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Influence of DC Electric Fields on Pollution of HVDC Composite Insulator Short Samples with Different Environmental Parameters

机译:DC电场对不同环境参数HVDC复合绝缘子短样品污染的影响

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摘要

Pollution-induced flashover is a serious threat to the safe operation of power systems. With the development of High Voltage Direct Current (HVDC), it is necessary to study insulator contamination in DC electric fields. In this paper, the energized wind tunnel contamination test was conducted in order to systematically study the pollution ratio, k (ratio of non-soluble deposit density (NSDD) of a DC-energized condition to a non-energized condition), under different environmental parameters. Later, a two-dimensional contamination model of short samples of an HVDC composite insulator was established. The particle motion characteristics under different environmental parameters were then analyzed by the finite element method (FEM). The research results showed that—the DC electric field had an influence on particle motion but in different environments, the degree of influence was different. In addition, k was found to largely vary, with a variation in the environmental parameters. When the electrical stress (Es) increased from 0 to 70 kV/m, k increased gradually. However, when the wind speed (ws) increased, k experienced a decreasing trend. Finally, as the particle diameter (dp) decreased, k increased at first, followed by a decrease, and then again showed an increase. The results of the pollution ratio, k, for different environmental parameters are of great importance for guiding anti-pollution work in power systems.
机译:污染诱导的闪络是对电力系统安全运行的严重威胁。随着高压直流(HVDC)的发展,有必要研究直流电场中的绝缘体污染。在本文中,进行了激励风隧道污染测试,以便系统地研究污染率K(非可溶性沉积物(NSDD)与非激励条件的非可溶性沉积密度(NSDD)的比率),在不同的环境下参数。后来,建立了HVDC复合绝缘体的短样品的二维污染模型。然后通过有限元法(FEM)分析不同环境参数下的颗粒运动特性。研究结果表明,直流电场对粒子运动有影响,而是在不同的环境中,影响程度不同。此外,k被发现在很大程度上变化,具有环境参数的变化。当电应力从0从0增加到70kV / m时,K逐渐增加。然而,当风速(WS)增加时,K经历了降低趋势。最后,随着粒径(DP)降低,k首先增加,然后减少,然后再次显示出增加。不同环境参数的污染率K的结果对于引导电力系统中的防污性工作非常重要。

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