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Enhancement of leak rate estimation model for corroded cracked thin tubes

机译:腐蚀裂纹细管泄漏率估算模型的增强

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摘要

During the last couple of decades, lots of researches on structural integrity assessment and leak rate estimation have been carried out to prevent unanticipated catastrophic failures of pressure retaining nuclear components. However, from the standpoint of leakage integrity, there are still some arguments for predicting the leak rate of cracked components due primarily to uncertainties attached to various parameters in flow models. The purpose of present work is to suggest a leak rate estimation method for thin tubes with artificial cracks. In this context, 23 leak rate tests are carried out for laboratory generated stress corrosion cracked tube specimens subjected to internal pressure. Engineering equations to calculate crack opening displacements are developed from detailed three-dimensional elastic-plastic finite element analyses and then a simplified practical model is proposed based on the equations as well as test data. Verification of the proposed method is done through comparing leak rates and it will enable more reliable design and/or operation of thin tubes.
机译:在过去的几十年中,已经进行了许多有关结构完整性评估和泄漏率估计的研究,以防止保压核组件发生意料之外的灾难性故障。然而,从泄漏完整性的角度来看,仍然存在一些用于预测破裂部件泄漏率的争论,这主要是由于流模型中各种参数的不确定性所致。本工作的目的是提出一种带有人工裂缝的细管泄漏率估算方法。在这种情况下,对承受内部压力的实验室产生的应力腐蚀破裂的管样品进行了23次泄漏率测试。通过详细的三维弹塑性有限元分析,建立了计算裂纹张开位移的工程方程,然后根据方程和试验数据提出了一个简化的实用模型。通过比较泄漏率对提出的方法进行验证,它将使细管的设计和/或操作更加可靠。

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