首页> 外文会议>ASME Pressure Vessels and Piping conference >FORMULA FOR ESTIMATION OF EFFECTIVE APPLIED LOAD AT CRACKED SECTION CONSIDERING COMPLIANCE CHANGE AND ITS APPLICATION UNDER DYNAMIC LOADING CONDITIONS
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FORMULA FOR ESTIMATION OF EFFECTIVE APPLIED LOAD AT CRACKED SECTION CONSIDERING COMPLIANCE CHANGE AND ITS APPLICATION UNDER DYNAMIC LOADING CONDITIONS

机译:考虑顺应性变化的裂纹截面有效施加载荷的计算公式及其在动态载荷条件下的应用

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The refinement of the piping integrity assessment methods has emerged as a priority issue, in response to heightened concerns about the beyond design basis accident following several events. The compliance change in structures may have a significant influence on the fracture estimation. For instance, the deformation of a crack in the piping system may result in a decrease of the applied moment at the cracked section. To consider these effects, the authors have developed the general formula for prediction of the effective applied moment at circumferential cracked section based on the elastic beam theory. Using the developed formula, one can evaluate the extent of the load reduction at a crack position due to the change in compliance. This paper aims to expand the applicability of the formula for dynamic loading conditions. By conducting the time history analysis using FE model accompanying the comparisons with the piping system experiment results, it was confirmed that the formula is also available for dynamic loading conditions. It is expected that the proposed formula can be implemented in sthe piping integrity assessment to consider the restraint effect.
机译:响应于在若干事件之后对超出设计基准事故的关注,对管道完整性评估方法的改进已成为一个优先问题。结构的顺应性变化可能会对断裂估计产生重大影响。例如,管道系统中裂纹的变形可导致在裂纹部分处施加的力矩减小。考虑到这些影响,作者开发了基于弹性梁理论预测周向裂纹截面有效施加力矩的通用公式。使用开发的公式,可以评估由于顺应性变化而导致的裂纹位置处的载荷减小程度。本文旨在扩展该公式在动态载荷条件下的适用性。通过使用有限元模型进行时程分析,并将其与管道系统实验结果进行比较,可以确定该公式也适用于动态载荷条件。预期可以在管道完整性评估中考虑到约束效果而采用建议的公式。

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