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Stability Predictions of Zinc Oxide Surge Arrester by Employing Finite Element Solutions

机译:采用有限元溶液氧化锌电涌避雷器的稳定性预测

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A well-designed metal oxide (ZnO, zinc oxide) surge arrester offers a desired nonlinear characteristic to ground the surges and overvoltages at the safest level. Although a revolutionary work has been carried out in material research, the apparatus still suffers from a few limitations e.g., nonidentical ZnO block characteristics and its nonuniform thermal and structural behaviour. It becomes imperative to test device prototype for their electrical, mechanical and thermal performances. The cost for actual testing is huge and varies with the rating of the surge arrester. The software-based technique offers near actual behaviour assessment / functional visualization of the lightning arrester prior to prototype making and saves on costly testing set-up and charges. In this paper, the metal oxide arrester has been modelled and analysed using finite element (FE) technique. Standard tests for surge arresters have been simulated with various configurations and these are analysed in the electrical and mechanical domain. The results and analysis of these simulated tests under normal and transient conditions are presented and discussed.
机译:设计精心设计的金属氧化物(ZnO,氧化锌)电涌避雷器提供所需的非线性特性,以在最安全的水平下接地浪涌和过电压。虽然在材料研究中进行了革命性的工作,但该装置仍然存在几个限制,仍然存在几个限制,但是非型ZnO块特性及其不均匀的热和结构行为。为其电气,机械和热性能进行测试设备原型是必不可少的。实际测试的成本巨大,随着电涌避雷器的评级而变化。基于软件的技术在原型制造之前提供雷电避雷器的实际行为评估/功能可视化附近的实际行为评估/功能可视化,并节省了昂贵的测试设置和收费。在本文中,使用有限元(Fe)技术进行了建模和分析了金属氧化物避雷器。已经用各种配置模拟了浪涌避雷器的标准测试,并且在电气和机械域中分析了这些结构。提出和讨论了在正常和瞬态条件下这些模拟试验的结果和分析。

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