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Study on the influence of current on 500 kV AC marine cable based on numerical simulation

机译:基于数值模拟的电流对500 kV交流船电缆的影响研究

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Due to the extremely complex changes in marine environmental factors and frequent changes in the actual load current of the submarine cable, it is necessary to analyze and study the mechanical and thermal characteristics of the high-voltage submarine cable system under different conditions to ensure the reliability of the power transmission performance of the submarine cable. In this paper, the finite element model is adopted to study the physical parameters of the submarine cable, taking burial depth, ambient temperature, and current as dependent variables. Some of the parameters related to the environment refer to the ocean currents near Zhoushan, and the model bases on the actual current and temperature data of the 500 kV AC submarine cable. The results show that in order to increase the load capacity of the submarine cable and reduce the thermal strain of the submarine cable, the heat dissipation of the submarine current should be increased, so the buried depth should be appropriately reduced. After the ambient temperature rises, in order to reduce the loss of electric energy and cable deformation, the carrying current should be reduced moderately. The research carried out a simulation based on the actual physical parameters of each layer of the submarine cable and predicted the changes in the submarine cable in Zhoushan with different current carrying capacity in different seasons, so it has reference significance in actual engineering applications.
机译:由于海洋环境因素的极其复杂和潜艇电缆的实际负载电流的频繁变化,有必要在不同条件下分析和研究高压潜艇电缆系统的机械和热特性,以确保可靠性潜艇电缆的电力传输性能。在本文中,采用有限元模型研究潜艇电缆的物理参数,采用埋藏深度,环境温度和电流作为依赖变量。与环境相关的一些参数是指舟山附近的海洋电流,以及500 kV AC潜水线电缆的实际电流和温度数据的模型基础。结果表明,为了提高潜艇电缆的负载能力并减少潜艇电缆的热应变,应增加潜艇电流的散热,因此应适当地减少埋地深度。环境温度升高后,为了减少电能和电缆变形的损失,承载电流应适度降低。该研究基于潜艇电缆的每层实际物理参数进行了模拟,并预测了不同季节不同电流承载能力的舟山潜艇电缆的变化,因此在实际工程应用中具有参考意义。

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