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Simulation Research on Cross-sectional Stability of Expanded Diameter Conductors Based on ANSYS

机译:基于ANSYS的膨胀直径导线横截面稳定性的仿真研究

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The expanded diameter conductors are widely used for high voltage electricity power transmission due to its superior ability to prevent electronic corona phenomenon. However an undesired stability problem of wire distribution configuration within the cross-section of the conductor often occurs during the power line stringing processes, especially for the not-well-designed conductor structures. This phenomenon is typically characterized by the appearance of outer wire/wires jumping out of the layer; therefore it is also referred as wire jump-out problem. Finite element model which can predict the wire jump-out phenomenon has been successfully developed in this research project. Series of stimulations have been carried out to investigate the key factors to cause the wire jump-out problem. The reduction of radial distances between the adjacent aluminum wire layers due to the obvious indentation deformation at the trellis contact points were identified to be one of the most significant factors to lead to the wire jump-out problem. Numerical results show that keeping sufficient initial gap between the adjacent outer layer wires in the initial design can be a simple effective way to relieve/avoid the wire jump-out problem.
机译:由于其卓越的防止电子电晕现象,膨胀直径导线广泛用于高压电力传输。然而,导体的横截面内的电线分布配置的不期望的稳定性问题经常发生在电力线串工艺期间,特别是对于非良好的设计导体结构。这种现象通常是通过跳出层的外线/导线的外观;因此,它也被称为电线跳出问题。有限元模型可以预测电线跳出现象已在本研究项目中成功开发。已经进行了一系列刺激,以调查导致钢丝跳出问题的关键因素。由于格子接触点处的明显压痕变形,相邻铝线层之间的径向距离的减小被识别为导致线跳出问题的最重要因素之一。数值结果表明,在初始设计中保持相邻的外层线之间的足够的初始间隙可以是缓解/避免电线跳出问题的简单有效方法。

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