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CRITICAL TECHNICAL ASPECTS DURING DESIGN, MANUFACTURING AND TESTING OF INDIA'S FIRST 1200 kV UHVAC TRANSFORMER

机译:印度前1200 kV Uhvac变压器的设计,制造和测试期间的关键技术方面

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Considering the power demand-supply equation of the next two decades in the Indian subcontinent, 1200 kV UHVAC system has emerged as one of the most viable options for bulk power transfer from power hubs to distant load centers. While higher transmission efficiency is the prime motive of UHVAC system, reliability in commercial operation remains the biggest challenge, more so, due to worldwide paucity of its experience. The UHVAC transformer is probably one of its most important links and needs a critical approach from all angles before putting into the field operation. The paper aims at providing an insight into various technical aspects while developing India's first 1200 kV transformer for its National Test station. The paper elucidates dielectric considerations of a UHVAC Auto transformer, with regard to 1200 kV winding & lead exit assembly. Apart from dielectric considerations, UHVAC transformer has unique design features like significantly higher solid insulation content, higher axial and radial clearances of windings as compared to EHV transformer. These unique features greatly influence the short circuit behavior and cooling design of the transformer. The paper explains the specific considerations to take care of short circuit integrity and cooling adequacy of an UHV AC transformer. The paper also throws light on special technological considerations like processing & other manufacturing aspects to take care of specific features. It also shares the test methodology adopted for generation and control of high voltage parameters for a 333 MVA, 1200 kV transformer.
机译:考虑到印度次大陆未来二十年的电力需求 - 供应方程,1200 kV Uhvac系统已成为从电力集线器到遥远负载中心的大量电力转移的最可行选项之一。虽然更高的传输效率是UHVAC系统的主要动力,但商业操作的可靠性仍然是最大的挑战,因此,由于全球经验的缺乏。 UHVAC变压器可能是其最重要的链接之一,并且在进入现场操作之前需要从所有角度的临界方法。本文旨在介绍各种技术方面,同时为其国家测试站开发印度的前1200千伏变压器。该纸张阐明了UHVAC汽车变压器的介电考虑,关于1200 kV绕组和铅出口组件。除电介质考虑外,与EHV变压器相比,UHVAC变压器具有独特的设计特征,如明显更高的固体绝缘含量,较高的轴向和绕线间隙。这些独特的功能极大地影响了变压器的短路行为和冷却设计。本文解释了采取UHV交流变压器的短路完整性和冷却充分性的具体考虑因素。本文还抛出了特殊的技术考虑因素,如加工和其他制造方面以照顾特定的特征。它还共享用于生成和控制高电压参数的测试方法,为333 MVA,1200 kV变压器。

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