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Mathematical Model of Electric Arc Column Taking into Account the Thermodynamic Processes in the Current-Carrying Parts of Damaged Equipment

机译:电弧柱的数学模型考虑了损坏设备电流携带部件的热力学过程

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The report considered the model of the electrical network using the refined models of the transition resistance of the electric arc, taking into account its nonlinear nature and other physical characteristics of the arc burning in a limited space installations. Calculates the volt-ampere characteristics of the electric arc column length of 2 cm between the graphite electrodes connected to a power source voltage of 220 V and an internal resistance of 13 Ohms. The calculation results of current-voltage characteristics very close to the experimental one. Account the live parts of the damaged equipment in the proposed model can reflect the process of ?accumulation? of heat energy in these elements, which increases the inertia of the combustion process of the electric arc column, and smooths the calculated current-voltage characteristics. Recording data for processes important in the simulation of short arcs. Based on the analysis of the experimental and calculated waveforms can be concluded about the applicability of the proposed mathematical model and possibilities of its application in the calculations of the modes arc short circuits for the needs of relay protection.
机译:该报告考虑了电网的模型,使用电弧的过渡电阻的精细模型,考虑到其非线性性质和其他在有限空间安装中燃烧的电弧的其他物理特性。计算连接到220V的电源电压的石墨电极之间的电弧柱长度为2cm的电压柱长度和13欧姆的内部电阻。电流电压特性的计算结果非常接近实验性。账户拟议模型中损坏设备的实时部分可以反映?累积的过程?在这些元件中的热能增加,这增加了电弧柱的燃烧过程的惯性,并平滑计算的电流 - 电压特性。记录用于仿真短弧的过程的数据。基于实验和计算的波形的分析,可以得出关于所提出的数学模型的适用性以及其应用中的应用在模式的计算中的应用,以实现继电器保护的需要。

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