
Во введении отражена актуальноÑть задачи и опиÑаны оÑновные цели работы. Ð’ первой главе проведен обзор ÑущеÑтвующих моделей разрÑдников. Ð’Ñ‚Ð¾Ñ€Ð°Ñ Ð³Ð»Ð°Ð²Ð° поÑвÑщена оценочным ÑкÑпериментальным иÑÑледованиÑм, а также моделированию иÑпытательного Ñтенда в Ñреде MATLAB Simulink. Ð’ третьей главе приведены результаты Ð¼Ð¾Ð´ÐµÐ»Ð¸Ñ€Ð¾Ð²Ð°Ð½Ð¸Ñ Ð¿Ñ€Ð¾Ñ†ÐµÑÑа Ð´ÑƒÐ³Ð¾Ð³Ð°ÑˆÐµÐ½Ð¸Ñ Ð² разрÑдной камере мультикамерного разрÑдника в программе Ansys Fluent. Ð§ÐµÑ‚Ð²ÐµÑ€Ñ‚Ð°Ñ Ð³Ð»Ð°Ð²Ð° поÑвÑщена безопаÑноÑти при работе на опорах воздушных линий. Ð’ пÑтой главе приведено технико-ÑкономичеÑкое обоÑнование целеÑообразноÑти разработки мультикамерного разрÑдника. Заключение включает оÑновные выводы по работе.
The introduction reflects the urgency of the problem and describes the main purpose of the work. The first chapter introduces a review of existing arresters models. The second chapter is devoted to the evaluation experimental studies, as well as the simulation of the testing stand's work in MATLAB Simulink. The third chapter presents the results of the modeling of the arc quenching process in the discharge chamber of multi-chamber arrester in the Ansys Fluent application. The fourth chapter is devoted to the safety when working on overhead line supports. The fifth chapter provides us with the calculations of the economic benefits of developing multi-chamber arrester. Conclusion contains the main conclusions of the work.
РазÑÑдники, гаÑение ÑопÑовождаÑÑего Ñока, мÑлÑÑикамеÑнÑй ÑазÑÑдник, мÑлÑÑикамеÑÐ½Ð°Ñ ÑиÑÑема, гаÑение импÑлÑÑа гÑозового пеÑенапÑÑжениÑ, quenching of the follow current, quenching of the overvoltage impulse, multi-chamber system, multi-chamber arrester
РазÑÑдники, гаÑение ÑопÑовождаÑÑего Ñока, мÑлÑÑикамеÑнÑй ÑазÑÑдник, мÑлÑÑикамеÑÐ½Ð°Ñ ÑиÑÑема, гаÑение импÑлÑÑа гÑозового пеÑенапÑÑжениÑ, quenching of the follow current, quenching of the overvoltage impulse, multi-chamber system, multi-chamber arrester
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