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气吹作用对CO2, CO2/C4-PFN, CO2/C5-PFK混合气体燃弧特性的影响

Translated title of the contribution: Effects of Air-blowing on the Arcing Characteristics of CO2 and CO2/C4-PFN, CO2/C5-PFK Mixtures
  • China Southern Power Grid
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

CO2 and its mixtures have already considered as potential substitutes for SF6, so it is interesting to investigate their arcing characteristics used for new type circuit breakers. In this paper, an experimental device for simulating the arcing process of direct action type and puffer type high-voltage load switches was designed. An experimental platform for multi-parameter comprehensive measurement was built. The experimental research was carried out on the arcing characteristics of CO2 and its mixtures with C4-PFN or C5-PFK, with stretching arc as well as nozzle-limited stretching arc under gas flow. The arc voltage, arc current, and current zero characteristics near the current zero were measured. Moreover, the Mayr arc model was applied to compare the post-arc breakdown characteristics of CO2 and its mixed gas with C4-PFN or C5-PFK under different arcing modes. It is found that the air blowing effect has a strong promotion effect on the energy dissipation of arc during the small current period. In the arcing experiment, the thermal interruption capability of CO2 gas is about 50% of SF6. The thermal interruption capability of C5-PFK-CO2 mixed gas is about 75% of SF6, and the C4-PFN-CO2 mixed gas has almost equal thermal interruption capability to SF6. In the air-blowing arc experiment, the thermal interruption capability of CO2, C5-PFK-CO2 and C4-PFN-CO2 mixed gas was about 45%, 68% and 91% of SF6, respectively.

Translated title of the contributionEffects of Air-blowing on the Arcing Characteristics of CO2 and CO2/C4-PFN, CO2/C5-PFK Mixtures
Original languageChinese (Traditional)
Pages (from-to)338-345
Number of pages8
JournalGaodianya Jishu/High Voltage Engineering
Volume47
Issue number1
DOIs
StatePublished - 31 Jan 2021

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