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Evaluation of as-installed properties of transformer bushings

机译:评估变压器套管的安装后性能

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High voltage transformers are essential parts of the electrical distribution grid. Severe failure of entire grids can occur during earthquakes, when transformer bushings fail due to structural dynamic mismatch to the seismic demands. Proper consideration of the fundamental frequency of vibration, which depends on the flexibility of the cover plate of the transformer to which they are connected, is therefore crucial for determining the seismic response of bushings. A simplified method is developed in this work for the evaluation of the "as-installed" fundamental frequency of transformer bushings. Such bushings are modeled as cantilever beams with distributed mass and elasticity, and an additional rotational spring is introduced at the base, to account for the flexibility of the cover plate of the transformer. A simple yet efficient expression is derived for the as-installed frequency, based on the Southwell-Dunkerley method. The solutions require the knowledge of the bending rigidity of the bushing and the (out-of-plane) rotational stiffness of the cover plate. The evaluation of both these quantities is presented. While analytical solutions for the (out-of-plane) rotational stiffness of circular plates are well known, solutions for rectangular plates have not yet been addressed. A semi-empirical-numerical solution is suggested, based on finite element models and analytical expressions derived by force-fitting the "circular plate solution" to the numerical analyses. The results yielded by the proposed method are compared with experiments on real bushings.
机译:高压变压器是配电网的重要组成部分。地震期间,由于结构动力与地震需求不匹配,导致变压器套管失效时,可能会发生整个电网的严重故障。因此,适当地考虑振动的基本频率,这取决于它们所连接的变压器盖板的柔韧性,这对于确定套管的地震响应至关重要。在这项工作中开发了一种简化的方法,用于评估“已安装”的变压器套管的基频。这种套管被建模为具有分布质量和弹性的悬臂梁,并且在基座处引入了附加的旋转弹簧,以说明变压器盖板的柔韧性。根据Southwell-Dunkerley方法,得出了一个简单但有效的表示安装频率的表达式。这些解决方案需要了解衬套的弯曲刚度和盖板的(平面外)旋转刚度。介绍了这两个数量的评估。尽管圆形板的(平面外)旋转刚度的解析解决方案是众所周知的,但矩形板的解决方案尚未解决。根据有限元模型和通过将“圆板解决方案”强制拟合到数值分析而得出的解析表达式,提出了一种半经验数值解决方案。将该方法产生的结果与实际衬套上的实验进行了比较。

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