rate did not. The maximum volume averaged plasma density is on the order of $10^{11} hbox{ions/cm}^{3}$ for the 10-cm diameter and 5-cm-long flow channel volume.
机译:研究了环形流动稳定脉冲电晕放电自由基喷淋系统(RCDRS)的放电特性。研究了具有六个空心电极的RCDRS。使用点火线圈式电源的低直流电压充电来产生脉冲高电压。对每个空心电极施加5 V至18 V的充电直流电压,50 Hz至200 Hz的脉冲重复频率以及2.5至4.6 L / min的注入空气流速进行实验。使用电流和电压探头测量放电特性,并使用CCD相机观察放电形态。根据输入功率(初级侧)以及电流和电压,研究了电流,电压和功率(次级侧输出)的脉冲波形,并观察了光学图像以进行优化。结果表明,最大放电电流,电压和功率随初级侧直流电压或功率的增加而增加。脉冲重复频率会影响一次侧直流电压的最大放电特性,而空气流速则不会。对于10厘米直径和5厘米长的流道体积,最大平均血浆密度约为10 ^ {11} hbox {ions / cm} ^ {3} $。

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