M. Stankov, A. Jovanović, V. Marković, S. Stamenković
{"title":"TWO-DIMENSIONAL FLUID MODELING OF DC GLOW DISCHARGE IN ARGON AT LOW PRESSURE","authors":"M. Stankov, A. Jovanović, V. Marković, S. Stamenković","doi":"10.2298/FUPCT1503153S","DOIUrl":null,"url":null,"abstract":"The modeling of DC glow discharge in argon at the pressure and inter-electrode distance was performed for different voltages and glow currents. For the first time, argon glow discharge is modeled using a two dimensional (2D) fluid model with non-local ionization. A detailed numerical procedure for 2D fluid modeling is given. The 2D profiles of particles number densities and electric potential obtained from the fluid model with non-local ionization and the simple fluid model are presented and compared. DVODIMENZIONI FLUIDNI MODEL JEDNOSMERNOG TINJAVOG PRAŽNJENJA U ARGONU NA NISKOM PRITISKU U radu je izvrseno modelovanje jednosmernog tinjavog pražnjenja u argonu na pritisku i medjuelektrodnom rastojanjupri razlicitim vrednostima primenjenih napona i radnih struja tinjavog pražnjenja. Po prvi put je modelovano tinjavo pražnjenje u argonu dvodimenzionim fluidnim modelom sa nelokalnom jonizacijom. U radu je data detaljna procedura za 2D fluidni model. Osim toga, izracunate su i uporedjene 2D raspodele koncentracija cestica i elektricnog potencijala dobijenih pomocu fluidnog modela sa nelokalnom jonizacijom i jednostavnog fluidnog modela. HIGHLIGHTS The modeling of DC glow discharge in argon was performed for different voltages and glow currents; Glow discharge was modeled using the two-dimensional (2D) simple fluid model and the fluid model with non-local ionization; A detailed numerical procedure for 2D fluid modeling is given; 2D profiles of the particle number densities and the electric potential obtained from the fluid model with non-local ionization and the simple fluid model are presented and compared.","PeriodicalId":12248,"journal":{"name":"Facta Universitatis - Series: Physics, Chemistry and Technology","volume":"23 1","pages":"153-162"},"PeriodicalIF":0.0000,"publicationDate":"2015-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Facta Universitatis - Series: Physics, Chemistry and Technology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2298/FUPCT1503153S","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The modeling of DC glow discharge in argon at the pressure and inter-electrode distance was performed for different voltages and glow currents. For the first time, argon glow discharge is modeled using a two dimensional (2D) fluid model with non-local ionization. A detailed numerical procedure for 2D fluid modeling is given. The 2D profiles of particles number densities and electric potential obtained from the fluid model with non-local ionization and the simple fluid model are presented and compared. DVODIMENZIONI FLUIDNI MODEL JEDNOSMERNOG TINJAVOG PRAŽNJENJA U ARGONU NA NISKOM PRITISKU U radu je izvrseno modelovanje jednosmernog tinjavog pražnjenja u argonu na pritisku i medjuelektrodnom rastojanjupri razlicitim vrednostima primenjenih napona i radnih struja tinjavog pražnjenja. Po prvi put je modelovano tinjavo pražnjenje u argonu dvodimenzionim fluidnim modelom sa nelokalnom jonizacijom. U radu je data detaljna procedura za 2D fluidni model. Osim toga, izracunate su i uporedjene 2D raspodele koncentracija cestica i elektricnog potencijala dobijenih pomocu fluidnog modela sa nelokalnom jonizacijom i jednostavnog fluidnog modela. HIGHLIGHTS The modeling of DC glow discharge in argon was performed for different voltages and glow currents; Glow discharge was modeled using the two-dimensional (2D) simple fluid model and the fluid model with non-local ionization; A detailed numerical procedure for 2D fluid modeling is given; 2D profiles of the particle number densities and the electric potential obtained from the fluid model with non-local ionization and the simple fluid model are presented and compared.