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Comparison of Breakdown Performances of Extruded Cables via the Enlargement Law

机译:挤压电缆通过扩大法进行击穿性能的比较

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In this paper, previous theoretical developments by one of the authors - relevant to the "enlargement law" - are applied for a benchmark between two alternative compounds candidate for the realization of the solid-extruded insulation of power cables. By resorting to the results of dielectric strength tests relevant to cable models, breakdown performances of full-size cables are investigated as a function of cable length. In particular, the focus is on the existence of the so-called crossing length, such that one of the two compounds performs better for cables longer than crossing length, and conversely the other for cables shorter than this. As a practical case-study, the breakdown performances of two cross-Linked Polyethylene (XLPE) compounds are compared on the basis of lightning impulse strength tests relevant to cable models, by analyzing various power cable voltage ratings, i.e. 6 kV, 20 kV, 150 kV and 400 kV. The application shows that, though the crossing length in fact exists, it is a strong function of cable size and voltage rating. As a general consequence, the choice of the best compound should be based on a comparison between the value of crossing length and typical installation lengths of real cables.
机译:本文在本文中,其中一位作者的理论发展 - 与“扩大法”相关 - 适用于实现电力电缆固体挤出绝缘的两种替代化合物候选者之间的基准。通过借助与电缆型号相关的介电强度测试的结果,作为电缆长度的函数,研究了全尺寸电缆的击穿性能。特别地,重点是所谓的交叉长度的存在,使得两个化合物中的一个比交叉长度更好地对电缆进行更好,并且相反地是电缆短的电缆。作为一个实际情况研究,通过分析各种电力电缆电压额定值,即6 kV,20 kV,基于与电缆型号相关的避雷脉冲强度试验进行比较两种交联聚乙烯(XLPE)化合物的击穿性能。 150 kV和400 kV。该应用表明,尽管发生了交叉长度,但它是电缆尺寸和电压额定值的强功能。作为一般后果,最佳化合物的选择应基于交叉长度和实际电缆的典型安装长度之间的比较。

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