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Numerical Evaluation of the Scale Problem on the Wind Flow of a Windbreak

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Journal Sci Rep
Specialty Science
Date 2014 Oct 15
PMID 25311174
Citations 3
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Abstract

The airflow field around wind fences with different porosities, which are important in determining the efficiency of fences as a windbreak, is typically studied via scaled wind tunnel experiments and numerical simulations. However, the scale problem in wind tunnels or numerical models is rarely researched. In this study, we perform a numerical comparison between a scaled wind-fence experimental model and an actual-sized fence via computational fluid dynamics simulations. The results show that although the general field pattern can be captured in a reduced-scale wind tunnel or numerical model, several flow characteristics near obstacles are not proportional to the size of the model and thus cannot be extrapolated directly. For example, the small vortex behind a low-porosity fence with a scale of 1:50 is approximately 4 times larger than that behind a full-scale fence.

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References
1.
Araujo A, Parteli E, Poschel T, Andrade J, Herrmann H . Numerical modeling of the wind flow over a transverse dune. Sci Rep. 2013; 3:2858. PMC: 3790208. DOI: 10.1038/srep02858. View

2.
Mendoza M, Succi S, Herrmann H . Flow through randomly curved manifolds. Sci Rep. 2013; 3:3106. PMC: 3813940. DOI: 10.1038/srep03106. View

3.
Stovern M, Felix O, Csavina J, Rine K, Russell M, Jones R . Simulation of windblown dust transport from a mine tailings impoundment using a computational fluid dynamics model. Aeolian Res. 2015; 14:75-83. PMC: 4303573. DOI: 10.1016/j.aeolia.2014.02.008. View