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

机译:住宅电线火灾中铜芯电弧故障的热特性和热效应的实验研究

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摘要

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.
机译:基于电弧故障模拟器,研究了包括电参数和热参数在内的一系列直流电弧故障的特性,为多参数电火灾探测方法提供参考。分别使用三种不同的初始电路电压,电阻和电弧间隙对电弧故障行为进行了测试。解释了电路条件对电弧动态图像,电压,电流或功率的影响。另外,研究了电极表面和环境空气的温度上升。结果表明,首先,在不同条件下观察到电弧结构和发光的显着变化。由于极高的电弧温度,发现由橙色光电极产生的薄薄的外层燃烧蒸气。第二,随着放电中电极间隙的增加,对于恒定的初始电路电压和电阻,显示出电弧功率与电弧长度具有非单调关系。最后,由于特殊的传热机制,发现由于电弧传热引起的电极表面温度升高对电弧长度的增加不敏感。另外,环境空气的温度在电弧的径向上显示出大的梯度。

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