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Simulation of arcs for DC relay considering different impacts 被引量:2

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摘要 Recently DC relay has been concerned as a key component in DC power distribution,management and control systems like aircraft,new energy vehicle,IT and communication industries.Ordinarily,magnetic force and contact moving speed have great influence on arc behaviours in the breaking process.This paper focuses on the numerical investigation of arc during the contact opening process in a real 400V/20 A DC relay product coupling with an inductive load circuit.A 3D air arc model based on the magneto-hydrodynamic theory was built and calculated.A method coupling different computational software was used to take the nonlinear permanent magnet and contact opening process into consideration simultaneously.Arc behaviours under different magnetic field and contact opening speed were presented and discussed carefully.It has been found that the increase of the magnetic field is beneficial to the quick build-up of arc length and voltage.Arc breaking duration becomes shorter with the increase in contact opening speed from 63.5 rad s^-1 to 94.5 rad s^-1,such reduction is less significant with an increase of opening speed from 94.5 rad s^-l to 118.5 rad s^-1.
作者 黄珂瑶 孙昊 纽春萍 吴翔 荣命哲 闫广超 黄广明 Keyao HUANG;Hao SUN;Chunping NIU;Yi WU;Mingzhe RONG;Guangchao YAN;Guangmin HUANG
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第2期19-28,共10页 等离子体科学和技术(英文版)
基金 National Natural Science Foundation of China(Nos.51707144,51877165 , 51577144) Shaanxi Province Key R&D Program under 2019ZDLGY18-05 This manuscript is recommended by international symposium on insulation and discharge com­putation for power equipment IDCOMFU2019.
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