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Nonlinear numerical evaluation of large open-top aboveground steel welded liquid storage tanks excited by seismic loads

机译:地震作用下大型敞口地上钢制焊接液体储罐的非线性数值评估

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A numerical study is conducted using finite element models of large, circular, cylindrical, aboveground, steel, open-top, liquid storage tanks subjected to horizontal seismic forces. Nonlinearities of both material properties and geometry deformations are included. Soil-structure interactions are implemented into the finite element models by using a series of elastic springs representing a stiff soil foundation. Hydrodynamic hoop stresses, elephant's foot buckling, and uplift are measured for tanks with height to radius ratios, or aspect ratios, between 0.4 and 2.0. The finite element models are compared to the provisions of API 650 Annex E, with special attention to the anchorage ratio, J. The results show that, while the finite element models are much more complex than the theoretical and empirical equations provided in API 650, the total hoop and axial compressive stresses are comparable. Furthermore, the anchorage ratio limits set by API 650 seem to be in good agreement with the finite element models in terms of uplifting behavior.
机译:使用大型,圆形,圆柱形,地上,钢,敞顶,液体储罐承受水平地震力的有限元模型进行了数值研究。包括材料特性和几何变形的非线性。通过使用代表弹性土壤基础的一系列弹性弹簧,将土壤-结构相互作用实现到有限元模型中。对于高度与半径之比或纵横比在0.4到2.0之间的水箱,要测量流体动力环向应力,象脚屈曲和隆起。将有限元模型与API 650附录E的规定进行了比较,并特别注意了锚固比J。结果表明,尽管有限元模型比API 650中提供的理论和经验公式复杂得多,总的环向和轴向压缩应力是可比的。此外,就提升行为而言,API 650设定的锚固率极限似乎与有限元模型非常吻合。

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