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首页> 外文期刊>International Journal of Ventilation >Wind tunnel and CFD analysis of wind-induced natural ventilation in sheds roof building: impact of alignment and distance between sheds
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Wind tunnel and CFD analysis of wind-induced natural ventilation in sheds roof building: impact of alignment and distance between sheds

机译:棚屋屋顶建筑风沟自然通风的风洞和CFD分析:棚子对齐与距离的影响

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摘要

Sheds roof is a natural ventilation strategy that presents roof openings working as air collectors or extractors. A detailed review of the literature indicates a lack of research analyzing the impact of different sheds roof shapes and roof configurations on natural ventilation potential. This paper aim is to evaluate the impact of changes in distance and alignment between windcatcher and leeward sheds roof. The methodology was Computational Fluid Dynamic (CFD) simulation. Tests were performed in an atmospheric boundary layer wind tunnel on a 1:15 scale model to evaluate the accuracy of CFD simulation in different design configurations of sheds roof. The analysis showed that CFD simulations are generally in good agreement with the wind tunnel tests. The difference between the most of the monitored points in the two tools used had errors below 10%. Besides this, the results show that changes in alignment of the sheds and increasing the distance between them decrease and increase the internal airflow to the leeward and windward sheds roof, respectively. In the first case it is due to the reduction in the sheds openings area. In the second these changes turn the sheds more effective in the air capture.
机译:棚屋屋顶是一种自然通风策略,呈现为空中收集器或提取器的屋顶开口。对文献的详细审查表明,缺乏研究分析了不同棚屋屋顶形状和屋顶配置对自然通风潜力的影响。本文的目的是评估绕道和背风棚屋顶之间的距离和对齐变化的影响。该方法是计算流体动态(CFD)模拟。在1:15规模模型上在大气边界层风洞中进行测试,以评估不同设计配置的CFD仿真的精度。该分析表明,CFD模拟通常与风洞试验吻合良好。使用的两种工具中的大多数受监视点之间的差异在10%以下的误差。除此之外,结果表明,棚屋对齐和增加它们之间的距离的变化分别降低并增加内部气流,并将内部气流增加到背风和挡风棚顶上。在第一种情况下,它是由于棚屋开口区域的减少。在第二种变化中,在空中捕获中将棚屋变得更加有效。

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