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首页> 外文期刊>Earthquake spectra >Seismic Response of High-Voltage Transformer-Bushing Systems Incorporating Flexural fStiffeners Ⅱ: Experimental Study
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Seismic Response of High-Voltage Transformer-Bushing Systems Incorporating Flexural fStiffeners Ⅱ: Experimental Study

机译:含挠性加劲肋的高压变压器-套管系统的地震响应Ⅱ:实验研究

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摘要

A numerical study conducted on four transformer-bushing models presented in a first companion paper indicated that high-voltage bushings mounted on the cover plates of transformers are more vulnerable to seismic loading than bushings mounted on a rigid base. This would explain why the good performance of bushings mounted on a rigid base observed during shake table testing does not correlate well with their performance in the field. In this second companion paper, the addition of flexural stiffeners on the transformer cover plates as a means to stiffen the base of bushings and mitigate their seismic vulnerability is investigated experimentally. Shake table testing was conducted on a 230 kV porcelain bushing mounted on a support structure incorporating a flexible cover plate and two stiffener configurations. Test results confirmed that stiffening the cover plates is beneficial to the seismic response of high-voltage bushings. Test results are compared to the predictions of finite element analyses.
机译:在第一篇伴随论文中对四种变压器-套管模型进行的数值研究表明,安装在变压器盖板上的高压套管比安装在刚性基座上的套管更容易受到地震载荷的影响。这可以解释为什么在振动台测试期间观察到的安装在刚性底座上的衬套的良好性能与它们在现场的性能没有很好的关联。在第二篇配套论文中,通过实验研究了在变压器盖板上添加抗弯加强筋的方法,以加强套管的基础并减轻其抗震性。振动台测试是在230 kV瓷套管上进行的,该套管安装在支撑结构上,该支撑结构包含柔性盖板和两个加劲肋结构。测试结果证实,加固盖板有利于高压套管的地震响应。将测试结果与有限元分析的预测结果进行比较。

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  • 来源
    《Earthquake spectra》 |2013年第4期|1353-1367|共15页
  • 作者单位

    Graduate Research Assistant, Dept. of Civil, Structural and Environmental Engineering, University at Buffalo, The State University of New York, Buffalo, NY 14260, USA;

    Professor, Dept. of Civil, Structural and Environmental Engineering, University at Buffalo, The State University of New York, Buffalo, NY 14260, USA;

    Professor Emeritus of Structural Engineering, Dept. of Civil, Structural and Environmental Engineering, University at Buffalo, The State University of New York, Buffalo, NY 14260, USA;

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