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Wind loads and wind-resistant behaviour of large cylindrical tanks in square-arrangement group. Part 2: CFD simulation and finite element analysis

机译:方布置组大圆柱形罐的风力荷载与防风性能。第2部分:CFD仿真和有限元分析

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摘要

To investigate the structural behaviour of grouped tanks under wind loads, 2 problems need to be figured out, wind pressures on tank shells and critical loads of the shell under these pressure distribution patterns. Following the wind tunnel tests described in the companion paper, this paper firstly seeks to obtain wind loads on the external wall in a squarely-arranged cylindrical tank group by numerical simulation, considering various layouts. The outcomes demonstrate that the numerical method can provide similar results on wind pressures and better insights on grouping effects through extracted streamlines. Then, geometrically nonlinear analyses are performed using several selected potentially unfavourable wind pressure distributions. It is found that the critical load is controlled by limit point buckling when the tank is empty while excessive deformations when the tank is full. In particular, significant reductions of wind resistance are found on grouped full tanks compared to the isolated tank, considering both serviceability and ultimate limit state, which should receive special attention if the tank is expected to resist severe wind loads with the increase of liquid level.
机译:为了研究风力载荷下分组罐的结构行为,需要弄清楚2个问题,在这些压力分布图案下坦克壳体上的风压和壳体的临界负荷。在伴随纸上描述的风洞测试之后,本文首先旨在通过数值模拟在正面布置的圆柱形罐组中获得风力载荷,考虑到各种布局。结果表明,数值方法可以通过提取的流线提供对风压和对分组效果的更好的见解提供类似的结果。然后,使用几个所选择的潜在不利的风压分布来执行几何非线性分析。发现当坦克空气时,通过限制点弯曲控制临界负荷,而罐充满时过度变形。特别是,与隔离罐相比,在分组的全罐中发现了抗风阻力的显着减少,考虑到可维护性和最终的极限状态,如果预计随着液体水平的增加,应特别注意。

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