Computational Simulation of Wind Loads on Three Curved Eave Models with Different Height-Width Relationships

Guilherme S. Teixeira, Leonardo G. Teodoro Júnior, Marco D. Campos
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Abstract

This work deals with the effects of wind loads on two industrial shed models with curved eaves aspect of different height-to-width ratios. Using Ansys Workbench software, the external pressure coefficients for the entire roof by applying refinement levels were determined. Also were studied the quality of the unstructured and tetrahedral grid according to recommendations to ensure greater efficiency in the simulation results. The results generated provided evidence that the wind in the transverse direction is more damaging in the windward region: for a wind at 45º the most critical region appeared both windward and leeward in the model with a ratio of h/b=0.5 (Model 1) and to windward in the models with a ratio of h/b=1 (Model 2) and h/b=1.5 (Model 3). The leeward suctions increased due to the reduction in the height-width ratio considering a wind direction of 45º. The increase in this ratio intensified the values of the external pressure coefficients in the windward region for the 90º wind direction.
风荷载对三种不同高宽比的弧形屋檐模型的计算模拟
这项研究探讨了风荷载对两个具有不同高宽比弧形屋檐的工业厂房模型的影响。使用 Ansys Workbench 软件,通过应用细化级别确定了整个屋顶的外部压力系数。此外,还根据建议研究了非结构网格和四面体网格的质量,以确保提高模拟结果的效率。生成的结果证明,横向风对迎风区的破坏更大:对于 45º 的风,在 h/b=0.5 的模型(模型 1)中,迎风区和背风区都是最关键的区域,而在 h/b=1 的模型(模型 2)和 h/b=1.5 的模型(模型 3)中,最关键的区域在迎风区。在风向为 45º 的情况下,由于高宽比减小,背风面的吸力增大。在风向为 90º 的情况下,该比值的增加加剧了迎风区的外部压力系数值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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