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A Comparison of Numerical Methods for Modeling Overpressure Effects from Low Impedance Faults in Power Transformers

机译:功率变压器低阻抗断层模拟超压效应的数值方法的比较

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Low-impedance faults in power equipment may lead to catastrophic tank ruptures, resulting in fires, oil spills and projection of parts, as well as economic losses. Up to recently, the tank for a large power transformer or a shunt reactor was typically designed to withstand vacuum filling, transportation and sometimes earthquakes. Since 2008, Hydro-Quebec has implemented arc-containment requirements in its power transformer and shunt reactor specifications. Tank rupture is a very complex phenomenon to investigate - arc testing is cost-prohibitive and, moreover, random in nature. Therefore, mechanical design of tanks to withstand such events, as well as investigation of such phenomena, must rely primarily on numerical methodologies. In this paper, Hydro-Quebec and SIEMENS present and compare two main classes of numerical methods, as well as some of their possible variations, that may be used to obtain an optimized and safer tank design to withstand overpressure effects from low impedance faults.
机译:电力设备的低阻抗断层可能导致灾难性的坦克破裂,导致零件的火灾,溢油和投影,以及经济损失。最近,用于大型电力变压器或分流式反应器的罐通常设计成承受真空灌装,运输和有时地震。自2008年以来,Hydro-Quebec在其电力变压器和分流抗体规格中实施了电弧遏制要求。坦克破裂是调查 - 电弧测试的一种非常复杂的现象是成本抑制的,而且,随机本质上。因此,坦克的机械设计以承受此类事件,以及对此类现象的调查,必须主要依赖于数值方法。在本文中,Hydro-Quebec和Siemens存在并比较两种主要类别方法,以及它们的一些可能的变化,可用于获得优化和更安全的罐设计,以承受低阻抗断层的过压效应。

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