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The combination of electro-thermal stress, load cycling and thermal transients and its effects on the life of high voltage ac cables

机译:电热应力,负载循环和热瞬变的组合及其对高压交流电缆寿命的影响

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摘要

The paper proposes a procedure for life estimation of high voltage ac cables in real operating conditions, i.e. subjected to voltage and load cycles, so that electrothermal stress is the dominant aging factor of cable insulation. As possible alternatives for representing the effects of the electrothermal aging of insulation, three life models wellknown in literature are considered, namely the Zurkov, Crine and Arrhenius-IPM models, each within the probabilistic framework needed for associating time-to-failure with reliability. The cumulation of loss-of-life fractions over load cycles is evaluated through Miner¿s law. The thermal transients that affect insulation as a consequence of cyclic current variations are simulated via the CIGRE two-loop thermal network analog. The procedure is applied to XLPE-insulated high voltage ac cables, subjected to two typical stepwise-constant daily load cycles differing as to the load severity. The application shows that cable life is very sensitive to load cycles, thermal transients and electrothermal synergism, aspects that all deserve attention for estimating accurately the life expectancy of high voltage ac cables in service. The three life models employed, though weighing differently the electrothermal synergism as a consequence of their own functional expressions, give a concordant indication about the possible life extension of cables already in service.
机译:本文提出了一种在实际工作条件下(即经受电压和负载循环)估算高压交流电缆寿命的程序,因此电热应力是电缆绝缘的主要老化因素。作为代表绝缘体电热老化影响的可能替代方法,考虑了文献中众所周知的三种寿命模型,即Zurkov,Crine和Arrhenius-IPM模型,每种模型都在将失效时间与可靠性联系起来的概率框架内。通过Miner的定律可以评估负载循环中的寿命损失分数的累积。通过CIGRE两回路热网络模拟来模拟由于循环电流变化而影响绝缘的热瞬变。该程序适用于XLPE绝缘的高压交流电缆,该电缆承受两种典型的逐步恒定的每日负载循环,具体取决于负载的严重程度。该应用表明,电缆寿命对负载周期,热瞬变和电热协同非常敏感,在准确估算使用中的高压交流电缆的预期寿命方面,所有这些方面都应引起注意。所采用的三种寿命模型虽然因其自身的功能表达而权衡了电热协同作用,但它们可以一致地表明已使用的电缆可能会延长寿命。

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