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曲面结构的表面电荷反演计算方法
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Surface Charge Inversion Calculation Method for Curved Surface Structures
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    摘要:

    研究高压直流输电线路下绝缘材料表面电荷积聚与消散规律时,只能根据绝缘材料表面静电电位反演计算得到电荷密度,但当材料表面为曲面时,很难准确计算出材料表面电荷密度.本文提出了一种针对曲面的电荷密度反演计算方法,针对曲面的绝缘材料,合理、密集地选择电位测量点,通过多轴运动控制器得到电位测量点的相对位置坐标,再按测量点将曲面划分为三角形的网格,求出各点处的法向量,进而反演出表面电荷密度.测量得到的3D打印的曲面圆盘和悬式绝缘子表面电位,以此为算例计算其表面电荷密度.计算结果同理论分析趋势一致,绝缘材料表面的静电电位与电荷密度相关性较强,电位高的区域对应的电荷密度也大;电荷分布按照离放电电极距离的远近,呈现"同心圆"分布;但靠近悬式绝缘子钢帽的区域电荷难以积聚,电荷密度小.

    Abstract:

    When studying the surface charge accumulation and dissipation law of insulating materials under HVDC transmission lines,the charge density can only be calculated by surface electrostatic potential inversion of insulating materials. However it is difficult to accurately calculate the surface charge density when the insulating material surface is curved. In this paper,a charge density inversion method for curved surface was proposed. The potential measurement points were selected reasonably and intensively,and then curved surface was divided into triangular meshes according to the selected measurement points. The normal vectors at each point were obtained,and the surface charge density was then inverted. As an example,the surface potential of 3D printed curved surface and suspended insulator was measured,and the surface charge density was calculated. The calculated results are in accordance with the theoretical analysis trend. The electrostatic potential of insulating material surface has a strong correlation with the charge density,and the charge density corresponding to the high potential area is also large. The charge density presents a“concentric circle” distribution according to the distance from the discharge electrode,but the charge near the suspended insulator cap is difficult to accumulate,and the charge density is small.

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杜志叶,易凡?覮,金颀,邹建明,姚勇.曲面结构的表面电荷反演计算方法[J].湖南大学学报:自然科学版,2019,46(4):48~54

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  • 在线发布日期: 2019-04-23
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