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Seismic response analysis models of an oil storage tank with a floating roof

机译:浮顶储油罐的地震反应分析模型

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Purpose - The purpose of this paper is to investigate the effects of the finite element models on the response of a free surface or a floating roof, which is important for safety assessment of oil storage tanks. Design/methodology/approach - Structural analyses of shell structures using the three-dimensional finite element method (FEM), potential flow analyses by FEM, and fluid-structure interaction analyses by strong coupling of the structural and fluid analyses were performed. In-house software was utilized for computations shown in this paper except the solver for non-symmetric sparse matrix. Findings - A model with a rigid tank and an elastic roof was confirmed to be able to perform the seismic response analysis most effectively from the viewpoint of computational cost with no reduction in accuracy. Research limitations/implications - The stress distribution on the floating roof will be evaluated to assess the safety of oil storage tanks subjected to seismic waves in the future research. Originality/value - This paper shows the dynamic responses of a liquid storage tank subjected to seismic motion using four different analysis models and the results were compared. It was concluded that a model with a rigid tank and an elastic roof can perform the seismic response analysis most effectively from the viewpoint of both accuracy and computational cost.
机译:目的-本文的目的是研究有限元模型对自由表面或浮顶响应的影响,这对于储油罐的安全评估很重要。设计/方法/方法-使用三维有限元方法(FEM)对壳结构进行结构分析,通过FEM进行势流分析,并通过结构和流体分析的强耦合进行流固耦合分析。除非对称稀疏矩阵的求解器外,本文还使用内部软件进行计算。发现-从计算成本的角度来看,具有刚性罐和弹性顶板的模型可以最有效地执行地震响应分析,而不会降低精度。研究的局限性/意义-在未来的研究中,将对浮顶上的应力分布进行评估,以评估受到地震波影响的储油罐的安全性。原创性/价值-本文使用四种不同的分析模型显示了储罐在地震作用下的动力响应,并对结果进行了比较。结论是,从准确性和计算成本的角度来看,具有刚性罐和弹性顶板的模型可以最有效地执行地震响应分析。

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