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Fitness-for-service of open-top storage tanks subjected to differential settlement

机译:经过差异定居的敞篷储罐的健身服务

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摘要

A method for evaluating the mechanical integrity of open-top cylindrical storage tanks subjected to a differential settlement is given. The settlement profile underneath the bottom circumference of the tank shell can be transformed into different harmonic components using the Fourier transformation. The existing method in American Petroleum Institute's standard API 653, which is currently used by the industry in North America, does not differentiate the effect of different harmonic components. Nevertheless, the proposed method evaluates a cumulative damage factor by considering the effects of first five harmonic components individually. The paper further discusses other limitations of the existing method in API 653 document. Numerous finite element ana-lysis (FEA) simulations are conducted to formulate and validate the proposed method by employing geometric nonlinear algorithm with nonlinear plastic material properties (GMNA) in ABAQUS finite element software. The trend for limiting settlement values with respect to different harmonic components under consideration and different tank geometries are discussed. The proposed method is validated by performing FEA using four actual settlement data profiles on different tank geometries. Lastly, the comparison is drawn between the FEA results, the existing API 653 method and the proposed method. The results of the allowable settlement indicate that the existing method is not consistent with the FEA findings. For some of the actual settlement data, the existing method results in overly conservative values and for others it gives non-conservative values. Thus, the existing method may not capture the true behavior of tanks under settlement and needs modifications. The results of allowable settlement from the proposed method are found to be consistent with the FEA results for all different settlement data and tank geometries. Therefore, it is recommended that the new method is used instead of the existing method.
机译:给出了一种评价经受差动沉降的敞开圆柱储罐的机械完整性的方法。在罐壳的底部圆周下方的沉降轮廓可以使用傅里叶变换转换成不同的谐波部件。美国石油研究所标准API 653的现有方法目前在北美使用的标准API 653不会区分不同谐波成分的影响。然而,所提出的方法通过考虑单独的前五次谐波分量的影响来评估累积损伤因子。本文进一步讨论了API 653文件中现有方法的其他限制。通过在ABAQUS有限元软件中采用具有非线性塑料材料特性(GmNA)的几何非线性算法,进行许多有限元ANA-裂解(FEA)模拟。讨论了在考虑和不同罐几何形状的不同谐波分量上限制沉降值的趋势。通过在不同罐几何形状上使用四个实际结算数据配置文件执行FEA来验证所提出的方法。最后,在FEA结果,现有API 653方法和所提出的方法之间绘制比较。允许沉降结果表明现有方法与FEA发现不一致。对于一些实际的结算数据,现有方法导致过度保守的值,并且其给予其提供非保守值。因此,现有方法可能不会在结算和需求修改下捕获坦克的真实行为。发现允许的方法的允许解决的结果与所有不同沉降数据和坦克几何形状的FEA结果一致。因此,建议使用新方法而不是现有方法。

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