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Failure analysis of collector circuits associated with wind farms

机译:与风电场相关的收集器电路的故障分析

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Wind farm collector circuits generally comprise several wind turbine generators (WTG's). WTG's are connected in parallel to a substation. This connection acts as the point-of-connection to the national electricity grid. The electrical load in these circuits is close to component (power cables and accessories) ratings. The objective of this paper is to identify cable joint failure paths; and, develop an understanding of specific contributing factors. All findings presented were established from literature review involving data analysis and discussion with industry experts working across the wind industry. Application of forces, inadequate workmanship, incorrect thermal resistance or other contributing factors, all contribute to high conductor operating temperatures. High conductor operating temperatures highlight issues including insufficient environmental heat transfer due to the use of inadequate cable trenching materials. This in turn results in the imbalanced application of force, experienced at the cable joint, as a direct result of frequent thermal expansion and contraction. For most cable joint failures, the root cause is insulation breakdown due to sustained deterioration of the cross-linked polyethylene insulation. This is a direct result from excessive operating temperatures.
机译:风电场收集器电路通常包括多个风力涡轮发电机(WTG)。 WTG并联连接到变电站。此连接充当与国家电网的连接点。这些电路中的电气负载接近组件(电源线和附件)的额定值。本文的目的是确定电缆接头的失效路径。并且发展对特定贡献因素的理解。提出的所有发现均基于文献综述,涉及数据分析以及与风电行业的专家讨论。施加力,工艺不足,不正确的热阻或其他影响因素都会导致导体工作温度升高。较高的导体工作温度突出了一些问题,其中包括由于使用的电缆开槽材料不足而导致的环境传热不足。这又导致频繁发生热膨胀和收缩的直接结果是在电缆接头处承受的力施加不平衡。对于大多数电缆接头故障,根本原因是由于交联聚乙烯绝缘材料的持续劣化而导致绝缘材料损坏。这是工作温度过高的直接结果。

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