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Qualification Of FFA Treatment For The Water-steam Cycle As An Innovative Lay-up Strategy For The Long Term Outage Of A CANDU-6 Reactor

机译:用于水蒸气循环的FFA治疗的资格作为一种创新的坦率停用的创新筹码策略

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The majority of worldwide operating Nuclear Power Plants is older than 25 years, which is accompanied with extended outage duration due to large refurbishment and upgrade programs, e.g. Steam Generator Replacement and other large component replacement. For these long term outages adequate and cost effective preservation methods are required. 1. Normally during outages, systems and components are drained and opened to atmosphere whereas wet surfaces and moisture condensation can result in uniform corrosion of carbon steel and eventually other materials; superimposed localized corrosion is possible in presence of impurities. For those systems there are in general two different lay-up methods possible. Dry lay-up by removing all water and humidity from the components or wet lay-up with demineralized and oxygen free water and additional corrosion inhibitors. Disadvantages of these lay-up methods are: High man power and hardware efforts for performing dry lay-up 2. Usage of hazardous chemicals like Hydrazine 3. Insufficient results of both lay-up methods in case of switching between dry and wet lay-up To improve the lay-up concept for long term outages, AREVA GmbH developed an innovative concept using FFA (Film-Forming Amines) for secondary side system lay-up. The entire water-steam cycle including the Steam Generators is treated in one step without any negative impact on the treated structural materials. This technology has been applied for the first time at NPP Embalse. Embalse Nuclear Power Station consists of a CANDU-6 reactor of 648 MWe electrical output. It is in commercial operation since 1984. The shutdown for refurbishment and preparation for the second cycle of operation that includes among other tasks the replacement of the existing steam generators and power uprating has been scheduled for 2014, which causes the necessity of a lay-up optimization in the plant. This paper deals in detail with the qualification process of the FFA treatment considering the specifics of this plant. This work has been carried out by the refurbishment group and plant operator personnel (Central Nuclear Embalse, N.A.S.A.), AREVA GmbH and CNEA experts to implement the FFA treatment before steam generator replacement.
机译:全球经营核电站的大多数超过25年,伴随着由于大型翻新和升级计划而持久的中断持续时间,例如,蒸汽发生器更换和其他大型部件更换。对于这些长期停电,需要足够和成本效益的保存方法。 1.通常在中断期间,系统和部件被排出并打开到大气中,而湿表面和水分冷凝会导致碳钢的均匀腐蚀,最终是其他材料;在杂质存在下,可以叠加局部腐蚀。对于那些系统,通常有两种不同的叠层方法可能。通过从组件中除去所有水和湿度或使用脱矿质和含氧水和含有缺氧抑制剂的湿敷料来干燥铺设。这些筹设方法的缺点是:高人力电力和硬件工作,用于执行干燥施加2.肼化学品如肼3.在干燥和湿润的情况下切换的情况下两种叠层方法的结果不足为了改善长期停电的铺设概念,AREVA GmbH使用FFA(成膜胺)开发了一种用于次级侧系统叠层的创新概念。包括蒸汽发生器的整个水蒸汽循环在一步中处理,而不会对处理过的结构材料产生任何负面影响。该技术已在NPP嵌入时第一次应用。禁止核电站包括648 MWE电气输出的CANDU-6反应器。自1984年以来在商业运营中。在2014年安排了在其他任务中包括其他任务的第二次操作循环的翻新和准备工作的关机,2014年已经计划更换现有的蒸汽发生器和电力上调,这导致铺设的必要性植物中的优化。本文考虑到该植物的细节,详细介绍了FFA治疗的资格处理。这项工作由翻新集团和工厂经营人员(中央核嵌入,N.A.S..),AREVA GmbH和CNEA专家进行,以在蒸汽发生器更换之前实施FFA处理。

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