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Steady State Modelling of Three-core Wire Armoured Submarine Cables:Power losses and Ampacity Estimation based on FEM and IEC

机译:三芯线铠装海底电缆的稳态建模:基于FEm和IEC的功率损耗和载流量估计

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摘要

This paper introduces Finite Element Method mod-elling techniques applied to wire armoured submarine three-core cables, whose nominal voltages range from 36 to 245 kV. The analysis is focused on the implementation of the net voltage cancellation principle in a 2D environment. The model is utilised in a comparative study with the IEC 60287 Standard, developed in terms of power losses, loss factors and cable ampacity. Despite the model limitations, the estimated loss factors are mainly in compliance with the state of the art, verifying the widely recognized conservatism of the IEC standard. Simulation results confirm that the wire armour stranding is not accounted for, but also suggest that the ampacity underrating might be due to other inaccuracies in the IEC modelling indications. Overall, the difference in terms of current rating between the FEM and the IEC approach is found to be voltage dependent and more relevant for high voltage designs.
机译:本文介绍了应用于标称电压范围为36到245 kV的铠装海底三芯电缆的有限元方法改进技术。分析的重点是在2D环境中实现净电压抵消原理。该模型用于与IEC 60287标准进行的比较研究中,该标准是根据功率损耗,损耗因子和电缆载流量开发的。尽管模型存在局限性,但估计的损耗因子仍主要符合最新技术水平,从而证明了IEC标准得到广泛认可的保守性。仿真结果证实未考虑钢丝铠装绞合,但也表明载流量低估可能是由于IEC建模指示中的其他不准确性所致。总体而言,发现FEM和IEC方法之间在额定电流方面的差异取决于电压,并且与高压设计更为相关。

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