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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >A novel snow transport model for analytically investigating effects of wind exposure on flat roof snow load due to saltation
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A novel snow transport model for analytically investigating effects of wind exposure on flat roof snow load due to saltation

机译:一种新的雪运输模型,用于分析风暴露对盐水扁平屋顶雪荷载作用的影响

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摘要

This paper introduces a novel snow transport model for the analytical simulation of wind-induced snow transport on flat roofs. In the novel model, the differences between precipitation and deposited snow particles on roofs, including the differences in threshold friction velocity and fetch distance for saturated drifting state, are considered. Thus, snow drifting on a roof is divided into drifting without and during snowfall. The effects of terrain category and roof height are also considered using the friction velocity on roofs to compute snow transport rate instead of directly using the wind speed data reported by weather stations. Parametric analysis and case study are conducted to explain the novel model in detail and compare the results with those obtained from the model developed by O'Rourke a al. (2005). The estimated fetch distance for saturated snow drifting by the proposed approach in this study ranges from zero to thousands of meters, which is consistent with field measurement results and more reasonable than the use of constant values. Results of the case study indicate that the proposed snow transport model might be more reasonable because the effects of more factors are considered.
机译:本文介绍了一种新的雪传输模型,用于分析模拟平屋顶上的风致雪传输。在新模型中,考虑了降雨和屋顶积雪颗粒之间的差异,包括饱和漂移状态下的阈值摩擦速度和提取距离的差异。因此,屋顶上的积雪可分为无雪和降雪期间的积雪。还考虑了地形类别和屋顶高度的影响,使用屋顶上的摩擦速度来计算雪传输率,而不是直接使用气象站报告的风速数据。通过参数分析和案例研究详细解释了新模型,并将结果与O’Rourke a al.(2005)开发的模型进行了比较。本研究中提出的方法估计的饱和积雪漂移的提取距离为0到数千米,这与现场测量结果一致,比使用常量更合理。实例研究结果表明,由于考虑了更多因素的影响,所提出的雪输运模型可能更为合理。

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