An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.

The characteristics of a series direct current (DC) arc-fault including both electrical and thermal parameters were investigated based on an arc-fault simulator to provide references for multi-parameter electrical fire detection method. Tests on arc fault behavior with three different initial circui...

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Main Authors: Jian-Hua Du, Ran Tu, Yi Zeng, Leng Pan, Ren-Cheng Zhang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5552353?pdf=render
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spelling doaj-f405578f86264c45bc48a9ad0d65f8ae2020-11-25T01:49:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01128e018281110.1371/journal.pone.0182811An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.Jian-Hua DuRan TuYi ZengLeng PanRen-Cheng ZhangThe characteristics of a series direct current (DC) arc-fault including both electrical and thermal parameters were investigated based on an arc-fault simulator to provide references for multi-parameter electrical fire detection method. Tests on arc fault behavior with three different initial circuit voltages, resistances and arc gaps were conducted, respectively. The influences of circuit conditions on arc dynamic image, voltage, current or power were interpreted. Also, the temperature rises of electrode surface and ambient air were studied. The results showed that, first, significant variations of arc structure and light emitting were observed under different conditions. A thin outer burning layer of vapor generated from electrodes with orange light was found due to the extremely high arc temperature. Second, with the increasing electrode gap in discharging, the arc power was shown to have a non monotonic relationship with arc length for constant initial circuit voltage and resistance. Finally, the temperature rises of electrode surface caused by heat transfer from arc were found to be not sensitive with increasing arc length due to special heat transfer mechanism. In addition, temperature of ambient air showed a large gradient in radial direction of arc.http://europepmc.org/articles/PMC5552353?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jian-Hua Du
Ran Tu
Yi Zeng
Leng Pan
Ren-Cheng Zhang
spellingShingle Jian-Hua Du
Ran Tu
Yi Zeng
Leng Pan
Ren-Cheng Zhang
An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.
PLoS ONE
author_facet Jian-Hua Du
Ran Tu
Yi Zeng
Leng Pan
Ren-Cheng Zhang
author_sort Jian-Hua Du
title An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.
title_short An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.
title_full An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.
title_fullStr An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.
title_full_unstemmed An experimental study on the thermal characteristics and heating effect of arc-fault from Cu core in residential electrical wiring fires.
title_sort experimental study on the thermal characteristics and heating effect of arc-fault from cu core in residential electrical wiring fires.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description The characteristics of a series direct current (DC) arc-fault including both electrical and thermal parameters were investigated based on an arc-fault simulator to provide references for multi-parameter electrical fire detection method. Tests on arc fault behavior with three different initial circuit voltages, resistances and arc gaps were conducted, respectively. The influences of circuit conditions on arc dynamic image, voltage, current or power were interpreted. Also, the temperature rises of electrode surface and ambient air were studied. The results showed that, first, significant variations of arc structure and light emitting were observed under different conditions. A thin outer burning layer of vapor generated from electrodes with orange light was found due to the extremely high arc temperature. Second, with the increasing electrode gap in discharging, the arc power was shown to have a non monotonic relationship with arc length for constant initial circuit voltage and resistance. Finally, the temperature rises of electrode surface caused by heat transfer from arc were found to be not sensitive with increasing arc length due to special heat transfer mechanism. In addition, temperature of ambient air showed a large gradient in radial direction of arc.
url http://europepmc.org/articles/PMC5552353?pdf=render
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