Anode hotspot temperature estimation in vacuum gaps under 50 Hz alternating excitations

T. Balachandra, G. Nagabhushana
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引用次数: 10

Abstract

Anode hotspot temperatures for vacuum gaps subjected to 50-Hz AC excitations are computed. The transient heat diffusion equation is solved using a finite difference method. The effects of nonlinear variation of thermal properties with temperature and phase change are studied using the ANSYS 4.4 finite element package. The peak temperatures are estimated by a seminumerical method. The results of a parametric study of the effects of electrode material, field intensification factor, and radius of the spot are presented. The results for stainless steel, copper, and aluminum anodes indicate that the temperature of hot spots can reach the melting point, so they are the main sources of microparticles. The asymmetry of the prebreakdown current waveform about its own peak, which is caused by thermal instability at the anode, is attributed to the nonlinear variation of thermal properties with temperature. The methods discussed can be used to estimate the size of microparticles originating from thermally unstable regions at the anode. >
50 Hz交变激励下真空间隙中阳极热点温度的估计
计算了真空间隙在50hz交流激励下的阳极热点温度。用有限差分法求解了瞬态热扩散方程。利用ANSYS 4.4有限元软件包研究了热性能随温度和相变的非线性变化的影响。用半数值方法估计了峰值温度。给出了电极材料、场强化系数和光斑半径对光斑结构影响的参数化研究结果。不锈钢、铜和铝阳极的结果表明,热点温度可以达到熔点,因此它们是微粒的主要来源。预击穿电流波形在自身峰值附近的不对称性是由于阳极的热不稳定性引起的,这归因于热性能随温度的非线性变化。所讨论的方法可用于估计来自阳极热不稳定区域的微粒的大小。>
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