直流电场作用下雾凇吸积数值模拟研究

Tianqi Yu, Liming Wang, F. Yin, Xingliang Jiang, M. Farzaneh
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摘要

输电线路的严重结冰威胁着电力系统的安全运行。为了降低复杂性,大多数导体结冰模型都忽略了导体通电的影响,理论结冰往往不符合实际情况。本文建立了直流电场作用下的结霜模型,研究了不同电场强度下结霜的质量和形成。根据局部碰撞效率(LCE),得到结冰面上不同元素的结冰质量,迭代计算不同表面电场强度下的冰形。模拟结果表明,随着直流电场强度的增大,颗粒受到介电力和电场力的影响,霜霜质量先增大后减小;当表面电场高达- 25kV/cm时,库仑斥力占主导地位,斥力在边界处越明显,冰形收缩并向中心集中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Numerical Simulation of Rime Accretion under DC Electric Field
Serious icing of transmission lines threats the safe operation of power system. To reduce the complexity, most conductor icing models ignore the effect of conductor electrification, and theoretical icing is often not in line with the actual situation. In this paper, an icing model under DC electric field is proposed to study the mass and formation of rime under different electric field strength. According to the local collision efficiency (LCE), the icing mass of different elements on the icing surface is obtained, and the ice shape under different surface electric field strength is calculated iteratively. The simulation result shows that with the increase of DC electric field strength, the particles are affected by dielectrophoretic force and electric field force, and the mass of rime icing increases first and then decreases. When the surface electric field is as high as −25kV/cm, the Coulomb repulsion is dominant, the more obvious the repulsion is at the boundary, and the ice shape shrinks and concentrates towards the center.
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