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Snow fences on slopes at high wind speed: physical modelling in the CSTB cold wind tunnel

机译:高风速的斜坡上的雪栅栏:CSTB冷风隧道中的物理造型

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In order to determine the effect of steep slopes on snowdrift generated by snow fences, we have conducted physical modeling experiments in the CSTB (Centre Scientifique et Technique du Batiment) cold wind tunnel as part of the European project "Access to Large Facilities". After an overview of previous studies and an accurate description of the drifting snow process inside the experimental chamber,  we present the main results obtained. (1) On flat areas, even for high wind speed, the acknowledged results for moderate wind are still valid: the porous snow fence (50%) is the most efficacious and the bottom gap increases the efficacy of the dense snow fence. (2) The steeper the slope is, the less effective all tested snow fences are. Their effectiveness decreases considerably: the snow catch is approximately divided by two for a slope of 10°. (3) Contrary to flat areas, on steep slopes, the "efficacy" is greater for a dense snow fence.
机译:为了确定陡坡对雪栅产生的雪花雪橇的影响,我们在CSTB(Centre Scientifique Et Techne Du Batiment)冷风隧道中进行了物理建模实验,作为欧洲项目的一部分“进入大型设施”。在先前的研究概述和实验室内的漂移雪过程的准确描述之后,我们提出了所获得的主要结果。 (1)在平坦的区域,即使对于高风速,适当的风力仍然有效:多孔雪栅栏(50%)是最有效的,底部间隙增加了致密的雪栅栏的功效。 (2)坡度较陡峭,所有测试的雪栅越差。它们的有效性显着降低:雪捕捉约为10°的斜率约为两个。 (3)与平坦的区域相反,在陡坡上,浓密的雪栅栏的“效能”更大。

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