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Mean airflow flux structure affected by windbreaks
AbstractIn order to study the airflow through a wind barrier, it is necessary to obtain a complete quantification of the barrier effect. The changes in soil and other micrometeorological elements and the influence of windbreaks on plants and animals are consequences of variations of wind at the downflow side. The decrease of the wind speed depends on the porosity, the height and length of the barrier, on atmospheric stability and on soil aerodynamic characteristics. Our objectives were to develop a quantitative, semi-empirical model of airflow normal to narrow windbreaks of various porosities under atmospheric conditions of neutral stability and to compare the results with experimental data.
Mean airflow flux structure affected by windbreaks
AbstractIn order to study the airflow through a wind barrier, it is necessary to obtain a complete quantification of the barrier effect. The changes in soil and other micrometeorological elements and the influence of windbreaks on plants and animals are consequences of variations of wind at the downflow side. The decrease of the wind speed depends on the porosity, the height and length of the barrier, on atmospheric stability and on soil aerodynamic characteristics. Our objectives were to develop a quantitative, semi-empirical model of airflow normal to narrow windbreaks of various porosities under atmospheric conditions of neutral stability and to compare the results with experimental data.
Mean airflow flux structure affected by windbreaks
Gardiol, J.M. (author) / Mazzeo, N.A. (author)
Energy and Buildings ; 15 ; 299-304
1991-01-01
6 pages
Article (Journal)
Electronic Resource
English
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