架空高压输电线路驰骋与保护综合仿真模型

Jicai Hu, Z. Song, Jian-guo Ma, Shijing Wu
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引用次数: 7

摘要

架空输电线路的机械驰动会引起线路间闪络和绝缘子、塔的损坏。现有的驰动模型不足以模拟三维振动耦合的驰动。本文提出了考虑环境条件、几何构型和运动耦合特性影响的三自由度模型。由模型可知,随着环境条件的变化,电力线的驰动可以在惯性耦合、垂直激励和扭转激励之间转换,其幅值受气动因素和耦合特性的控制。仿真结果表明,采用气流扰流器可以有效地抑制传输线的振荡。所建立的模型、仿真结果和抗驰振措施可为电力公司评估输电线路的驰振性能和设计缓解策略提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model for comprehensive simulation of overhead high voltage power transmission line galloping and protection
Mechanical galloping of overhead power transmission lines may cause flashover between lines and damage of insulator and tower. Existing models of galloping are not complete to simulate the galloping of three dimensional vibration coupling. In this paper, a three-degree of freedom model is suggested to account for the influences of environmental conditions, geometrical configurations and movement coupling properties. It can be deduced from the model that the power line galloping, with change of environmental conditions, may transit between activities of inertia coupling, vertical exciting and twisting inspiring, and the galloping amplitude is governed by the aerodynamic factors and coupling properties. The simulation results indicate that the galloping of transmission line can be limited by using air-flow-spoilers. The proposed model, simulation results and anti-galloping measures may be helpful for utilities to assess transmission line galloping performance and design of mitigating strategies.
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