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Continuous discharge testing of extruded cables

机译:挤压电缆的连续放电测试

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摘要

The significance of gaseous discharges in the electrical breakdown of solid and composite solid-liquid dielectrics has emerged with increasing clarity over the past three decades. Arising from researches in England and North America, substantial advances in the detection and interpretation of discharge phenomena were made in the second decade, principally by the British Electrical and Allied Industries Research Association. Towards the end of the second decade the usefulness of applying discharge tests continuously to extruded insulating coverings over conductors to be operated at high voltages came to be recognized in several quarters in this country, on the Continent and in the United States. Discharges may be detected by measuring the transient electrical disturbance to the system caused by the discharge, or by measuring the electromagnetic r.f. or light waves or the sound pressure waves emanating from the discharge. Reference is made to continuous discharge detectors based on some of these methods. The various practical forms of the method based on electrical observations are discussed in greater detail, since this method is the one more widely used and more highly developed at the present time. The particular arrangement used by the company with which the author was associated is described, and the results obtained in testing more than 400 miles of polythene-insulated high-voltage core are reviewed. Reference is made to technical difficulties encountered in the design and operation of the equipment. The limitations in the usefulness of the present form of testing are stated in the light of the experience gained and some suggestions are made for the further development of the method.
机译:在过去的三十年中,气体放电在固体和复合固液电介质的电击穿中的重要性日益明显。由于在英格兰和北美进行的研究,在第二个十年中,放电现象的检测和解释取得了重大进展,主要是由英国电气和联合工业研究协会进行的。在第二个十年末期,在美国,欧洲大陆和美国,已经有四分之三的人认识到了对要在高压下运行的导体上的挤压绝缘覆盖层连续进行放电测试的有用性。可以通过测量由放电引起的对系统的瞬态电干扰或通过测量电磁射频来检测放电。放电产生的光波或声压波。参考基于这些方法中的一些的连续放电检测器。由于这种方法是目前使用更广泛,开发程度更高的一种方法,因此将更详细地讨论基于电观察的方法的各种实际形式。描述了与作者有联系的公司所使用的特定布置,并回顾了测试超过400英里的聚乙烯绝缘高压芯所获得的结果。参考了设备设计和操作中遇到的技术困难。根据获得的经验说明了当前测试形式的实用性的局限性,并为该方法的进一步发展提出了一些建议。

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