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发电厂电除尘高频电源控制器误发IGBT温度高跳闸分析 被引量:2
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作者 雷跃生 《电工技术》 2021年第4期81-82,共2页
介绍了发电厂电除尘高频电源控制器在运行中频繁误发IGBT温度高跳闸的问题,阐述了IGBT温度测量原理,提出了控制器误发IGBT温度高跳闸的具体解决思路和改进方法,并进行了效益分析。
关键词 发电厂电除尘 高频电源控制器 IGBT温度高
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Fly Ash Resistivity Profiling for South African Coal Fired Power Stations
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作者 Gerald Chauke Rupert Gouws 《Journal of Energy and Power Engineering》 2013年第12期2306-2311,共6页
Particulate emission is a major problem in industrial processes, mainly power plants that make use of coal as a primary source of energy. Stringent emissions limits, set by government organisations requires industries... Particulate emission is a major problem in industrial processes, mainly power plants that make use of coal as a primary source of energy. Stringent emissions limits, set by government organisations requires industries to conform to these limits to ensure that air quality is sustained and with minimum pollutant present. Electrostatic precipitators are typically used to filter and collect these particulate emissions. Fly ash resistivity is a primary parameter in the collection of particulate emissions, and there is a resistivity range at which electrostatic precipitator collection is most efficient and anything outside this range limits, their operation. High resistivity ash results in back-corona discharge, whilst low resistivity results in particle re-entrainment into the flue gas stream. The purpose of this paper is to investigate and obtain a fly ash resistivity profile for existing power plants in South Africa. Ash samples obtained from power plants are, tested making use of an ash-resistivity test oven, in accordance with IEEE Standard 548-1984. This paper discusses obtained experimental results, to determine the resistivity profile at which South African power plant electrostatic precipitators operate. The electrical efficiency of the electrostatic precipitator system is evaluated based on the obtained resistivity profiles. 展开更多
关键词 Electrostatic precipitator fly ash RESISTIVITY back-corona re-entrainment.
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