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Partial discharges in polymeric insulation systems at cryogenic temperatures

机译:聚合物绝缘系统在低温下的局部放电

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The generation and transmission of electric power using equipment operating at cryogenic temperatures has been considered to be economically and technically feasible within ten to fifteen years. Cryogenic generators have the ad vantage of smaller size yielding greater generated power per unit volume. Superconducting or cryoresistive underground cables can transmit more power and with less losses than conventional oil/paper cables. However, the operating electric stresses of the electrical insulation have not been determined and studies of ageing phenomena are limited. A project has begun at the National Research Council of Canada to study the mechanisms of deterioration of polymeric tapes immersed in a cryogenic fluid and subjected to high electric stresses. The first part of the study is to determine the discharge inception and extinction stresses of various polymers immersed in pressurized liquid nitrogen and liquid helium. The initial results using liquid nitrogen are reported in this paper. Subsequent tests will determine the effects of partial discharges on the life of the insulation.
机译:使用在低温下运行的设备来产生和传输电力被认为在十到十五年内在经济和技术上是可行的。低温发生器的优点是尺寸较小,每单位体积的发电量更大。与传统的油/纸电缆相比,超导或低温电阻地下电缆可以传输更多的功率,并且损耗更少。但是,尚未确定电绝缘的工作电应力,并且对老化现象的研究受到限制。加拿大国家研究委员会已开始一个项目,以研究浸入低温流体并承受高电应力的聚合物胶带的劣化机理。研究的第一部分是确定浸入加压液氮和液氦中的各种聚合物的放电开始和消光应力。本文报道了使用液氮的初步结果。随后的测试将确定局部放电对绝缘寿命的影响。

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