О влиянии озона на характеристики коронного разряда в воздухе

The influence of the ozone as well as the humidity and air pressure on the current and voltage corona discharge in gap "wirecylinder" is studying. It is shown that negative corona discharge compared with positive is more sensitive to changing parameters of the gas environment. Increasing p...

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Veröffentlicht in:Технічна електродинаміка
Datum:2012
Hauptverfasser: Блага, А.В., Божко, И.В., Бржезицкий, В.А.
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Sprache:Russisch
Veröffentlicht: Інститут електродинаміки НАН України 2012
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author Блага, А.В.
Божко, И.В.
Бржезицкий, В.А.
author_facet Блага, А.В.
Божко, И.В.
Бржезицкий, В.А.
citation_txt О влиянии озона на характеристики коронного разряда в воздухе / А.В. Блага, И.В. Божко, В.А. Бржезицкий // Технічна електродинаміка. — 2012. — № 4. — С. 25–29. — Бібліогр.: 9 назв. — pос.
collection DSpace DC
container_title Технічна електродинаміка
description The influence of the ozone as well as the humidity and air pressure on the current and voltage corona discharge in gap "wirecylinder" is studying. It is shown that negative corona discharge compared with positive is more sensitive to changing parameters of the gas environment. Increasing partial pressures of water vapor and ozone in the air makes more voltage and lower current of corona discharge. The sensitivity of current and voltage negative corona with respect to the partial pressure of ozone is above 10 time more than one of water.
first_indexed 2025-11-30T15:09:28Z
format Article
fulltext ISSN 1607-7970. . . 2012. 4 25 537.523.3 1, 2, , 1, 1 – « », . , 37, , 03056, , 2 – , . , 56, -57, 03680, . , « ». , . - . - , . . 9, . 5. : , , , , , , ( ) - . , , - . [7,8]. , , - . [5,9] , > 0,1 , - . , , [7,8]. , , - , [4] ( , , ) [3]. , , . - . . . 1. . . - . ( , - ). ( , ). . - , , - . , – . , , - 254,7 . « » ( . 1). 1 - 22,7 . 7 0,25 0,8 . . 4 5 - , - 2. 5, , © ., ., ., 2012 26 ISSN 1607-7970. . . 2012. 4 1. 3 , – . 6 , 8 – - 2 1. - . - , , . - ( ) DS 1012. . - « » - . , - Q=5 la=20 . 0,1 , - 2…3 . . . 2, - ( 1, 2) ( 3, 4) d =0,8 - =0 ( 1, 3) =2,4 2, 4), p=775 , 291 , =70%. - : Up Ip. 1 2 , - . ( ) Up=15 - Up 16 ( Ip=185 ). Up=15 , Ip 185 125 . ( 3, 4) - Ip , ( 1, 2). d . d - 0,8…0,25 ( 30%) ( d = 0,8 ) - . - . . 3, Up( ), : Ip=100 , p=775 , =70%, T=291 , d =0,25 . , - - dUp/ , ( Up) - . Up 0…0,3; 0,3…1,0 1…2,4 , - , 3000; 1100 200 . , - . Ip : 0…2,7 150 10 . K 3 8 2 1 4 5 6 6 7 3 4 28 . 1 1 2 3 4 Up, 11 12 13 14 15 16 17 0 40 80 120 160 Ip, . 2 C, / 13 14 15 0 0,4 0,8 1,2 2,41,6 2 Up, . 3 ISSN 1607-7970. . . 2012. 4 27 [7,8]. p U , Up, - Ip . . 4. , p=770 ( 1,3) p = 838 2,4) ( 1,2) =2,05 ( 3,4) , ( =65%, T=291 ). , Up . Ip=100 p=770 Up Up 1,3 , p=838 Up 1,4 . Ip: Ip=200 Up 1,5 2 , , p=770 838 . I , - ( 1,2) ( - ) 300…350 ( . 4 ) p. I 240 ( 3) I 280 4) p=770 838 . - , , - , [7,8]. . 5 , =35% ( 1,3) =65% 2,4) ( 1,2) =2,1 ( 3,4) ( =776 , =291 ). 1 2 , - - U Up 700 ( Ip) Ip 40 ( - Up ). ( =35%) , - 65% U , Up Ip. - U 1,8 , U Ip 70 ( . 5, 1,3 - ). Ip 70 , , , U - , . =35…70% I 320…300 (~7%), ( 1,2, . 