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Condition assessment of cables and transformers in an aging infrastructure (and aging talent base)

机译:衰老基础设施中电缆和变压器的条件评估(以及老化人才基地)

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The rapid industrialization that followed World War 11 required electricity to power and sustain this ensuing growth. As a result, infrastructure for electric power was put in place at an accelerating pace in subsequent decades, resulting in aging equipment. The challenges presented in taking better care of aging infrastructure include technical, lack of commensurate efforts and availability of sufficient financial resources. The gradual erosion of expertise and long general lack of hands-on electrical power equipment education in the US does not help either nor does the significantly reduced manufacturing power equipment base, as we address the aging equipment. The West Europeans and Japanese are in a better position toward this end, due to relatively robust electrical power equipment manufacturing, exporting strengths and active equipment — related graduate education. The prevailing utility business climate brought about by deregulation, competition and increasing fiscal restraints dictate that maximum and trouble-free use is made of aging infrastructure. This places focus on reliable and cost-effective diagnostic tests. While such tests have been always addressed and improved over decades, the need has never been greater, as of now. This paper covers the condition and life assessment of laminar dielectric transmission cables, power transformers and extruded cable terminations containing a dielectric fluid through Dissolved Gas Analysis (DGA). Several successful cases showing the extent of insulation damage from minor to severe as revealed by DGA-prompted equipment openings are presented. All the cable systems were re-built. This demonstrates that the techniques and lessons learned from one product can be profitably applied to another, despite lack of markedly different dielectric materials, designs and operating conditions. The general lack of hands-on equipment-related graduate education has been addressed, and ameliorative measures emphasized to aid in - - taking better care of aging equipment.
机译:第二次世界大战的快速产业化需要电力和维持这一增长的电力。因此,电力基础设施在随后的几十年中加速了加速,导致老化设备。在更好地照顾老化基础设施方面提出的挑战包括技术,缺乏相识的努力和足够的财政资源的可用性。在我们解决老化设备的情况下,美国逐渐侵蚀美国的专业知识和普遍缺乏动手电力设备教育并没有帮助,也不有明显减少的制造电力设备基础。由于电力设备制造,出口优势和主动设备相关研究生教育,西欧人和日本人朝向今年的最佳地位。通过放松管制,竞争和增加财政限制的普遍公用事业商业环境决定了老化基础设施的最大和无故障的使用。这一地方专注于可靠且经济高效的诊断测试。虽然这些测试总是解决和几十年来的,但截至目前,需求从未如此。本文涵盖了层状电介质传动电缆,电力变压器和挤出电缆终端通过溶解气体分析(DGA)的挤出电缆终端的条件和寿命评估。提出了几个成功的病例,显示了DGA提示设备开口所揭示的轻微为严重的绝缘损坏程度。所有电缆系统都被重新构建。这表明,尽管缺乏显着不同的介电材料,设计和操作条件,但是从一个产品中学到的技术和经验教训可以有利地应用于另一种产品。已经解决了一般缺乏动手的设备有关的研究生教育,并强调改善措施,以帮助更好地照顾老化设备。

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