Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis area

Strong wind and dusty weather are the main factors causing wind-sand disasters in cotton fields in desert oasis area. In order to investigate the effect of sand-dust weather on wind speed fluctuation over near-surface cotton fields, field observations of wind speed and direction were carried out usi...

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Main Authors: Li Gao, Jianjun Cheng, Xiao Wu, Zhouyang Pan
Format: Article
Language:English
Published: Frontiers Media S.A. 2025-07-01
Series:Frontiers in Earth Science
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Online Access:https://www.frontiersin.org/articles/10.3389/feart.2025.1609235/full
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author Li Gao
Jianjun Cheng
Xiao Wu
Zhouyang Pan
author_facet Li Gao
Jianjun Cheng
Xiao Wu
Zhouyang Pan
author_sort Li Gao
collection DOAJ
description Strong wind and dusty weather are the main factors causing wind-sand disasters in cotton fields in desert oasis area. In order to investigate the effect of sand-dust weather on wind speed fluctuation over near-surface cotton fields, field observations of wind speed and direction were carried out using a two-dimensional ultrasonic anemometer, and the characteristics of wind speed fluctuation during clear-sky, blowing dust and sandstorm were analyzed. The results showed that the fluctuating wind speed at each height level increased with increasing height and wind speed in the three kinds of weather, with the fluctuation ranges being largest during sandstorms, followed by blowing dust, and smallest under clear-sky days. The correlation coefficient of fluctuating wind speed at each height level were all larger than 0.7, and the values at the heights of 1.5 and 2.0 m were all larger than 0.9, which indicated that there is a significant correlation between the fluctuating wind speed at each height. The wind speed fluctuation intensity is positively correlated with both height and average wind speed, the average values of fluctuation intensity in blowing dust and sandstorm are 1.375 and 2.33 times higher than those in the clear-sky days, respectively. Turbulence intensity decreases with the increase of height and average wind speed, and it is the smallest in the sandstorm. The results revealed the differential effects of extreme aeolian environments on the near-surface wind field in cotton fields, and provided a theoretical foundations for the prevention and control of wind and sand hazards in cotton fields in desert oasis.
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publisher Frontiers Media S.A.
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spelling doaj-art-4a99bf099a3445cfac795c2751a52df12025-07-18T05:30:31ZengFrontiers Media S.A.Frontiers in Earth Science2296-64632025-07-011310.3389/feart.2025.16092351609235Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis areaLi GaoJianjun ChengXiao WuZhouyang PanStrong wind and dusty weather are the main factors causing wind-sand disasters in cotton fields in desert oasis area. In order to investigate the effect of sand-dust weather on wind speed fluctuation over near-surface cotton fields, field observations of wind speed and direction were carried out using a two-dimensional ultrasonic anemometer, and the characteristics of wind speed fluctuation during clear-sky, blowing dust and sandstorm were analyzed. The results showed that the fluctuating wind speed at each height level increased with increasing height and wind speed in the three kinds of weather, with the fluctuation ranges being largest during sandstorms, followed by blowing dust, and smallest under clear-sky days. The correlation coefficient of fluctuating wind speed at each height level were all larger than 0.7, and the values at the heights of 1.5 and 2.0 m were all larger than 0.9, which indicated that there is a significant correlation between the fluctuating wind speed at each height. The wind speed fluctuation intensity is positively correlated with both height and average wind speed, the average values of fluctuation intensity in blowing dust and sandstorm are 1.375 and 2.33 times higher than those in the clear-sky days, respectively. Turbulence intensity decreases with the increase of height and average wind speed, and it is the smallest in the sandstorm. The results revealed the differential effects of extreme aeolian environments on the near-surface wind field in cotton fields, and provided a theoretical foundations for the prevention and control of wind and sand hazards in cotton fields in desert oasis.https://www.frontiersin.org/articles/10.3389/feart.2025.1609235/fullwind speed fluctuationfluctuation intensityturbulence intensitywind-sand flowcorrelationcotton fields
spellingShingle Li Gao
Jianjun Cheng
Xiao Wu
Zhouyang Pan
Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis area
Frontiers in Earth Science
wind speed fluctuation
fluctuation intensity
turbulence intensity
wind-sand flow
correlation
cotton fields
title Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis area
title_full Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis area
title_fullStr Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis area
title_full_unstemmed Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis area
title_short Effects of sand-dust weather on wind speed fluctuation over near-surface of cotton fields in desert oasis area
title_sort effects of sand dust weather on wind speed fluctuation over near surface of cotton fields in desert oasis area
topic wind speed fluctuation
fluctuation intensity
turbulence intensity
wind-sand flow
correlation
cotton fields
url https://www.frontiersin.org/articles/10.3389/feart.2025.1609235/full
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AT jianjuncheng effectsofsanddustweatheronwindspeedfluctuationovernearsurfaceofcottonfieldsindesertoasisarea
AT xiaowu effectsofsanddustweatheronwindspeedfluctuationovernearsurfaceofcottonfieldsindesertoasisarea
AT zhouyangpan effectsofsanddustweatheronwindspeedfluctuationovernearsurfaceofcottonfieldsindesertoasisarea