5, ). - I 20%. . - , 2H Op SOp . - U Ip Bp , 2H Op SOp . Bp =770 , 2H Op =10 (H=65%, T=291 ), os p =0, Ip =200 , U =16 . - =0…1 ( SOp =0,35 ). , - , . - . , - . , , - 12 13 14 15 1716 18 19 Ip, 0 80 160 40 120 200 240 280 1 2 3 4 Up, . 4 10 11 12 13 1514 16 17 Up, 0 80 160 40 120 200 240 280 1 2 4 3 Ip, . 5 28 ISSN 1607-7970. . . 2012. 4 , . U / Bp Ip/ Bp , U / 2H Op , Ip/ 2H Op , U / 3Op , Ip/ 3Op , 12 0,7 150 8 4600 260 , - . [7,8,9] , , . , - , 3 -, H20-, OH-, O- H-. , , e + O3 3 -, e + H2O H20- e + H2O + 3,2 OH- + H, e + H2O + 3,6 O- + H2, e + H2O + 4,25 H- + OH, [6]. H2O , , U . 3 -, =2,1 , H20- (0,9 ), - (1,47 ) - (1,83 ) [6], . , , (3 5) , 3 - . , ( 3 ) Up Up . , , - , , ( 90%) - , [1,2]. - , . . - , , - . , , I . , [1,2,7 9], . , - , « », - ( 30%), « - ». - « » . , , - . 2H Op =6…12 ( =35…70%) 2H Op U / 2H Op 150 , – Ip/ 2H Op 8 . 3Op = 0…0,35 : U / 3Op 4600 , Ip/ 3Op 260 . ISSN 1607-7970. . . 2012. 4 29 1. ., ., . . // . – 2000. – . 26. – 2. – . 172–178. 2. ., ., . - // . – 1994. – . 20. – 6. – . 571–584. 3. . . – : , 1984. – 208 . 4. . . – .: . . - . , . 22. . – 1963. – 3. – C. 132–145. 5. ., ., . - // . – 2007. – 6. – . 3–8. 6. . . – .: , 1987. – 592 . 7. Becker K.H., Kogelschatz U., Schoenbach K.H., Barker R.I. Non-Equilibrium Air Plasmas at Atmospheric Pressure. – Institute of Physics Publishing Bristol and Philadelphia, 2005. – 682 p. 8. Fridman A. Plasma Chemistry. – Cambridge university press, 2008. – 1022 p. 9. Ryo Ono, Tetsuji Oda. Dynamis of ozone and OH radicals generated by pulsed corona discharge in humid-air flow reactor measured by laser spectroscopy // Journal of Applied Physics. – 2003. – Vol. 93. – 10. – Pp. 5876–5882. 537.523.3 1, 2, , 1, , 1 – « », . , 37, , 03056, , 2 – , . , 56, -57, 03680, . , - « ». , - . . - , . . 9, . 5. : , , , , , , . THE INFLUENCE OF OZONE ON CHARACTERISTICS OF CORONA DISCHARGE IN AIR A.V.Blaga1, I.V.Bozhko2, V.A.Brzhezitsky 1, 1 National Technical University of Ukraine “Kyiv Polytechnic Institute”, Peremogy ave., 37, Kyiv 56, 03056, Ukraine, 2 Institute of Electrodynamics National Academy of Science of Ukraine, Peremogy ave., 56, Kyiv-57, 03680, Ukraine. The influence of the ozone as well as the humidity and air pressure on the current and voltage corona discharge in gap "wire- cylinder" is studying. It is shown that negative corona discharge compared with positive is more sensitive to changing parameters of the gas environment. Increasing partial pressures of water vapor and ozone in the air makes more voltage and lower current of corona discharge. The sensitivity of current and voltage negative corona with respect to the partial pressure of ozone is above 10 time more than one of water. References 9, figures 5. Key words: corona discharge, current, voltage, air, pressure, ozone, humidity. 1. Akishev Ju.S., Grushin M.E., Kochetov I.V. About a transition the numerous streamers negative corona in atmospheric air glow discharge mode // Fizika plazmy. – 2000. – Vol. 26. – 2. – Pp.172–178. (Rus) 2. Akishev Ju.S., Deriugin A.A., Karalnik V.B. Experimental study and numerical simulation of atmospheric DC glow dis- charge atmospheric pressure // Fizika plazmy. – 1994. – Vol. 20. – 6. – Pp. 571–584. (Rus) 3. Bakhtaev Sh.A. Corona discharge at mikrowires. Almaty: Nauka, 1984. – 208 p. (Rus) 4. Bikenin I.Kh. Methods of measuring ozone concentrations// Nauchnye trudy Akademii kommunalnogo khoziaistva im. Pamfilova. – 1963. –Vol. 22. Vodosnabzhenie. – 3. – Pp. 132–145. (Rus) 5. Bozhko I.V., Aristov Ju.V., Belinskii V.V. Influence of humidity and movement of air on the properties of positive corona // Tekhnichna elektrodynamìka. – 2007. – 6. –Pp. 3–8. (Rus) 6. Raiser Ju.P. Physics of gas discharge. – Moskva: Nauka, 1987. – 592 p.