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Analysis of uplift behavior of the shell-to-bottom joint of a seismically-loaded oil storage tank using axisymmetric solid finite element method

机译:轴对称固体有限元法用轴对称储油箱壳对底部接头的提升行为分析

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Above-ground cylindrical storage tanks are widely used in the petroleum and chemical industries. Most of these tanks are unanchored and rest freely on flexible foundations. The shell-to-bottom joint of an unanchored oil storage tank will upliftdue to strong horizontal seismic excitation, and a large plastic strain occurs cyclically in this joint.Studies into the seismic response of unanchored liquid storage tanks considering the uplift behavior were made by many researchers. These were put forward from a viewpoint of the vibration of the fluid-filled cylindrical tanks due to horizontal seismicexcitation, and useful information was derived on the relation between the seismic input and the uplift displacement. However, because of the complexity of the elastic-plastic, large displacement problem of the uplift behavior, there is little researchconcerning the relationship between the large plastic peak strain at the toe of the fillet weld in the shell-to-bottom joint and the seismic input.This paper presents the elastic-plastic, large displacement behavior of the uplifted shell-to-bottom joint which is analyzed for the uplifted joint model using an axisymmetric finite element method instead of a 3D dynamic analysis model. In this analysis, the complex uplift model is transformed into a simplified axisymmetric model from a viewpoint of the stress and strain in the shell-to-bottom joint. The shell-to-bottom joint is modeled using solid elements in order to consider the effect of the weldmetal shape on the stress and strain at the toe, and the foundation is modeled using a Winkler's elastic spring. Relationships between the uplifting force and the uplift displacement at the joint, and between the uplifting force and the peak strain at the toe are presented.
机译:地上圆柱形储罐广泛用于石油和化学工业。这些坦克的大多数都没有被自由地对灵活的基础自由休息。未经警告储油罐的壳到底部接头将提升到强烈的水平地震激发,并且在这种关节中循环地发生大的塑性应变。考虑到许多隆起行为的未定罪储罐的地震反应。研究人员。从流体填充圆柱形罐引起的振动的观点出发,由于水平地震镜,并且有用的信息得到了地震输入与隆起位移之间的关系。然而,由于弹性塑料的复杂性,大量的隆起行为问题,几乎没有关于壳体焊接在壳体到底关节和地震中脚趾的大塑料峰应变之间的关系的研究输入。使用轴对称有限元方法而不是3D动态分析模型,对提升的壳体到底部接头的弹性塑料,大量位移行为进行了升高的壳体底部接头,其用于升起的接头模型。在该分析中,从壳到底部接头中的应力和应变的观点来看,复杂的隆起模型转变为简化的轴对称模型。壳到底部接头采用固体元素建模,以便考虑焊接物质对脚趾的应力和应变的影响,并且使用Winkler的弹性弹簧进行建模。提出了升起力与接头处的隆起位移的关系,以及脚趾处的振缩力与升降力和峰值应变之间的关系。

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