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Ion flow simulations of HVDC conductors under rainy conditions

机译:多雨条件下HVDC导体的离子流模拟

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During the last years, more and more renewable power generation units have been connected to the European power grid, creating demands for higher transport capacity as well as longer transport distances. Plans for the construction of HVDC and hybrid HVAC/HVDC corridors in Europe lead to an increased interest in the corona behaviour of direct current overhead lines. Within the scope of this paper, simulations and measurements are conducted to analyse the accuracy of the used simulation tool for rainy conditions, which is constituting an important study case since corona intensity is significantly increased during periods of precipitation. Especially, charge generation at the conductor surface and its influence on total corona current as well as on the ion current distribution at ground level under rainy conditions are investigated. As a result, the idea that a single onset field strength can describe the entire V-I characteristic of an overhead line under rainy conditions is challenged. It is shown that a field dependent correction factor for the onset field strength can improve the accuracy of simulations considerably. Additionally, in order to improve the simulated current distribution at ground level, a method to inversely calculate charge generation profiles is introduced.
机译:在过去几年中,越来越可再生的发电单位已连接到欧洲电网,为更高的运输能力和更长的运输距离创造了需求。欧洲HVDC和Hybrid HVAC / HVDC走廊建设的计划导致对直流架空线路的电晕行为增加。在本文的范围内,进行了模拟和测量,以分析用于雨季条件的使用模拟工具的准确性,这是构成重要的研究案例,因为在降水期间电晕强度显着增加。特别地,研究了导体表面的电荷产生及其对总电晕电流的影响以及在多雨条件下在地面的离子电流分布上。结果,单一起始场强可以描述在多雨条件下的架空线的整个V-I特征的想法是挑战。结果表明,用于起始场强的场相关校正因子可以显着提高模拟的精度。另外,为了改善地面的模拟电流分布,引入了反向计算电荷产生轮廓的方法。

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