( Rus) 7. Fridman A. Plasma Chemistry. – Cambridge university press, 2008. – 1022 p. 8. Becker K.H., Kogelschatz U., Schoenbach K.H., Barker R.I. Non-Equilibrium Air Plasmas at Atmospheric Pressure. – In- stitute of Physics Publishing Bristol and Philadelphia, 2005. – 682 p. 9. Ryo Ono, Tetsuji Oda. Dynamis of ozone and OH radicals generated by pulsed corona discharge in humid-air flow reactor measured by laser spectroscopy // Journal of Applied Physics. – 2003. – Vol. 93. – 10. – Pp. 5876–5882. 02.12.2011 Received 02.12.2011
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institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
issn 0204-3599
language Russian
last_indexed 2025-11-30T15:09:28Z
publishDate 2012
publisher Інститут електродинаміки НАН України
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spelling Блага, А.В.
Божко, И.В.
Бржезицкий, В.А.
2014-05-16T06:39:23Z
2014-05-16T06:39:23Z
2012
О влиянии озона на характеристики коронного разряда в воздухе / А.В. Блага, И.В. Божко, В.А. Бржезицкий // Технічна електродинаміка. — 2012. — № 4. — С. 25–29. — Бібліогр.: 9 назв. — pос.
0204-3599
https://nasplib.isofts.kiev.ua/handle/123456789/62069
537.523.3
The influence of the ozone as well as the humidity and air pressure on the current and voltage corona discharge in gap "wirecylinder" is studying. It is shown that negative corona discharge compared with positive is more sensitive to changing parameters of the gas environment. Increasing partial pressures of water vapor and ozone in the air makes more voltage and lower current of corona discharge. The sensitivity of current and voltage negative corona with respect to the partial pressure of ozone is above 10 time more than one of water.
ru
Інститут електродинаміки НАН України
Технічна електродинаміка
Теоретична електротехніка та електрофізика
О влиянии озона на характеристики коронного разряда в воздухе
The influence of ozone on characteristics of corona discharge in air
Article
published earlier
spellingShingle О влиянии озона на характеристики коронного разряда в воздухе
Блага, А.В.
Божко, И.В.
Бржезицкий, В.А.
Теоретична електротехніка та електрофізика
title О влиянии озона на характеристики коронного разряда в воздухе
title_alt The influence of ozone on characteristics of corona discharge in air
title_full О влиянии озона на характеристики коронного разряда в воздухе
title_fullStr О влиянии озона на характеристики коронного разряда в воздухе
title_full_unstemmed О влиянии озона на характеристики коронного разряда в воздухе
title_short О влиянии озона на характеристики коронного разряда в воздухе
title_sort о влиянии озона на характеристики коронного разряда в воздухе
topic Теоретична електротехніка та електрофізика
topic_facet Теоретична електротехніка та електрофізика
url https://nasplib.isofts.kiev.ua/handle/123456789/62069
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