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JOURNAL OF DESERT RESEARCH  2012, Vol. 32 Issue (3): 647-654    DOI:
Desert and Desertification     
Wind Tunnel Simulation of Windbreak Effect of Single-row Shelter Belts of Different Structure
TANG Yu-long1, AN Zhi-shan2, ZHANG Ke-cun2, TAN Li-hai2
1.Lanzhou Railway Design Institute Co. Ltd. Lanzhou 730000, China;
2.Dunhuang Gobi and Desert Ecological and Environment Research Station/Key Laboratory of Desert and Desertification, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China
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Abstract  Wind velocity, porosity and height of shelter belt exert a profound influence on airflow around the shelter belt, and the speed of airflow flowing through shelter belt will increase or decrease. The peripheral wind field around shelter belt could be divided into three parts according to wind rate change: slightly decelerating zone, significantly decelerating zone and transition zone. In wind tunnel experiment, we selected 10 groups of physical models with different porosity and height instead of realistic shelter belts; experimental data were automatically recorded. Based on the experimental data, isolines and variation trend curves of wind accelerating rate were obtained, with which the effective protective distance of shelter belt was calculated. The research has revealed the response law of accelerating rate, windbreak effect and effective protective distance to the wind speed, the porosity and the height of the shelter belts.
Key words:  porosity      forest model      windbreak effect      effective protective distance     
Received:  29 October 2011      Published:  20 May 2012
ZTFLH: 

X169

 

Cite this article: 

TANG Yu-long, AN Zhi-shan, ZHANG Ke-cun, TAN Li-hai. Wind Tunnel Simulation of Windbreak Effect of Single-row Shelter Belts of Different Structure. JOURNAL OF DESERT RESEARCH, 2012, 32(3): 647-654.

URL: 

http://www.desert.ac.cn/EN/     OR     http://www.desert.ac.cn/EN/Y2012/V32/I3/647

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