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Buckling of tanks with a conical roof under harmonic settlement

机译:在谐波沉降下用锥形屋顶屈曲的坦克

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Buckling behavior of tanks with a conical roof under harmonic settlement has been researched in this paper. A real tank in engineering is taken into account and the harmonic settlement is applied to the bottom of the tank to simulate its buckling behavior. Results show that the tank wall will be subjected to a deformation mutation when the settlement reaches a critical value. It means that compared to the conical roof, the tank wall is more vulnerable to buckling. Because of the complexity added by the grid of rafters and rings on the roof, two different simplified models are presented. For the first model, the tank's roof is modified to an equivalent thickness based on the smeared method; for the other one, the roof is completely eliminated and its influence is represented by simply supported boundary conditions at the top of the tank wall. Analysis shows that the tank model without a roof can't reflect buckling behavior of the real tank in engineering very well. While the model with an equivalent thickness roof can avoid this deficiency and achieve high efficiency and accuracy. It's recommended to be applied to buckling analysis of tanks under settlement. Based on that, effects of wave numbers on the critical settlement for the three models are researched and compared. Result shows that the simplified tank model with an equivalent thickness roof presented in this paper is efficient and useful for buckling analysis of tanks with a conical roof under settlement.
机译:本文研究了谐波屋顶下坦克坦克的屈曲行为。考虑到工程中的真实罐,谐波沉降施加到坦克的底部以模拟其屈曲行为。结果表明,当沉降达到临界值时,罐壁将受到变形突变。这意味着与锥形屋顶相比,坦克壁更容易弯曲。由于椽子网格和屋顶上的环形添加的复杂性,提出了两种不同的简化模型。对于第一款模型,基于涂片方法,罐的屋顶被修改为等效的厚度;对于另一个,屋顶被完全消除,并且其影响通过简单地支撑在罐壁的顶部的边界条件来表示。分析表明,没有屋顶的油箱模型不能很好地反映真正的坦克的屈曲行为。虽然具有等效厚度屋顶的模型可以避免这种缺陷并实现高效率和准确性。建议应用于康复下坦克的屈曲分析。基于此,研究并比较了波数对三种模型的关键解决方案的影响。结果表明,本文提出的具有等效厚度屋顶的简化罐模型是有效且有用的,可用于在沉降下具有锥形屋顶的坦克的屈曲分析。

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