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Buckling of cylindrical open-topped steel tanks under wind load

机译:风荷载作用下的圆柱形敞口钢罐的屈曲

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Vertical cylindrical welded steel tanks are typical thin-walled structures which are very susceptible to buckling under wind load. This paper investigates the buckling behavior of open-topped steel tanks under wind load by finite element simulation. The analyses cover six common practical tanks with volumes of 2×10~3m~3 to 100×10~3m~3 and height-to-diameter ratios H/D<1. The linear elastic bifurcation analyses are first carried out to examine the general buckling behavior of tanks under wind load, together with comparison to that of tanks under uniform pressure and windward positive pressure (only loaded by positive wind pressure in the windward region). The results show that for larger tanks in practical engineering, the stability carrying capacity of wind load is relatively lower. It is also indicated that the buckling behavior of tanks under wind load is governed by the windward positive pressure while wind pressure in other region of tank essentially has no influence on the buckling performance. The geometrically nonlinear analyses are then conducted to investigate the more realistic buckling behavior of tanks under wind load. It is found that the buckling behaviors of perfect tanks and imperfect tanks are much different. The weld induced imperfection only has little influence on the wind buckling behavior while the classical buckling mode imperfection has significant influence, leading to a considerable reduction of wind buckling resistance. The influences of thickness reduction of cylindrical wall, liquid stored in the tank and wind girder on the buckling behavior are also examined. It shows that the thickness reduction of cylindrical wall considerably reduces the wind buckling resistance while sufficient liquid stored in the tank and wind girder significantly increase the wind buckling resistance.
机译:立式圆柱形焊接钢制储罐是典型的薄壁结构,在风荷载作用下极易弯曲。本文通过有限元模拟研究了敞顶式钢罐在风荷载作用下的屈曲行为。分析涵盖了6个常见的实用储罐,其容积为2×10〜3m〜3至100×10〜3m〜3,且高径比H / D <1。首先进行线性弹性分叉分析,以检查在风荷载作用下的储罐的总体屈曲性能,并与在均匀压力和迎风正压(仅在迎风区域受正风压加载)的储罐的屈曲行为进行比较。结果表明,对于实际工程中较大的储罐,风荷载的稳定承载能力相对较低。还表明,在风荷载作用下,罐的屈曲行为受迎风正压控制,而罐其他区域的风压对屈曲性能基本没有影响。然后进行几何非线性分析,以研究风荷载作用下坦克的更实际的屈曲行为。发现理想罐和不完美罐的屈曲行为有很大不同。焊接引起的缺陷对屈曲行为的影响很小,而经典的屈曲模式缺陷则有很大的影响,导致屈曲阻力的显着降低。还研究了圆柱壁厚度的减小,储罐中存储的液体和风梁对屈曲行为的影响。结果表明,减小圆柱壁的厚度可显着降低抗曲折性,而储存在罐和风箱中的足够液体会显着增加抗曲折性。

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