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Fast Calculation for Temperature Rise of Trench Laying Cables Based on Thermal Circuit Model and Assessments of the Cable Life

机译:基于热电路模型的沟槽铺设电缆温度升高的快速计算及电缆寿命评估

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The quantitative evaluation of the cable life has always been a technical problem. An equivalent thermal circuit model of multi-loop trench laying cables is proposed for the fast calculation of the conductor temperature rise. The thermal coupling between multiple loops of the cables is characterized by the mutual thermal resistance. The relationship between the current of cable and the conductor temperature rise is derived. A numerical model used to calculate the conductor temperature rise under real-time current is put forward based on thermal circuit model. Then, Arrhenius equation is used to calculate the thermal aging life of the insulation material under different currents. By comparing the result of the proposed thermal circuit model with that of the FEM and IEC standard, the correctness of the thermal circuit model has been verified. It is shown from the results that the thermal aging life of the XLPE cable decreases obviously at high conductor temperature with the increasing current. The more cable loops and larger current applied in adjacent cables will also cause a decrease of the cable life.
机译:电缆寿命的定量评估一直是技术问题。提出了一种用于快速计算导体温度升高的多环沟槽铺设电缆的等效热电路模型。电缆的多个环之间的热耦合特征在于相互热阻。推导了电缆电流与导体温度升高之间的关系。基于热电路模型提出了一种用于计算实时电流下的导体温度升高的数值模型。然后,Arrhenius方程用于计算不同电流下绝缘材料的热老化寿命。通过将所提出的热电路模型与FEM和IEC标准的结果进行比较,已经验证了热电路模型的正确性。结果显示,XLPE电缆的热老化寿命随着电流的高导体温度降低明显。相邻电缆中施加的电缆环和更大电流也将降低电缆寿命。

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