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Development of thermal and structural design technology for a hermetically sealed oil transformer

机译:密封油变压器的热和结构设计技术的发展

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The hermetically sealed oil transformer is designed by applying the expanding function of the tank due to the volume change of the insulation oil according to the temperature rise. When insulation oil expands, increase in the volume of corrugated-fin prevents pressure rise of the transformer. The purpose of this study is to analyze the thermal and structural stability of the transformer to deal with the pressure variation due to the temperature change. For the wind turbine transformer, the vegetable oil transformer has advantages of excellent biodegradation and fire-resistant properties, such as an exceptionally high fire point. Therefore, the design technology of the transformer to deal with the pressure variation has been investigated by fluid structure interaction simulations. The amount of expanded oil inside the corrugated-fin has been estimated for operating load cases, and the design of the corrugated-fin to control the variations of the inside oil pressure has been proposed. Additionally, the structural integrity of a hermetically sealed transformer has been evaluated by both numerical and experimental methods. Hydraulic and thermal tests for the transformer have been performed, and measured values are compared with the analyses results.
机译:通过根据绝缘油体积随温度上升而变化的储罐膨胀功能来设计密封油变压器。当绝缘油膨胀时,增加波纹翅片的体积可防止变压器压力升高。这项研究的目的是分析变压器的热和结构稳定性,以应对由于温度变化引起的压力变化。对于风力涡轮机变压器,植物油变压器具有出色的生物降解性和耐火性能(例如,极高的燃点)的优势。因此,通过流体结构相互作用仿真研究了变压器应对压力变化的设计技术。已经针对工作负载情况估计了波纹翅片内部的膨胀油量,并且已经提出了控制内部油压变化的波纹翅片的设计。另外,已经通过数值和实验方法评估了密封变压器的结构完整性。已经对变压器进行了液压和热力测试,并将测量值与分析结果进行了比较。

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