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Study on the Mathematical Model of Dielectric Recovery Characteristics in High Voltage SF6 Circuit Breaker 被引量:13

Study on the Mathematical Model of Dielectric Recovery Characteristics in High Voltage SF_6 Circuit Breaker
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摘要 According to the stream theory, this paper proposes a mathematical model of the dielectric recovery characteristic based on the two-temperature ionization equilibrium equation. Taking the dynamic variation of charged particle's ionization and attachment into account, this model can be used in collaboration with the Coulomb collision model, which gives the relationship of the heavy particle temperature and electron temperature to calculate the electron density and temperature under different pressure and electric field conditions, so as to deliver the breakdown electric field strength under different pressure conditions. Meanwhile an experiment loop of the circuit breaker has been built to measure the breakdown voltage. It is shown that calculated results are in conformity with experiment results on the whole while results based on the stream criterion are larger than experiment results. This indicates that the mathematical model proposed here is more accurate for calculating the dielectric recovery characteristic, it is derived from the stream model with some improvement and refinement and has great significance for increasing the simulation accuracy of circuit breaker's interruption characteristic. According to the stream theory, this paper proposes a mathematical model of the dielectric recovery characteristic based on the two-temperature ionization equilibrium equation. Taking the dynamic variation of charged particle's ionization and attachment into account, this model can be used in collaboration with the Coulomb collision model, which gives the relationship of the heavy particle temperature and electron temperature to calculate the electron density and temperature under different pressure and electric field conditions, so as to deliver the breakdown electric field strength under different pressure conditions. Meanwhile an experiment loop of the circuit breaker has been built to measure the breakdown voltage. It is shown that calculated results are in conformity with experiment results on the whole while results based on the stream criterion are larger than experiment results. This indicates that the mathematical model proposed here is more accurate for calculating the dielectric recovery characteristic, it is derived from the stream model with some improvement and refinement and has great significance for increasing the simulation accuracy of circuit breaker's interruption characteristic.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第3期223-229,共7页 等离子体科学和技术(英文版)
基金 supported by Science and Technology Project of State Grid Corporation of China(No.GY17201200063) National Natural Science Foundation of China(No.51277123) Basic Research Project of Liaoning Key Laboratory of Education Department(LZ2015055)
关键词 SF6 high voltage circuit breaker dielectric recovery characteristic the break-down voltage experiment of dynamic breakdown Saha ionization equilibrium SF6, high voltage circuit breaker, dielectric recovery characteristic, the break-down voltage, experiment of dynamic breakdown, Saha ionization equilibrium
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参考文献14

  • 1Lin Xin. 2011, The Modern High Voltage Electrical Technology. Mechanical Industry Press, Beijing (in Chi- nese).
  • 2Zhang Q, Yan J D, Fang M T C. 2014, Journal of Physics D: Applied Physics, 47:215201.
  • 3Rong Mingzhe, Yang Qia~, Fan Chunduo. 2004, Pro- ceedings of the CSEE, 2:017 (in Chinese).
  • 4Zhang Junmin. 2004, Proceedings of the CSEE, 7:037 (in Chinese).
  • 5Zhu Kai, Li Xingwen, Zhao Hu. 2014, Proceedings of the CSEE, 34:3512 (in Chinese).
  • 6Zhong Jianying, Lin Xin, He Rongtao. 2006, Proceed- ings of the CSEE, 26:154 (in Chinese).
  • 7Wu Y, Wang W, Rong M, et al. 2014, Dielectrics and Electrical Insulation, 21:129.
  • 8Sun H, Rong M, Wu Y, et al. 2015, Journal of Physics D: Applied Physics, 48:055201.
  • 9Wang Feiming, Lin Xin, Xu Jianyuan. 2014, High Volt- age Engineering, 40:3073 (in Chinese).
  • 10Lin Xin, Li Xintao, Wang Feiming, et al. 2014, High Voltage Engineering, 40:3125 (in Chinese).

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