基于局地气象资料,对环境风对短跑的影响进行了精细化分析。

IF 2.6 3区 地球科学 Q2 BIOPHYSICS
Weijian Zhu, Bo Li, Junpeng Feng, Chongran Zhao, Yuanzhao Zhang, Yuxin Li
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引用次数: 0

摘要

环境因素在短跑运动员的表现中起着关键作用,其中环境风的影响尤为显著。本文以中国国家体育场为例,结合当地气象风向资料,详细分析了环境风对短跑的影响。利用北京气象塔2013 - 2017年的风速和风向数据,分析了当地风气候特征和风场。在风洞中建立了局地风场模型并进行了模拟,在改进的NSC模型上进行了风环境试验,得到了100米赛道上的风速分布,并将其与改进的Mureika冲刺模型相结合,评估了环境风对冲刺性能的影响。考虑到当地的风气候特征,夏季是NSC举办100米比赛的最佳季节,夏季的主导风向和平均风速对比赛成绩的影响相对较小。具体来说,在赛道中点处,2米/秒的顺风会使性能提高0.082到0.111秒,而2米/秒的逆风通常会使性能降低不超过0.13秒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Refined analysis for the effects of ambient wind on sprint based on the local meteorological data.

Environmental factors play a pivotal role in determining sprinter performance, with ambient wind being particularly influential. This study provides a detailed analysis of the effects of ambient wind on sprinting, using the National Stadium of China (NSC) as a case study and incorporating local meteorological wind data. Wind speed and direction data were obtained from the Beijing Meteorological Tower (BMT) for the period 2013 to 2017, enabling an analysis of local wind climate characteristics and the wind field. A local wind field model was developed and simulated in a wind tunnel, and wind environment tests on a refined NSC model yielded the wind speed distribution along the 100 m track, which was then integrated with the enhanced Mureika sprint model to assess the impact of ambient wind on sprint performance. The results, taking local wind climate characteristics into account, suggest that summer is the optimal season for holding 100 m competitions at the NSC, as the dominant wind direction and average wind speed during this period exert relatively small impact on performance. Specifically, a 2 m/s tailwind at the track's midpoint improves performance by 0.082 to 0.111s, whereas a 2 m/s headwind generally reduces performance by no more than 0.13s.

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来源期刊
CiteScore
6.40
自引率
9.40%
发文量
183
审稿时长
1 months
期刊介绍: The Journal publishes original research papers, review articles and short communications on studies examining the interactions between living organisms and factors of the natural and artificial atmospheric environment. Living organisms extend from single cell organisms, to plants and animals, including humans. The atmospheric environment includes climate and weather, electromagnetic radiation, and chemical and biological pollutants. The journal embraces basic and applied research and practical aspects such as living conditions, agriculture, forestry, and health. The journal is published for the International Society of Biometeorology, and most membership categories include a subscription to the Journal.
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