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A model for calculating the temperature of aluminium particles ejected from overhead low-voltage lines owing to a short-circuit

机译:用于计算由于短路而从架空低压线路中喷出的铝颗粒温度的模型

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摘要

Wildfires, which are uncontrolled fires spreading readily over vast areas, are usually the result of human negligence, arson or lightning. There are cases of fires close to electrical distribution lines for which the network has been blamed. In the present paper, the risk of a wildfire breaking out owing to the temperature of molten metal particles that are possibly created on bare conductors of low-voltage networks in short-circuit faults (unless they are interrupted by the protection systems) is examined. Thus, a mathematical model is proposed for the estimated temperature rise of those molten metal particles ejected from bare conductors of low-voltage overhead lines. Moreover, this model can be applied to medium- or high-voltage networks. The model takes into account the weather conditions and particles' height above the ground. Further, an arithmetic example for an incandescent particle ejected from aluminium conductors of a low-voltage network is given. According to this example, there is no risk of dead leaves or wood catching fire owing to this particle.
机译:野火通常是人为疏忽,纵火或闪电造成的,是不受控制的大火,容易散布在广大地区。在网络被指责的配电线路附近发生火灾的情况。在本文中,研究了由于短路故障(除非它们被保护系统中断)而可能在低压网络的裸露导体上产生的熔融金属颗粒的温度而导致发生野火的风险。因此,提出了一个数学模型,用于估算从低压架空线的裸露导体喷出的那些熔融金属颗粒的温度升高。而且,该模型可以应用于中压或高压网络。该模型考虑了天气条件和地面上的粒子高度。此外,给出了从低压网络的铝导体喷射的白炽粒子的算术示例。根据该示例,由于该颗粒,没有枯叶或木头着火的风险。

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