Investigation of Thermal Boundary Conditions During Heat Cycle Tests on HVDC Cables

S. Frobin, F. Jenau
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Abstract

The number of installed high voltage direct current cables is steadily increasing. The electric field distribution in HVDC cables is determined by the electrical conductivity. The temperature distribution is therefore a field-determining factor, since the electrical conductivity of the insulating medium is strongly dependent on the temperature. The temperature distribution can be calculated using analytical or numerical models on the one hand and determined experimentally using heat cycle tests on full-scale cables on the other hand. In order to control the thermal boundary conditions of cables exposed to the air during test procedure, the cables are often covered with thermally stable flexible elastomeric foam. The question arises to what extent the thermal conditions of the cables buried in the soil can be reproduced by using the flexible elastomeric foam during heat cycle tests. For this reason, this publication compares the temperature distribution in buried cables with those in foam-covered cables and describes the impact of the use of flexible elastomeric foam on the temperature profile in the cable.
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高压直流电缆热循环试验热边界条件研究
高压直流电缆敷设数量稳步增加。高压直流电缆中的电场分布由其导电性决定。因此,温度分布是场的决定因素,因为绝缘介质的导电性强烈地依赖于温度。温度分布一方面可以通过解析或数值模型计算,另一方面可以通过全尺寸电缆热循环试验确定。为了控制电缆在测试过程中暴露在空气中的热边界条件,电缆通常覆盖有热稳定的柔性弹性泡沫。在热循环试验中,使用柔性弹性泡沫塑料可以在多大程度上再现埋在土壤中的电缆的热状况。因此,本出版物比较了埋地电缆和泡沫覆盖电缆的温度分布,并描述了使用柔性弹性泡沫对电缆温度分布的影响。
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