Osmokrović, Predrag, Cvetić, Jovan, Vasić-Milovanović, Aleksandra, Vujisić, Miloš, Stanković, Koviljka, Brajović, Dragan V., Osmokrović, Predrag, Cvetić, Jovan, Vasić-Milovanović, Aleksandra, Vujisić, Miloš, Stanković, Koviljka, and Brajović, Dragan V.
Electrical Engineering / Materials in Electrical Engineering, Nuclear Engineering, Cilj rada je da se poprave karakteristike gasnih odvodnika prenapona na niskonaponskom nivou istraživanjem kroz eksperimente koji se vrše na modelu gasnog odvodnika prenapona, kao i na komercijalnim gasnim odvodnicima u dobro kontrolisanim laboratorijskim uslovima. U uvodnim poglavljima rada navode se osnove električnog pražnjenja u gasovima, daju osnovne klasifikacije prenapona, propratnih efekata i prenaponske zaštite. Opisuju se gasni odvodnici prenapona i njihovo funkcionisanje koje se zasniva na električnom proboju gasova. Polazeći od poznatih efekata električnog pražnjenja u gasovima, jonskog izbijanja, fotoelektričnog efekta, memorijskog efekta, hladne i tople emisije i efekta jonizujućeg zračenja u gasovima, ispituju se uslovi koji obezbeđuje pouzdan rad gasnih odvodnika prenapona za koordinaciju izolacije na niskonaponskom nivou u uslovima opterećenja impulsnim naponima proizvoljnog oblika. Rad je teoretskog, eksperimentalnog i numeričkog karaktera. U radu se proverava mogućnost primene kinetičke teorije gasova na gas slobodnih elektrona kao komponentu smeše gasa unutar kojeg je nastao usled dejstva sekundarnog kosmičkog zračenja i sudarnih procesa atoma gasa sa desnog kraja Maksvelovog spektra pri niskim pritiscima. Na bazi ove analize izvode se novi izrazi za jonizacione koeficijente izražene preko ekvivalentne probojne temperature Maksvelovog spektra gasa slobodnih elektrona. To omogućava sagledavanje elementarnih procesa pražnjenja u gasovima, a sve u cilju ostvarenja krajnjeg cilja koji se sastoji u tome da se uz zadržavanje svih dobrih osobina gasnih odvodnika prenapona poprave njegove karakteristike. Na osnovu teoretskih razmatranja izvedeni su izrazi zavisnosti probojnog napona od pd (proizvod pritiska i medjuelektrodnog rastojanja) kao i zavisnost probojnog napona od probojne temperature Maksvelovog spektra gasa slobodnih elektrona. Prethodno navedena teoretska razmatranja su eksperimentalno proverena pod dobro kontrolisanim laboratorijskim uslovim, The purpose of this paper is to improve the characteristics of overvoltage gass arresters on a low-voltage level, through experiments which were done on a model of overvoltage gass arresters in well controlled laboratory conditions. In the first chapters of the paper, the bases of electrical discharge in gasses are given, the basic classification of overvoltage, overvoltage effects and safety issues are given as well. We have described overvoltage gass arresters and their functioning which is based on electrical gass breakage. We have also discussed the known effects of electrical discharge in gasses, ionian outbreak, photoelectric effect, memory effect, cold and warm emissions and effects of Ionic emissions in gasses, and we have examined the conditions which provide reliable operating of overvoltage gass arresters for coordination of isolation on a low-voltage level, in the conditions of a load by impuls voltage, of an arbitary shape. The paper is of a theoretical, experimental and numerical character. It examines a possibility of application of kinetic gass theory onto the gass of free electrones as a component of a gass mixture within which it was created, as a result of the effect of the secondary cosmic emission and collision processes of gass atoms from the right end of the Makswel spectrum, upon low pressure. Based on the results of this analysis, we have given new expressions for Ionic coefficients, expressed by equivalent breakdown temperature of the Makswel spectrum of the gass of the free electrones. That allows insight into elementary processes in gass discharge, in the purpose of reaching the final goal – to improve the characteristcs of gass arresters while keeping their positive traits. Based on theoretical discussions, we have given expressions of dependance on breakdown voltage of pd (product of pressure and inter-electrode distance), as well as the dependance of overvoltage power on breakdown temparature of the Makswel spectrum of the gass of the