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Deterministic Prediction of Localized Corrosion Damage in Power Plant Coolant Circuits

机译:电厂冷却剂回路中局部腐蚀破坏的确定性预测

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摘要

The accumulation of damage due to localized corrosion [pitting, stress corrosion cracking (SCC), corrosion fatigue (CF), crevice corrosion (CC), and erosion-corrosion (EC)] in complex industrial systems, such as power plants, refineries, desalination systems, etc., poses a threat to continued safe and economic operation, primarily because of the sudden, catastrophic nature of the resulting failures. Of particular interest in managing these forms of damage is the development of robust algorithms that can be used to predict the integrated damage as a function of time and as a function of the operating conditions of the system. Because complex systems of the same design rapidly become unique, due to differences in operating histories, and because failures are rare events, there is generally insufficient data available on any given system to derive reliable empirical models that capture the impact of all (or even some) of the important independent variables. Accordingly, the models should be, to the greatest extent possible, deterministic with the output being constrained by the natural laws. In this paper, the theory of the initiation of damage, in the form of pitting, is briefly outlined. We then describe the deterministic prediction of the accumulation of damage from SCC and CF in Type 304 SS components in the primary coolant circuits of Boiling Water (Nuclear) Reactors (BWRs) and from pitting and SCC in low-pressure steam turbine disks. These cases have been selected to illustrate the various phases through which localized corrosion damage occurs.
机译:在复杂的工业系统(例如电厂,炼油厂)中,由于局部腐蚀(点蚀,应力腐蚀开裂(SCC),腐蚀疲劳(CF),缝隙腐蚀(CC)和侵蚀腐蚀(EC))而造成的损伤累积海水淡化系统等对持续的安全和经济运行构成了威胁,这主要是由于最终故障的突然性,灾难性。在管理这些形式的损坏时,特别令人感兴趣的是开发健壮的算法,该算法可用于根据时间和系统的运行状况来预测综合损坏。由于具有相同的设计历史的复杂系统由于运行历史的不同而迅速变得独特,并且由于故障是罕见事件,因此在任何给定系统上通常没有足够的数据可用来获得可靠的经验模型来捕获所有(甚至某些)系统的影响。 )的重要自变量。因此,模型应在最大程度上确定性,其输出受自然法则的约束。在本文中,以点蚀的形式简要概述了破坏引发的理论。然后,我们描述了沸腾水(核)反应堆(BWRs)的主要冷却剂回路中304 SS组件中SCC和CF损坏以及低压蒸汽涡轮机盘中的点蚀和SCC损坏累积的确定性预测。选择这些情况是为了说明发生局部腐蚀损坏的各个阶段。

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