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ANALYTICAL EVALUATION OF THE EFFECTS OF THE TRANSFORMER-BUSHING INTERACTION ON THEIR SEISMIC RESPONSE

机译:变压器 - 衬套相互作用对其地震反应影响的分析评价

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Substations are critical components in a power system. Performance of substations during past earthquakes has not been satisfactory and many key components such as transformers and bushings have sustained significant damage. Recently several research investigations have been conducted to better evaluate, assess, and qualify seismic performance of critical substation components with emphasis on transformers and bushings. These studies include both analytical and experimental research. These works have revealed that understanding the seismic interactions among key equipment of a substation (transformers, bushings, foundation, and interconnecting elements) is critical to proper assessment of seismic performance of substations and in qualification of equipment. Due to weight limitation, shaking table tests of transformers are not feasible. Finite element analysis, however, provides a suitable platform to assess their seismic performance and to evaluate their effect on the response of other important components such as bushings. This paper will discuss the development of finite element models for several transformers and bushings, and will present the results of an ongoing parametric study using time history analysis. Design and rehabilitation recommendations will be discussed in light of the system performance.
机译:变电站是电力系统中的关键组件。过去地震过程中变电站的性能并不令人满意,并且诸如变形金刚和衬套等许多关键部件具有显着损害。最近,已经进行了几项研究调查,以更好地评估,评估和限定关键变电站组分的地震性能,重点是变形金刚和衬套。这些研究包括分析和实验研究。这些作品透露,了解变电站(变压器,衬套,基础和互连元件)关键设备之间的地震相互作用对于适当评估变电站的地震性能以及设备的资格来说至关重要。由于体重限制,变压器的摇动台测试不可行。然而,有限元分析提供了适当的平台,以评估其地震性能,并评估它们对诸如衬套等其他重要组成部分的响应的影响。本文将讨论多个变压器和衬套的有限元模型的开发,并将使用时间历史分析呈现正在进行的参数研究的结果。将根据系统性能讨论设计和康复建议。

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