首页> 外文会议>2014 Intemational Conference of Lighbling Protection >Electrostatic Field and Lightning Zoning analysis of a windmill: Study of current and innovative protection strategies
【24h】

Electrostatic Field and Lightning Zoning analysis of a windmill: Study of current and innovative protection strategies

机译:风车的静电场和闪电分区分析:当前和创新保护策略的研究

获取原文
获取原文并翻译 | 示例

摘要

This paper presents the study of the electrostatic field distribution around a windmill in order to determine preferential lightning attachment zones (zoning) [1]. Whether existing studies on wind turbines often propose to use the rolling sphere method [2] more recent models based on the physics of attachment have also been applied in aeronautics [3] or on ground infrastructures as windmills [4,5]. This study is based on the positive leader inception model [6] and calculations have been performed with the ASERIS-Zoning finites elements code, which is composed of an electrostatic solver integrating a ground plane model and a probabilistic Zoning post-treatment. First, a preliminary analysis on electrostatic variations at ground level induced by different charge distributions typical of thunderclouds has been developed in order to both validate the ground plane model used herein but also to better understand the electrical field distribution that would experiment a typical windmill. After that, a relative comparison of the electric field on different lightning protection configurations has been developed in order to understand the local behaviour of the field on the surroundings of the tip of the blade. An additional electrostatic analysis is devoted to explore the local relative variations of the electric field near the tip of the blades upon the descent of a downward leader modeled as a local charge. Finally, the zoning analysis is extended to the study of the whole windmill upon full rotation of the blades. Moreover, the zoning study is also performed on current an innovative receptors as a winglet geometry that is proposed and analyzed.
机译:本文提出了关于风车周围静电场分布的研究,以确定优先的雷电附着区(分区)[1]。现有的风力涡轮机研究是否经常建议使用滚动球面法[2],基于附着物理的最新模型也已应用于航空业[3]或作为风车的地面基础设施[4,5]。这项研究基于正向先导初始模型[6],并使用ASERIS-Zoning有限元代码进行了计算,该代码由集成了地平面模型和概率Zoning后处理的静电求解器组成。首先,已经对由雷云典型的不同电荷分布引起的地平面上的静电变化进行了初步分析,以便验证本文中使用的地平面模型,还可以更好地理解将试验典型风车的电场分布。在那之后,已经开发了在不同的雷电防护构造上的电场的相对比较,以了解在叶片的尖端周围环境中电场的局部行为。额外的静电分析致力于探索建模为局部电荷的向下引导线下降时叶片尖端附近电场的局部相对变化。最后,分区分析扩展到叶片完全旋转时对整个风车的研究。此外,还对目前提出并分析的作为小翼几何形状的新型受体进行了分区研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号