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CASE STUDY OF BUCKLING FAILURE OF A LARGE LIQUID STORAGE TANK

机译:大型储液罐屈曲破坏的案例研究

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摘要

Large cylindrical tanks are often used to store liquids like milk and chemicals for distribution. These structures are considered thin shells because of their geometry, dimensions, and aspect ratios. In this paper, an actual failure of a large vertical tank is investigated. The tank contained milk and buckled as a result of an internal vacuum caused by human error. Inspection done after failure revealed that an internal vacuum could have been created by a large drop in the inside air temperature. Such tanks are usually washed using extremely hot water. If the water temperature exceeded the manufacturer's recommendations and the tank is not vented during the cool-down cycle, the contracting air would have drawn a vacuum. Another possibility is that the tank may have been drained without venting the headspace above the milk. This would cause the fixed mass of air above the milk to expand and draw a vacuum. To investigate these scenarios we consider stability of a vertical cylindrical shell under external pressure. The critical pressure differential for buckling of a vertical cylindrical shell with closed ends subjected to uniform axial and radial pressure is known from basic theories of buckling. These equations are used to determine the critical pressure for lobar buckling. The results show that each of these scenarios could have caused failure of the tank. Recommendations to prevent future failures in such storage tanks and design considerations for tanks having arbitrary dimensions and aspect ratios are presented in the paper.
机译:大型圆柱罐通常用于存储牛奶和化学药品等液体以进行分配。这些结构由于其几何形状,尺寸和纵横比而被视为薄壳。本文研究了大型立式储罐的实际故障。由于人为错误导致的内部真空,该水箱中装有牛奶并弯曲。故障后进行的检查表明,内部空气温度的大幅下降可能会产生内部真空。此类水箱通常使用极热水清洗。如果水温超过制造商的建议,并且在冷却周期中水箱未排气,则压缩空气会产生真空。另一种可能性是,水箱可能已排空而未排空牛奶上方的顶部空间。这将导致牛奶上方的固定空气膨胀并产生真空。为了研究这些情况,我们考虑了垂直圆柱壳在外部压力下的稳定性。从屈曲的基本理论可知,用于使具有闭合端部的竖直圆柱形壳体屈曲的临界压力差可承受均匀的轴向和径向压力。这些方程式用于确定大弯屈的临界压力。结果表明,每种情况都可能导致储罐故障。本文提出了防止此类储罐将来发生故障的建议以及具有任意尺寸和纵横比的储罐的设计注意事项。

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