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The uplift effect of bottom plate of aboveground storage tanks subjected to wind loading

机译:风荷载作用下地上储罐底板的隆升效应

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Because aboveground storage tanks are usually empty during construction, inspection and repair periods, they are more vulnerable to buckling due to wind loading than they are in use filled with liquid product. The uplift effect of the bottom plate of empty storage tanks due to wind pressure is investigated in this work. The buckling behavior of two sets of tanks were studied using finite element analysis (FEA): (1) tanks with bottom plate modeled directly in the analysis and (2) tanks without bottom plate but suitable boundary conditions applied in the analysis. Linear bifurcation analysis (LBA) and geometrically nonlinear analysis including imperfections (GNIA) are performed to obtain the deformation shapes and buckling capacities of tanks. The soil supporting the with-bottom tanks were modeled using nonlinear compression only springs connected to each node of the bottom plate. The buckling modes and the results from GNIA show that when a bottom is included into a tank FEA simulation, instead of fixed, the buckling pressure load will be substantially reduced for slender tanks having height to diameter ratio greater than 1/3. However, the broad tanks having height to diameter ratio less than 1/3 experience relatively small reduction in budding load.
机译:由于地上储罐在施工,检查和维修期间通常是空的,因此与使用中填充液体产品的储罐相比,它们更容易因风荷载而屈曲。在这项工作中,研究了空储罐底板由于风压而产生的隆升效应。使用有限元分析(FEA)研究了两组罐的屈曲行为:(1)在分析中直接模拟有底板的罐,以及(2)在分析中应用了合适边界条件的无底板的罐。进行线性分叉分析(LBA)和包括缺陷的几何非线性分析(GNIA),以获得罐的变形形状和屈曲能力。使用仅连接到底板每个节点的非线性压缩弹簧对支撑底部储罐的土壤进行建模。屈曲模式和GNIA的结果表明,如果将底部包括在水箱FEA模拟中,而不是将其固定,则对于高径比大于1/3的细长水箱,屈曲压力载荷将大大降低。但是,高度与直径之比小于1/3的宽型水箱的出芽负荷降低相对较小。

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