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STRAIN RATE CALCULATION APPROACH IN ENVIRONMENTAL FATIGUE EVALUATIONS

机译:应变率计算方法在环境疲劳评估中

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Fatigue usage factor evaluations including the effects of reactor water environment have been performed in numerous nuclear plant license renewal efforts. A large number of these evaluations have used the environmental fatigue penalty factor, F_(en), approach prescribed in various regulatory documents. The F_(en) equations require input of strain rate, but the prescribing documents do not provide methodology or criteria for the quantification of the strain rate to be input. As a result, numerous approaches have been offered and studied. This paper presents an approach used by Westinghouse to include strain rate in an automated calculation of Fen based on the modified rate approach to integrated strain rate applications. The starting point of the approach is ASME Code Section III NB-3200 fatigue analysis. With environmental fatigue evaluations in new plant designs now emerging in ASME Code criteria, strain rate considerations remain part of the discussion. The intent of this paper is to provide further insight into this process.
机译:疲劳使用因子评估包括反应堆水环境的影响已在众多核电站许可的更新努力中进行。大量这些评估使用了环境疲劳惩罚因素,f_(en),在各种监管文件中规定的方法。 F_(en)方程需要输入应变率,但是规定文件不提供用于量化要输入的应变速率的方法或标准。结果,已经提供并研究了许多方法。本文介绍了Westinghouse使用的方法,包括基于对综合速率应用的修改速率方法在FEN自动计算中的应变率。该方法的起点是ASME代码部分III NB-3200疲劳分析。随着ASME代码标准的新植物设计中的环境疲劳评估,应变率考虑仍然是讨论的一部分。本文的意图是提供进一步了解这一过程的洞察力。

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