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Effect of electro-thermal, load cycling and thermal transients stresses on high voltage XLPE and EPR p0wer cable life

机译:电热,负载循环和热瞬态应力对高压XLPE和EPR电缆寿命的影响

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All insulation systems life is definite and analysis of insulations life is very important. Power cables designed for 30 years life, but electrical, thermal, load cycling and other stresses caused reduced it. In this paper, a procedure is presented for the life estimation of high-voltage cables subjected to electro-thermal stress due to applied voltage and load cycles. Thermal transients due to load cyclic current are modeled by means of the well-known two-loop thermal network analog. The effect of the relevant cyclically varying electro-thermal stress is accounted for via the cumulative damage law of Miner. The life fractions lost during each step of the load cycle are evaluated by a proper combined electro-thermal life model holding for cable insulation. The procedure is applied to high voltage AC XLPE and EPR insulated cables, subjected to stepwise constant daily load cycles.
机译:所有绝缘系统的寿命是确定的,并且绝缘寿命的分析非常重要。电力电缆的设计使用寿命为30年,但由于电,热,负载循环和其他应力导致的功率电缆减少了。在本文中,提出了一种程序,该程序用于估计由于施加电压和负载循环而受到电热应力的高压电缆的寿命。由负载循环电流引起的热瞬态通过众所周知的两回路热网络模拟进行建模。相关的周期性变化的电热应力的影响是通过Miner的累积损伤定律解决的。通过对电缆绝缘进行适当组合的电热寿命模型评估,可以评估在负载循环的每个步骤中损失的寿命分数。该程序适用于高压AC XLPE和EPR绝缘电缆,承受逐步恒定的日负载循环。

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