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Reduction of Loss and Local Overheating in the Tank of a Current Transformer

机译:减少电流互感器储罐中的损耗和局部过热

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Transformer manufacturers often use low carbon steel for oil tanks to cut down production costs. The low carbon steel tanks experience not only high eddy currents loss, but also suffer from localized overheating in the tank particularly in the vicinity of insulated terminals. A numerical analysis of the eddy current loss generated in the tank walls of a current transformer (CT) due to adjacent high-current carrying primary conductor is presented. A 3-D nonlinear-transient finite-element method was used to determine the eddy current loss. Estimated losses at rated and overload conditions are then compared with the measured ones; they are in good agreement. In order to reduce the tank loss and local overheating, three nonmagnetic inserts are proposed and their effectiveness is analyzed. These inserts yield about 25 to 40% reduction in the total loss in the CT compared to that without any insert. Results also indicate that these inserts may be used to obtain a significant reduction in the local overheating, thereby contributing to improved life and reliability of the CTs.
机译:变压器制造商经常将低碳钢用于油箱,以降低生产成本。低碳钢罐不仅会遭受高涡流损失,而且还会遭受罐内局部过热的困扰,特别是在绝缘端子附近。给出了由于相邻的大电流承载初级导体而在电流互感器(CT)的储罐壁中产生的涡流损耗的数值分析。使用3-D非线性瞬态有限元方法确定涡流损耗。然后将额定和过载条件下的估计损耗与测得的损耗进行比较;他们非常同意。为了减少储罐损耗和局部过热,提出了三种非磁性插件,并对其有效性进行了分析。与没有插入物的情况相比,这些插入物可使CT的总损耗降低约25%至40%。结果还表明,这些插入件可用于显着减少局部过热,从而有助于延长CT的使用寿命和可靠性。

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