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Research on galloping and insulation characteristics of 500kV crescent-shaped iced quad bundle conductor

机译:500kV月牙形冰四束导体的飞驰和绝缘特性研究

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Conductor galloping is a common phenomenon during the operation of the transmission line, which can easily result in electrical accidents such as flashover and tripping caused by insulation breakdown of the inter-phase spacers. In this paper, a multi-span 4DOF (4 degree-of-freedom) dynamic model for the conductor-insulator is established, and the aerodynamic parameters of the 500kV crescent-shaped iced quad bundle conductor are calculated by CFD, and then the research on conductor galloping and insulation is done. Based on the explicit central difference integral algorithm, the galloping situation under different wind velocities, ice thicknesses, and spans are analyzed discussed. The results indicate that, between the minimum and maximum wind velocity that leads to gallop, the amplitude increases almost linearly corresponding to the wind velocity, which is a challenge to line insulation. Besides, the increasing of ice thickness makes the conductor easier to gallop and may destroy the outer insulation of line. However, too large thickness may be adverse and break the galloping. Furthermore, the conductor span has little effect on the minimum phase spacing. The conclusions are important for the development of anti-galloping technology and the insulation design of the transmission lines.
机译:导体飞驰是传输线运行期间的常见现象,很容易导致电气事故,例如由于相间隔离物的绝缘击穿而引起的跳火和跳闸。本文建立了导体-绝缘子的多跨4DOF(4自由度)动力学模型,并通过CFD计算了500kV月牙形冰四束导体的空气动力学参数,并进行了研究。导体飞奔并绝缘。基于显式中心差积分算法,分析了不同风速,冰层厚度和跨度下的驰situation情况。结果表明,在导致疾驰的最小风速和最大风速之间,幅度几乎与风速相对应线性增加,这对线路绝缘是一个挑战。此外,冰厚度的增加使导体更容易驰gall并且可能破坏线路的外部绝缘。但是,太大的厚度可能会不利并破坏舞动。此外,导体跨度对最小相距影响很小。这些结论对发展防振技术和传输线的绝缘设计具有重要意义。

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