论文标题
发射光谱的迭代分析中断路器实验中的电弧温度
Arc temperatures in a circuit breaker experiment from iterative analysis of emission spectra
论文作者
论文摘要
在模型室中模拟了与真正的高压自生电通路器中非常相似的关闭过程,以通过光发射光谱研究研究弧的性能。该电弧在一个由PTFE喷嘴包含的针脉冲触点系统之间装满SF $ _6 $的腔室中操作。腔室墙中的透明窗户和喷嘴中的缝隙可以在电流零之前对弧形横截面进行光学研究。通过成像光谱系统测量了氟原子线的侧面辐射。考虑到弧的旋转对称性,相应的径向发射系数已通过ABEL反转确定。径向温度曲线是根据发射系数(包括压力测量和相应的等离子体组成)计算得出的。与以前的研究相反,提出了一种特定的迭代方法来考虑血浆的光厚度。已经观察到了0.2和0.4之间的最大光厚度。校正吸收效应的温度曲线显示,弧轴的最高温度升高,电流降低到电流零。讨论了血浆组成对绝对弧温度的影响。温度曲线可用于验证模型室中切换过程的CFD模拟。
A switching-off process very similar to those in real high-voltage self-blast circuit-breakers is emulated in a model chamber to study the arc properties by optical emission spectroscopy. The arc is operated in a chamber filled with SF$_6$ between a pin-tulip contact system enclosed by a PTFE nozzle. Transparent windows in the chamber wall and a slit in the nozzle enable an optical investigation of the arc cross section less than one millisecond before current zero. The side-on radiance of a fluorine atom lines has been measured with an imaging spectroscopic system. Considering rotational symmetry of the arc the corresponding radial emission coefficients have been determined by Abel inversion. The radial temperature profiles are calculated from the emission coefficients including pressure measurements and the corresponding plasma composition. In contrast to previous studies, a specific iterative approach is proposed to consider the optical thickness of the plasma. A maximum optical thickness between 0.2 and 0.4 has been observed. Temperature profiles corrected for absorption effects show increasing maximum temperature in the arc axis with decreasing current towards current zero. The effect of the plasma composition on absolute arc temperatures is discussed. The temperature profiles can be used to validate CFD simulations of the switching-off process in the model chamber.