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Thermal behaviour of medium-voltage underground cables under high-load operating conditions

机译:高负荷操作条件下中压地下电缆的热行为

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The dynamic management of electric power distribution lines has become a topic of great interest at preset Knowledge of the ampacity of cables is fundamental to carrying out dynamic management. In this study, t ampacity of buried cables in different soil resistivities and depths was calculated. A small-scale model was bu in the laboratory to simulate the operating conditions of a buried cable. With the experimental results, a n merical model based on the finite element method was validated to evaluate the ampacities calculated by t% standards. A comparison was made between the ampacities calculated from the IEC 60287-1 and UNE 2114: standards and those obtained from the simulated model. In addition, a comparison was made regarding t steady-state temperatures obtained at each calculated ampacity. The results obtained from the simulated moc design show that the ampacity calculation method of the IEC 60287-1 standard where drying-out of the SI occurs is the most accurate, and has the least risk of exceeding the maximum permissible cable temperature
机译:电力分配线的动态管理已成为大量兴趣的主题,对电缆的不足的预设知识是履行动态管理的基础。在这项研究中,计算了不同土壤电阻和深度埋地电缆的T余量。在实验室中,小型模型是模拟埋地电缆的操作条件。通过实验结果,验证了基于有限元方法的N个合理模型,以评估由T%标准计算的安培。从IEC 60287-1和UNE 2114计算的安息区之间进行了比较:标准和从模拟模型中获得的那些。此外,对每个计算的性能下获得的T稳态温度进行了比较。从模拟MOC设计中获得的结果表明,IEC 60287-1标准的余处计算方法发生在SI的干燥之外是最准确的,并且具有超过最大允许电缆温度的风险最小

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