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Controlling Factors of Degassing in Crosslinked Polyethylene Insulated Cables

机译:交联聚乙烯绝缘电缆脱气的控制因素

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摘要

Here, we analyze the degassing process of a byproduct (methane) formed during the peroxide-induced crosslinking of polyethylene. A diffusion model based on Fick’s law is used to obtain the controlling factors of degassing in a crosslinked polyethylene (XLPE) insulated power cable (132 kV with 18 mm of insulation). We quantitatively analyze different scenarios of the diffusion of methane through the XLPE insulation and two semiconductor layers under various in situ degassing conditions. The analyzed degassing conditions include heat transfer and its effect on the diffusion properties, the different transport and boundary conditions due to the free spaces within the cable conductor, and the nonuniform distribution of methane concentrations within the insulation layers. Our simulation results clearly demonstrate that the free spaces between the copper strands in the cable conductor significantly affect the degassing efficiency. However, the temperature-diffusion coupling has a relatively minor effect on the overall degassing efficiency due to the rapid temperature increase of the polymer layers during the initial stages of degassing. Moreover, we find that the nonuniform distribution of methane in the initial stages also plays an important role in degassing in the cable, but this effect varies significantly during the degassing process.
机译:在这里,我们分析了过氧化物诱导的聚乙烯交联过程中形成的副产物(甲烷)的脱气过程。使用基于菲克定律的扩散模型来获得交联聚乙烯(XLPE)绝缘电力电缆(132 kV,绝缘18 mm)中脱气的控制因素。我们定量分析了在各种原位脱气条件下甲烷通过XLPE绝缘层和两个半导体层扩散的不同情况。分析的脱气条件包括传热及其对扩散性能的影响,由于电缆导体内的自由空间而导致的不同传输条件和边界条件,以及绝缘层内甲烷浓度的不均匀分布。我们的仿真结果清楚地表明,电缆导体中铜绞线之间的自由空间会显着影响脱气效率。然而,由于在脱气的初始阶段聚合物层的温度快速升高,所以温度-扩散偶合对总体脱气效率具有相对较小的影响。此外,我们发现甲烷在初始阶段的不均匀分布在电缆的脱气中也起着重要作用,但是这种效果在脱气过程中变化很大。

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