绝缘材料
絕緣材料
절연재료
INSULATING MATERIALS
2014年
5期
110-115
,共6页
介质阻挡放电%大气压%电极结构%放电特性%电晕
介質阻擋放電%大氣壓%電極結構%放電特性%電暈
개질조당방전%대기압%전겁결구%방전특성%전훈
dielectric barrier discharge%atmospheric pressure%electrode structure%discharge characteristics%corona
采用电压-电流波形测量、发光图像拍摄、光谱分析等手段研究大气压空气中刃-板电极、针-板电极和柱-板电极结构介质阻挡放电(DBD)的放电特性,并研究电压幅值、电源频率及气隙距离对放电功率和分子振动温度等放电参量的影响,结合放电理论对不同电极结构DBD的特性进行分析。结果表明:3种电极结构DBD的电压电流波形、Lissajous图形以及光谱谱线体现出不同的特点,相同条件下柱-板电极结构DBD放电强烈,消耗放电功率多,粒子谱线强度高,放电电流可达200 mA。电极布置差异导致电场不均匀系数的不同是放电特性出现差异的主要原因。随着电压幅值、电源频率的增加和气隙距离的减小,3种电极结构放电增强,放电功率和分子振动温度增加。
採用電壓-電流波形測量、髮光圖像拍攝、光譜分析等手段研究大氣壓空氣中刃-闆電極、針-闆電極和柱-闆電極結構介質阻擋放電(DBD)的放電特性,併研究電壓幅值、電源頻率及氣隙距離對放電功率和分子振動溫度等放電參量的影響,結閤放電理論對不同電極結構DBD的特性進行分析。結果錶明:3種電極結構DBD的電壓電流波形、Lissajous圖形以及光譜譜線體現齣不同的特點,相同條件下柱-闆電極結構DBD放電彊烈,消耗放電功率多,粒子譜線彊度高,放電電流可達200 mA。電極佈置差異導緻電場不均勻繫數的不同是放電特性齣現差異的主要原因。隨著電壓幅值、電源頻率的增加和氣隙距離的減小,3種電極結構放電增彊,放電功率和分子振動溫度增加。
채용전압-전류파형측량、발광도상박섭、광보분석등수단연구대기압공기중인-판전겁、침-판전겁화주-판전겁결구개질조당방전(DBD)적방전특성,병연구전압폭치、전원빈솔급기극거리대방전공솔화분자진동온도등방전삼량적영향,결합방전이론대불동전겁결구DBD적특성진행분석。결과표명:3충전겁결구DBD적전압전류파형、Lissajous도형이급광보보선체현출불동적특점,상동조건하주-판전겁결구DBD방전강렬,소모방전공솔다,입자보선강도고,방전전류가체200 mA。전겁포치차이도치전장불균균계수적불동시방전특성출현차이적주요원인。수착전압폭치、전원빈솔적증가화기극거리적감소,3충전겁결구방전증강,방전공솔화분자진동온도증가。
The discharge characteristics of dielectric barrier discharge(DBD) with the edge-plate, nee-dle-plate, and column-plate electrode structure at atmospheric pressure in air were studied and compared by measuring voltage and current waveforms, taking lighting emission images, and using spectrum analy-sis. The effects of voltage amplitude, power frequency, and gap distance on the discharge power and mo-lecular vibrational temperature were studied, and the discharge characteristics of DBD with different elec-trode structures were analyzed by combining discharge theory. The results show that the voltage and cur-rent waveforms, Lissajous figures, and emission spectrum of three electrode structures DBD show differ-ent characteristics. At the same conditions, the column-plate electrode structure DBD has the strongest dis-charge and the most dissipated discharge power, and the discharge current can reach 200 mA. The ar-rangement of the electrode leads to the difference of nonuniform coefficient, which is the main reason of the difference of discharge characteristics. With the increase of voltage amplitude and power frequency and the decrease of gap distance, the discharge become strong, and the discharge power and molecular vi-brational temperature increase.