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Calculation of thermal distribution and ampacity for underground power cable system by using electromagnetic-thermal coupled model

机译:利用电磁热耦合模型计算地下电缆系统的热分布和载流量

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Joule loss in conductor and eddy current loss in sheath are critical for calculating thermal distribution and ampacity of underground power cable. These two types of losses are usually well estimated in most cases by IEC-60287. However, the problem becomes complicated for the underground power cable system as analyzing these losses is not easy due to the electromagnetic coupling between a large number of cables in such system. Nevertheless, IEC-60287 has recommended a simplified method for calculating the ampacity of multi-circuit cable system by ignoring the proximate effect between circuits. In spite of inaccuracy, this simplified method is commonly used in practical applications for its ease of use. In this paper, an electromagnetic-thermal coupled model is proposed and numerically calculated by finite element method (FEM). A case study of 110 kV underground power cable system is given. Results show that the ampacity obtained from our proposed model agrees very well with that from IEC-60287 for one-circuit cable system, whereas it apparently deviates from what IEC-60287 recommends for multi-circuit cable system. Such deviation is primarily caused by the capability of our model to precisely calculate the losses.
机译:导体的焦耳损耗和护套的涡流损耗对于计算地下电缆的热分布和载流量至关重要。通常,在大多数情况下,IEC-60287可以很好地估计出这两种类型的损耗。然而,由于地下电缆系统中的大量电缆之间的电磁耦合,分析这些损耗不容易,因此对于地下电力电缆系统而言,问题变得复杂。尽管如此,IEC-60287建议使用一种简化的方法,通过忽略电路之间的邻近效应来计算多电路电缆系统的载流量。尽管不准确,但这种简化的方法仍易于使用,因此在实际应用中经常使用。本文提出了一种电磁热耦合模型,并通过有限元方法进行了数值计算。以110 kV地下电力电缆系统为例。结果表明,从我们提出的模型获得的载流量与从IEC-60287得出的单回路电缆系统的载流量非常吻合,而显然与从IEC-60287提出的多回路电缆系统的载流量存在偏差。这种偏差主要是由我们模型精确计算损失的能力引起的。

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