Life Estimation of XLPE Cable Under Electrical and Thermal Stress

Darshan Prakash Borthakur, S. Das
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引用次数: 4

Abstract

Estimating the lifetime of XLPE insulated cables is utmost important as it determines the reliability of the cable under service. The cable insulation under normal service condition experiences various stress such as cyclic thermal stresses associated with load cycles, electric stress produced due to applied voltage, humidity etc. In this work, lifetime of a single core 33 kV XLPE insulated cable being employed in wind farms is estimated, considering the impact of different stress conditions. The effect of electrical stress i.e. produced due to applied voltage, thermal stress associated with load cycle and combination of both the stresses are studied. The electric field and thermal stress distibution analysis in cable insulation is carried out using FLUX, an electromagnetic field and thermal distribution analysis software. The stress values obtained from FLUX are used in insulation life models to estimate the approximate life of XLPE cable insulation. Further, the lifetime analysis is performed at higher stress levels compared to rated conditions in order to understand the feasibility to carried out experiments under laboratory conditions. This study shows that electrical and thermal stress has strong impact on insulation lifetime. Also it is observed that the estimated life depends on applied voltage profile and insulation thickness. In addition, the lifetime estimation models also plays an important role.
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电热应力下交联聚乙烯电缆的寿命估算
估计交联聚乙烯绝缘电缆的寿命是至关重要的,因为它决定了电缆在使用中的可靠性。在正常使用条件下,电缆绝缘会经历各种应力,如与负载循环相关的循环热应力,由外加电压、湿度等产生的电应力等。在这项工作中,考虑到不同应力条件的影响,估计了风电场中使用的单芯33 kV交联聚乙烯绝缘电缆的寿命。研究了电应力的影响,即由于施加电压而产生的电应力、与负载循环相关的热应力以及这两种应力的组合。利用电磁场和热分布分析软件FLUX对电缆绝缘进行了电场和热应力分布分析。利用FLUX得到的应力值在绝缘寿命模型中估计交联聚乙烯电缆绝缘的近似寿命。此外,与额定条件相比,在更高的应力水平下进行寿命分析,以了解在实验室条件下进行实验的可行性。研究表明,电应力和热应力对绝缘寿命有很大影响。还观察到,估计寿命取决于施加的电压分布和绝缘厚度。此外,寿命估计模型也起着重要的作用。
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