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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Improved ampacity of buried HVDC cable with high thermal conductivity LDPE/BN insulation
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Improved ampacity of buried HVDC cable with high thermal conductivity LDPE/BN insulation

机译:具有高热导率LDPE / BN绝缘的埋入式HVDC电缆的载流量提高

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Polyethylene is widely used as insulation in power cables with its excellent electrical properties except its low thermal conductivity. However, insulation-related thermal problems pose a limitation on the ampacity of HVDC cables. Improving the thermal conductivity of insulation may contribute to heat dissipation of cable system and enhance its ampacity. In this work, in order to investigate the effects of improved thermal conductivity of insulation on temperature field and ampacity in a single buried HVDC cable, a numerical simulation model is established by finite element method (FEM) and the cable ampacity is calculated by a modified iteration method. Meanwhile, a range of low-density polyethylene (LDPE) based composites filled with hybrid boron nitride (BN) particles at different loadings are prepared to get reasonable model parameters. Thermal conductivity of various samples is measured and the obtained result shows that the thermal conductivity of BN filled LDPE composite is improved greatly. The simulation results show that the cable core temperature is reduced obviously and the temperature field distribution in insulation becomes more uniform with increasing the thermal conductivity. Besides, the temperature difference between inside and outside of insulation layer shows a decreasing trend at a given load current. Namely, the cable can transmit higher current under the maximum operating temperature due to the improvement of thermal conductivity. All the conclusions imply that the improved thermal conductivity of insulation is of great benefit to the improvement of HVDC cable ampacity.
机译:聚乙烯以优异的电性能(低导热性)被广泛用作电力电缆的绝缘材料。但是,与绝缘相关的热问题限制了HVDC电缆的载流量。改善绝缘体的导热性可能有助于电缆系统的散热并提高其载流量。在这项工作中,为了研究绝缘导热系数的提高对单根埋入HVDC电缆的温度场和载流量的影响,通过有限元方法(FEM)建立了数值模拟模型,并通过修正计算出了载流量迭代方法。同时,制备了一系列在不同载荷下填充杂化氮化硼(BN)颗粒的低密度聚乙烯(LDPE)基复合材料,以获得合理的模型参数。测量了各种样品的热导率,得到的结果表明,BN填充的LDPE复合材料的热导率大大提高。仿真结果表明,随着导热系数的增加,电缆芯温度明显降低,绝缘体内的温度场分布更加均匀。此外,在给定的负载电流下,绝缘层内部与外部之间的温差呈现出减小的趋势。即,由于导热率的提高,电缆可以在最大工作温度下传输更高的电流。所有的结论都表明,绝缘子导热系数的提高对提高HVDC电缆的载流量有很大的帮助。

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