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Elastic Analysis of Differential Settlements for Steel Storage Tank Foundations

机译:钢制储罐基础差异沉降的弹性分析

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Estimation of differential settlements for large steel storage tanks is a very important design consideration; however, there is a lack of readily available analysis tools which can be used to accurately and conveniently compute tank differential settlements under various bottom plate dimensions and soil stiffnesses. This paper presents a continuum-based, elastic analysis model for a uniformly loaded, circular tank foundation resting on soil. The analysis captures the three-dimensional nature of the soil-structure interactions and produces settlement profiles of the tank foundation and the surrounding soil. The soil is assumed to behave as a linear-elastic material in a semi-infinite half space, and the foundation is modeled as a circular plate with a finite thickness. The governing differential equations are derived based on energy principles and calculus of variations. Input parameters for the analysis model are the plate diameter, plate thickness and elastic constants of the soil and plate. Model validation includes comparing results from this study with those from the literature and from finite element analyses, and these comparisons show good agreement. Parametric studies are then carried out to investigate the effects of plate diameter, plate thickness, and soil stiffness on differential settlement between the center and the edge of the circular plate. Based on the results from the parametric studies, design charts for use in preliminary design of circular tank foundations are proposed to estimate the differential settlement for given soil properties and plate geometry.
机译:估算大型钢制储罐的差异沉降是一个非常重要的设计考虑因素。但是,缺乏可用于精确和方便地计算各种底板尺寸和土壤刚度下的储罐差异沉降的分析工具。本文提出了一个基于连续体的弹性分析模型,该模型用于基于均布荷载的圆形罐式基础。该分析捕获了土壤-结构相互作用的三维性质,并生成了罐基础和周围土壤的沉降曲线。假定土壤在半无限半空间中表现为线性弹性材料,并且将基础建模为厚度有限的圆形板。控制微分方程是基于能量原理和变化演算得出的。分析模型的输入参数是板直径,板厚度以及土壤和板的弹性常数。模型验证包括将本研究的结果与文献和有限元分析的结果进行比较,这些比较显示出很好的一致性。然后进行参数研究,以研究板直径,板厚度和土壤刚度对圆板中心和边缘之间的差异沉降的影响。根据参数研究的结果,提出了用于圆形罐基础的初步设计的设计图,以估算给定土壤特性和板几何形状的差异沉降。

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