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THE CONSERVATISM OF LEAK BEFORE BREAK ANALYSIS IN TERMS OF THE APPLIED MOMENT AT CRACKED SECTION

机译:在裂纹部分施加时刻泄漏前泄漏的保守主义

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In leak before break (LBB) analysis, applied moment at the position of a postulated crack is a key parameter. The current procedures of LBB analysis use the value of design basis loads that are calculated with the assumption that the pipe does not contain a crack and follows the linear elastic behavior. Therefore, this can lead to conservative results of LBB evaluation compared with the case that considers the effect of plastic behavior of cracked pipe on the calculation of the applied moment at the cracked section [2]. This paper aims to quantitatively investigate the conservatism of the existing LBB analysis in terms of the applied moment at the cracked section. The calculation results using the current procedures with linear elastic pipe model without a crack were compared with the results from the cracked pipe analysis. To consider nonlinearity of crack behavior and pipe material, the time history analysis methods that were verified using the simulated seismic pipe system experiment in the IPIRG-2 program were employed. The comparison results indicated that the applied moment at the cracked section decreases when the effect of crack and nonlinear behavior are considered in the analysis. Therefore, the current procedures of LBB analysis are significantly conservative compared with the elastic-plastic time history analysis. Base on this detailed analysis, the additional safety margin can be secured in the LBB analysis.
机译:在断裂前(LBB)分析之前,假设裂缝位置处的施加力矩是关键参数。 LBB分析的当前程序利用了设计基础负载的价值,该负载是通过假设管道不包含裂缝并遵循线性弹性行为的假设来计算。因此,这可以导致LBB评估的保守结果与考虑裂化管塑性行为对裂化部分施加矩的计算的效果相比[2]。本文旨在定量调查现有LBB分析的保守主义在裂纹部分的应用时刻。将使用具有裂缝的线性弹性管模型的电流过程的计算结果与裂纹管分析的结果进行比较。要考虑裂缝行为和管材的非线性,采用了使用IPIRG-2程序中的模拟地震管道系统实验验证的时间历史分析方法。比较结果表明,当在分析中考虑裂缝和非线性行为的效果时,裂化部分的施加力度降低。因此,与弹性塑料时间历史分析相比,LBB分析的当前程序显着保守。基于此详细分析,可以在LBB分析中确保额外的安全余量。

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