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Effects of External Radiation Heat Flux on Combustion Characteristics of Pure and Oil-Impregnated Transformer Insulating Paperboard

机译:外部辐射热通量对纯油浸油绝缘纸板燃烧特性的影响

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摘要

The effects of external radiation heat flux on the combustion characteristics of pure transformer insulating paperboard (PTIP) and oil-impregnated transformer insulating paperboard (OITIP) were investigated experimentally. The experiments were conducted with the cone calorimeter using five external radiation heat fluxes that ranged from 25 to 80 kW/m~2. The results showed that the ignition time decreased with the external radiation heat flux, and the ignition time of PTIP was much longer than that of OITIP. Both the PTIP and OITIP are thermal thick materials, and the critical radiation heat flux of the PTIP was larger than that of the OITIP. For the PTIP, the peak of the heat release rate (HRR) and toxic gas productions had no significant difference, while those of the OITIP increased with the external radiation heat flux. The HRR peak of the PTIP was larger than that of the OITIP with the external radiation heat fluxes of 25, 35, 50, and 65 kW/m~2. When the radiation heat flux increased to 80 kW/m~2, the HRR peak of the OITIP became higher. From the perspective of the CO production rate, the hazard of PTIP fires was more severe than that of OITIP fires under the external radiation heat fluxes of 25 and 35 kW/m~2. The CO production rate of the PHP was lower than that of the OITP with the high external radiation heat fluxes of 50, 65 and 80 kW/m~2.
机译:实验研究了外部辐射热通量对纯变压器绝缘纸板(PTIP)和浸油变压器绝缘纸板(OITIP)燃烧特性的影响。使用锥形量热仪进行了实验,使用了五个外部辐射热通量,范围从25到80 kW / m〜2。结果表明,点火时间随外部辐射热通量的增加而减小,PTIP的点火时间比OITIP的点火时间长。 PTIP和OITIP都是热厚材料,并且PTIP的临界辐射热通量大于OITIP的临界辐射热通量。对于PTIP,放热率(HRR)和有毒气体产生的峰值没有显着差异,而OITIP的峰值随外部辐射热通量增加。在25、35、50和65 kW / m〜2的外部辐射热通量下,PTIP的HRR峰值大于OITIP的HRR峰值。当辐射热通量增加到80 kW / m〜2时,OITIP的HRR峰值变高。从CO的产生量来看,在25和35 kW / m〜2的外部辐射热通量下,PTIP火灾的危害比OITIP火灾的危害更为严重。在外部辐射热通量分别为50、65和80 kW / m〜2的情况下,PHP的CO生产率低于OITP的CO生产率。

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  • 来源
    《Process safety progress》 |2018年第3期|362-368|共7页
  • 作者单位

    State Grid Anhui Electric Power Research Institute, Ziyun Road 299, Hefei 230601, China,State Grid Laboratory of Fire Protection for Transmission and Distribution Facilities, Jinzhai Road 73, Hefei 230022, China,Anhui Province Key Laboratory of Electric Fire and Safety Protection, Jinzhai Road 73, Hefei 230022, China;

    China University of Labor Relations, Zengguang Road 45, Beijing 100048, China;

    State Grid Anhui Electric Power Research Institute, Ziyun Road 299, Hefei 230601, China,State Grid Laboratory of Fire Protection for Transmission and Distribution Facilities, Jinzhai Road 73, Hefei 230022, China,Anhui Province Key Laboratory of Electric Fire and Safety Protection, Jinzhai Road 73, Hefei 230022, China;

    State Grid Anhui Electric Power Research Institute, Ziyun Road 299, Hefei 230601, China,State Grid Laboratory of Fire Protection for Transmission and Distribution Facilities, Jinzhai Road 73, Hefei 230022, China,Anhui Province Key Laboratory of Electric Fire and Safety Protection, Jinzhai Road 73, Hefei 230022, China;

    State Grid Anhui Electric Power Research Institute, Ziyun Road 299, Hefei 230601, China;

    State Grid Anhui Electric Power Research Institute, Ziyun Road 299, Hefei 230601, China;

    State Grid Anhui Electric Power Research Institute, Ziyun Road 299, Hefei 230601, China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    combustion characteristics; transformer insulating paperboard; oil-impregnated; external radiation heat flux;

    机译:燃烧特性变压器绝缘纸板;油浸的;外部辐射热通量;

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