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An analysis of thermally induced arcing failure of electrical cables.

机译:电缆的热致电弧放电故障分析。

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摘要

Arc failure of Southwire Romex Simpull non-metallic sheathed 14/2 American wire gauge (AWG) with ground cable due to external heat was examined. This type of cable was selected due to its widespread use in residential building wiring. This research is motivated by the fact that currently there are no widely accepted methods or models used to predict electric arc failure in cables exposed to thermal conditions or to determine whether an arc failure event was the cause or result of a fire. A variety of tests were performed at various temperatures to learn more about the arc failure of these cables. The cables were exposed to precise temperatures with a steady heating rate in a convection oven in order to best attempt to eliminate heat transfer through the cable. In order to explore the effect current may have on the time to arc failure of the cable, experiments at different temperatures were performed in both loaded and unloaded scenarios. During many of these tests, voltage and current measurements were collected during an arcing event. As part of the process of exploring the events leading up to arc failure, electrical resistance tests of the cable's insulation components were examined. A model was developed to predict time to arc failure at a variety of temperatures based on thermal degradation of the PVC insulation. The purpose of the developed model is to be able to predict cable failure based on known thermal conditions. The proposed values of the model developed are in examining a prior thermally induced electrical arcing incident or in determining the suitability of a cable in an abnormal thermal environment. The results of this research will be useful in continuing the research and education of the arc failure of electrical cables.
机译:研究了带有外部电缆的Southwire Romex Simpull非金属护套14/2美国线规(AWG)带有接地电缆的电弧故障,该电弧是由于外部热量引起的。选择该类型的电缆是因为其在住宅建筑布线中的广泛使用。这项研究的动机是,目前还没有广泛使用的方法或模型来预测暴露在热条件下的电缆中的电弧故障或确定电弧故障事件是起火还是起火。在不同温度下进行了各种测试,以了解有关这些电缆的电弧故障的更多信息。电缆在对流烘箱中以稳定的加热速率暴露于精确的温度下,以最好地消除通过电缆的热传递。为了探究电流对电缆电弧故障时间的影响,在有载和无载情况下都进行了不同温度下的实验。在许多此类测试中,在电弧放电事件期间收集了电压和电流测量值。在探索导致电弧故障的事件的过程的一部分,检查了电缆绝缘组件的电阻测试。基于PVC绝缘材料的热降解,开发了一个模型来预测在各种温度下的电弧故障时间。开发模型的目的是能够根据已知的热状况预测电缆故障。开发的模型的建议值用于检查先前的热感应电弧事件或确定电缆在异常热环境中的适用性。这项研究的结果将有助于继续研究和教育电缆的电弧故障。

著录项

  • 作者

    Fisher, Ryan.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering.;Electrical engineering.
  • 学位 M.S.
  • 年度 2013
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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