高电压技术
高電壓技術
고전압기술
HIGH VOLTAGE ENGINEERING
2009年
11期
2669-2673
,共5页
邓鹤鸣%何正浩%许宇航%马军%李劲
鄧鶴鳴%何正浩%許宇航%馬軍%李勁
산학명%하정호%허우항%마군%리경
雾霾%放电路径%雷电冲击电压%粒径%概率%空气间隙
霧霾%放電路徑%雷電遲擊電壓%粒徑%概率%空氣間隙
무매%방전로경%뇌전충격전압%립경%개솔%공기간극
haze%discharge path%lightning impulse%haze diameters%percentage%air gap
由于经济规模的迅速扩大和城市化进程的加快,雾霾现象日趋严重,这些雾霾多发地区是我国输电走廊或用电高负荷密度地区.为研究雾霾对放电发展的影响,利用水雾、粉煤灰等模拟雾霾天气,采用雷电冲击电压进行了雾霾对击穿电压和放电路径影响的实验研究.研究结果表明:当雾霾的粒径范围<0.01 mm时,雾霾间隙的击穿电压始终较空气间隙的高,放电路径选择雾霾的概率<50%;当粒径范围为0.01~0.1 mm时,正电压下选择概率<50%,雾霾间隙的击穿电压较空气间隙的高,而负电压下选择概率>50%,雾霾间隙的击穿电压较空气间隙的低.雾霾中放电发展是电场的畸变和雾霾颗粒与粒子间作用联合影响的结果.
由于經濟規模的迅速擴大和城市化進程的加快,霧霾現象日趨嚴重,這些霧霾多髮地區是我國輸電走廊或用電高負荷密度地區.為研究霧霾對放電髮展的影響,利用水霧、粉煤灰等模擬霧霾天氣,採用雷電遲擊電壓進行瞭霧霾對擊穿電壓和放電路徑影響的實驗研究.研究結果錶明:噹霧霾的粒徑範圍<0.01 mm時,霧霾間隙的擊穿電壓始終較空氣間隙的高,放電路徑選擇霧霾的概率<50%;噹粒徑範圍為0.01~0.1 mm時,正電壓下選擇概率<50%,霧霾間隙的擊穿電壓較空氣間隙的高,而負電壓下選擇概率>50%,霧霾間隙的擊穿電壓較空氣間隙的低.霧霾中放電髮展是電場的畸變和霧霾顆粒與粒子間作用聯閤影響的結果.
유우경제규모적신속확대화성시화진정적가쾌,무매현상일추엄중,저사무매다발지구시아국수전주랑혹용전고부하밀도지구.위연구무매대방전발전적영향,이용수무、분매회등모의무매천기,채용뇌전충격전압진행료무매대격천전압화방전로경영향적실험연구.연구결과표명:당무매적립경범위<0.01 mm시,무매간극적격천전압시종교공기간극적고,방전로경선택무매적개솔<50%;당립경범위위0.01~0.1 mm시,정전압하선택개솔<50%,무매간극적격천전압교공기간극적고,이부전압하선택개솔>50%,무매간극적격천전압교공기간극적저.무매중방전발전시전장적기변화무매과립여입자간작용연합영향적결과.
Due to enlargement of economical scale and acceleration of urbanization,atmospheric haze is on the rise in China.High density of transmission line corridors or power load areas are located in these regions.In order to understand the effect of haze on the discharge development,mist,flyash and ferric oxide are employed to simulate haze environment.Lightning impulses are applied to carry out to gain insight into the influence of haze on the breakdown voltage and discharge path in this work.The results show that when the average haze particle diameters(D)in haze are smaller than 0.01 mm,the percentages of the selection of haze is always less than 50%.and the breakdown voltages in haze are higher than that in air.When 0.01 mm<D<0.1 mm,the percentages of the selection of haze is less than 50% under positive lightning impulses but above 50% under negative lightning impulses,and the breakdown voltages in haze are higher than that in air under positive lightning impulses but lower than that in air under negative lightning impulses.The process of discharge is caused by the composite effect of the electrostatic field alteration and the interaction between ion,electron,photon and haze particles.