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Wind loads and wind-resistant behaviour of large cylindrical tanks in square-arrangement group. Part 1: Wind tunnel test

机译:方布置组大圆柱形罐的风力荷载与防风性能。第1部分:风洞测试

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Large cylindrical floating-roof tanks, constructed as oil containers, are usually distributed regularly in open area and easily exposed to severe wind loads. However, wind pressures around these grouped squat tanks appear to have not been clearly given in design codes or thoroughly studied in existing researches. This paper conducts a detailed investigation on wind loads on the external wall of a four-tank group in square arrangement. To achieve that, wind tunnel tests are carried out on both empty and full tank groups, considering various wind angles and spacing. Results show that 3 regions in elevation can be identified on the tank shell according to the circumferential wind pressure distribution. The upper 2 regions cover a relatively small portion of the shell where excessive negative pressures are spotted, setting an alarm to the design of the top angle and stiffening rings. By comparing results on grouped tanks to those on an isolated tank, grouping effects concerning wind angle, tank position in group and spacing are discussed. Deviations on pressure distributions that will compromise structural safety are outlined, including the increase of negative pressures, the shift of maximum pressure locations as well as the change of positive pressure range. And, several potentially unfavourable wind pressure distributions are selected for further analyses.
机译:构造为油容器的大型圆柱形浮动车顶罐通常定期在开放区域分布,并且容易暴露于严重的风力载荷。然而,这些分组蹲下槽周围的风压似乎没有在设计代码中清楚地描述或在现有的研究中彻底研究。本文在方形排列中对四罐组外壁上的风荷载进行了详细的调查。为此,考虑各种风角和间隔,在空和全坦克组上进行风洞测试。结果表明,根据圆周风压分布,可以在罐壳上识别出升高的3个区域。上部2区域覆盖壳体的相对较小的壳体,其中发现过大的负压,将警报设置为顶角和加强环的设计。通过将分组坦克的结果与分离罐的结果进行比较,讨论了关于风角的分组效果,组和间距中的罐位置。概述了将危及结构安全性的压力分布的偏差,包括负压的增加,最大压力位置的偏移以及正压范围的变化。并且,选择几个可能不利的风力压力分布以进一步分析。

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