Analyzing and Forecasting Lightning Flashes and the Related Wind Gusts at a Wind Energy Power Plant in a Hilly Region of Western Greece

IF 1 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Atmosfera Pub Date : 2021-09-02 DOI:10.20937/atm.53043
A. Argiriou, Constaninos Kolokythas, V. Kotroni
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Abstract

Wind energy power plants are vulnerable, among others, to abrupt weather changes caused especially by thunderstorms associated with lightning activity and the accompanying severe wind gusts and rapid wind direction changes. Due to a range of damages such phenomena may cause, the knowledge of the relationship between the storm systems and the produced wind field is essential to establish a wind power plant during the construction and operation phase as well. In first part of this study, the relationship of severe wind gusts in regard to lightning activity in a wind farm in a hilly region of western Greece is investigated. Wind data come from wind turbines covering a period of three years (2012-2014), while the corresponding lightning data from the ZEUS lighting detection network. The analysis shows that wind gusts are well correlated to lightning strikes. Furthermore, correlation maximizes during winter when well organized weather systems affect the area and minimum in summer as a result of local storms due to thermal instability. In the second part the study focuses on the development of an ANN model in order to forecast these two parameters in a horizon of 1-h ahead by using except for the wind data, four variables namely CAPE, TTI, wind speed at the 500 hPa isobaric level and the 0-6 km vertical wind shear. The results revealed that proposed model could be considered as a promising tool in simulating the occurrence both of wind gusts and lightning flashes providing a relatively good evidence of the possibility of occurrence of such events.
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希腊西部丘陵地区一座风能发电厂的闪电和相关阵风的分析与预测
风能发电厂容易受到天气突变的影响,尤其是与闪电活动相关的雷暴以及随之而来的严重阵风和快速风向变化。由于这种现象可能造成一系列损害,了解风暴系统和产生的风场之间的关系对于在施工和运营阶段建立风力发电厂也是至关重要的。在本研究的第一部分中,调查了希腊西部丘陵地区一个风电场中与闪电活动有关的强烈阵风的关系。风力数据来自三年(2012-2014年)的风力涡轮机,而相应的闪电数据来自ZEUS照明检测网络。分析表明,阵风与雷击有很好的相关性。此外,当组织良好的天气系统影响该地区时,相关性在冬季最大,而由于热不稳定导致的局部风暴,相关性在夏季最小。在第二部分中,研究重点是开发一个ANN模型,以便通过使用除风数据外的四个变量,即CAPE、TTI、500hPa等压水平下的风速和0-6km垂直风切变,在未来1h的地平线上预测这两个参数。结果表明,所提出的模型可以被认为是模拟阵风和闪电发生的一种很有前途的工具,为此类事件发生的可能性提供了相对良好的证据。
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来源期刊
Atmosfera
Atmosfera 地学-气象与大气科学
CiteScore
2.20
自引率
0.00%
发文量
46
审稿时长
6 months
期刊介绍: ATMÓSFERA seeks contributions on theoretical, basic, empirical and applied research in all the areas of atmospheric sciences, with emphasis on meteorology, climatology, aeronomy, physics, chemistry, and aerobiology. Interdisciplinary contributions are also accepted; especially those related with oceanography, hydrology, climate variability and change, ecology, forestry, glaciology, agriculture, environmental pollution, and other topics related to economy and society as they are affected by atmospheric hazards.
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