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Casing Burst Strength Degradation Due to Casing Wear

机译:套管磨损导致套管爆裂强度降低

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Casing integrity management is crucial, especially in wells experiencing severe casing wall degradation. Knowledge of stress distribution in worn casing helps predict where a casing failure occurs first. In industrial practice, a common method is to estimate the reduction of the casing burst strength in worn casing using API burst strength equation with a linear reduction in the remaining wall thickness or wear percentage equivalent to a “uniform-worn” casing model. This study focuses on building a rigorous engineering model for burst strength degradation prediction based on “crescent shape” casing wear. This model calculates the hoop strength directly, including the local bending in the thinner portion of the “crescent-worn” casing. This paper has developed a mathematical model to calculate the hoop strength of worn out casing with force and moment balance equations. This study finds the calculation of reduced strength using the linear wear model to be overly conservative because it only focuses on the stress at the thinnest portion of the worn casing. The stress predicted in this paper is similar to the results obtained from the finite element method (FEM), which validates equations and results obtained from this paper. The developed model is generic and can apply to casings, risers, and tubings.
机译:套管完整性管理至关重要,特别是在遇到严重套管壁退化的井中。了解磨损套管中的应力分布有助于预测套管故障首先发生的位置。在工业实践中,一种常用的方法是使用API​​爆破强度方程式估算磨损套管中套管爆破强度的降低,而剩余壁厚或磨损百分比的线性减小等效于“均匀磨损”套管模型。这项研究的重点是基于“新月形”套管磨损建立严格的工程模型来预测爆裂强度退化。该模型直接计算出环向强度,包括“新月磨损”套管较薄部分的局部弯曲。本文建立了一个数学模型,利用力和力矩平衡方程来计算磨损套管的环向强度。这项研究发现,使用线性磨损模型进行强度折算的方法过于保守,因为它只关注磨损套管最薄部分的应力。本文中预测的应力类似于从有限元方法(FEM)获得的结果,该方法验证了从本文获得的方程式和结果。开发的模型是通用模型,可以应用于套管,立管和管道。

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