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计及大气条件波动与地形特征差异的风机引雷能力分析OA

Triggered lightning ability of wind turbine considering atmospheric condition fluctuations and terrain feature differences

中文摘要英文摘要

基于风机叶片雷击上行先导起始的物理机制,文中提出下行先导头部临界距离的概念,通过求解该临界距离,可有效判定大气条件波动和地形特征差异下风机的引雷能力.分析表明,当空气压强降低、温度上升、湿度下降时,风机引雷能力将出现不同程度的弱化,而高气压、低温、高湿的共同作用,将导致风机引雷能力显著增强.与此同时,在所设的典型地形特征中,平原地区的风机引雷能力较弱,而位于对称峰顶或单一斜坡处的风机引雷能力较强.地面倾角及斜坡对背景电场的畸变是影响对称峰顶和单一斜坡下风机引雷能力的关键因素.此外,结合复杂地形特征进一步分析发现,当风机位于具有较大地面倾角的对称峰顶或不对称峰顶时,其引雷能力大幅增强.上述关于风机引雷能力的分析结果已得到有效验证.相关结论为研究复杂环境下风机的引雷能力特性及制定相应的防雷策略,提供了必要的基础和有益参考.

Based on the physical mechanism of the lightning upward leader inception from a wind turbine blade,the concept of downward leader tip critical distance is proposed.By solving downward leader tip critical distance,it can effectively determine the triggered lightning ability of wind turbine under atmospheric condition fluctuations and terrain feature differences.Analysis shows that when air pressure decreases,temperature increases,and humidity decreases,triggered lightning ability of wind turbine weakens to varying degrees.However,the combined effect of high air pressure,low temperature,and high humidity significantly enhances triggered lightning ability of wind turbine.At the same time,among the typical terrain features,wind turbine on flat plain has weaker triggered lightning ability,while those on symmetrical peaks or single slopes have a stronger triggered lightning ability.The ground inclination angle and the distortion of background electric field caused by the slope are key factors affecting triggered lightning ability of wind turbine under symmetrical peaks and single slopes.In addition,combined with complex terrain features,when wind turbine is located at symmetrical or asymmetrical peaks with large ground inclination angle,triggered lightning ability of wind turbine is greatly enhanced.The correctness of the analysis results related to triggered lightning ability of wind turbine mentioned above is also effectively verified.The relevant conclusions provide the necessary foundation and useful reference for studying triggered lightning characteristics and formulating corresponding lightning protection strategies for wind turbine in complex environments.

雷宇航;王广旭;潘超

东北电力大学电气工程学院,吉林 吉林 132012东北电力大学电气工程学院,吉林 吉林 132012东北电力大学电气工程学院,吉林 吉林 132012

信息技术与安全科学

大气条件波动地形特征差异风机引雷能力上行先导起始下行先导头部临界距离

atmospheric condition fluctuationsterrain feature differenceswind turbinetriggered lightning abilityupward leader inceptiondownward leader tip critical distance

《电力工程技术》 2026 (8)

93-104,12

国家重点研发计划资助项目(2022YFB2404000)本文得到吉林市科技创新发展计划项目(20240103020)资助

10.12158/j.2096-3203.2026.08.009

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