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Effect of temperature rise and water contamination on leakage current in underwater used XLPE insulated power cables

机译:温升和水污染对水下XLPE绝缘电力电缆漏电流的影响

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Results of an experimental investigation into the effect of insulation temperature rise on the leakage current in crosslinked polyethylene (XLPE) insulated underwater power cables under alternating (50 Hz) and direct voltage stresses are presented. The effect of the surrounding water contamination and the size of XLPE cable as well as the applied voltage on leakage current are investigated. The results are compared with experimental results on impregnated-paper submarine cables of the same ratings. (1) Insulation capacitive impedance is the dominant factor affecting leakage current under AC voltage stress, while insulation resistance is the main impedance limiting leakage current under DC voltage. (2) The leakage current increases with applied AC and DC voltage. (3) Nonlinearity of leakage current vs. applied DC voltage can be caused by corona discharge currents. (4) The leakage current in XLPE cables increases with decreasing water resistivity and becomes higher than that of impregnated-paper submarine cables for water salt-content near that of natural seawater. (5) Insulation temperature has a great effect on the leakage current of XLPE cables, whereas leakage current of impregnated-power submarine cables does not change significantly with temperature due to their better thermal conductivity.
机译:提出了在交替(50Hz)下交联聚乙烯(XLPE)绝缘水下电缆中的漏电流对绝缘温度升高的实验研究结果。研究了周围水污染的影响和XLPE电缆的尺寸以及施加电压对漏电流的施加电压。将结果与实验结果进行比较,对浸渍纸潜艇电缆的实验结果相同的额定值。 (1)绝缘电容阻抗是影响交流电压应力下漏电流的主要因素,而绝缘电阻是DC电压下的主阻抗限制漏电流。 (2)漏电电流随着施加的交流和直流电压而增加。 (3)漏电流的非线性与施加的直流电压可能是由电晕放电电流引起的。 (4)XLPE电缆中的漏电流随着水电阻率降低而增加,变得高于天然海水附近水盐含量的浸渍纸潜艇电缆的漏电流。 (5)绝缘温度对XLPE电缆的漏电流具有很大的效果,而由于其更好的导热性,浸渍功率潜水线电缆的漏电流不会随温度显着变化。

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