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AN ASSESSMENT OF THE SAFETY FACTORS AND UNCERTAINTIES IN THE FATIGUE RULES OF THE RCC-M CODE THROUGH THE BENCHMARK WITH THE EN-13445-3 STANDARD

机译:根据EN-13445-3标准通过基准对RCC-M代码疲劳规则中的安全因素和不确定性进行评估

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The RCC-M code [1] is a well recognized international code and provides rules for the design and the construction of mechanical equipment for pressurized water reactors. It is used today for the nuclear industry exclusively, in countries such as France, South Africa and China and it is the basis for the design of the UK EPR to be built in Hinkley Point. The RCC-M code's fatigue rules emanate from the ASME Boiler and Pressure Vessel Code and are hence very similar, albeit they have evolved in their own way over time to include some R&D results and other evolutions. These rules are published by AFCEN which involves a wide range of international organizations from the nuclear industry such as Apave, Areva, Bureau Veritas, CEA, DCNS, EDF, EDF Energy, ONET-MHI, Rolls-Royce and Westinghouse. The EN-13445-3 [2] is a European standard which is mostly in use today in the conventional industry. Its fatigue rules are a compilation of rules from various national European codes, such as the German AD-Merkblatt, the British Standards, the Eurocodes for civil works and the French CODAP. The rules for fatigue are compiled in Chapters 17 and 18 of EN-13445-3 and have been the result of the work of contributors from major European organizations from the nuclear, oil and gas, chemical and mechanical industries: these include, among others, Areva, the Linde Group, CETIM, TUV, and the TWI (The Welding Institute). Since the beginning of 2015, AFCEN has created a technical Working Group (WG) on the topic of fatigue with the objective of identifying the Safety Factors and Uncertainties in Fatigue analyses (SFUF) and of potentially proposing improvements in the existing fatigue rules of the code. Nevertheless, the explicit quantification of safety factors and uncertainties in fatigue is an extremely difficult task to perform for fatigue analyses without a comparison to the operating experience or in relation to another code or standard. Historically, the approach of the code in fatigue has indeed been to add conservatism at each step of the analyses which has resulted in a difficult quantification of the overall safety margin in the analyses. To fulfill its mission, the working group has deemed necessary to lead a benchmark with the EN-13445-3 standard given its wide use through other industries. Two cases were identified: either the comparison with EN-13445-3 is possible and in this case, the identification of safety factors and uncertainties is performed in relation to this standard; either the comparison is not possible, in which case the overall conservatism of the RCC-M code is evaluated in relation with operating experience, test results, literature, etc... This paper aims at describing the overall work of the group and focuses more specifically on the results obtained through the benchmark with the EN-13445 -3 standard.
机译:RCC-M法规[1]是公认的国际法规,为压水堆的机械设备的设计和建造提供了规则。今天,它仅用于法国,南非和中国等国家的核工业,并且是在欣克利角建造英国EPR的设计基础。 RCC-M代码的疲劳规则源于ASME锅炉和压力容器代码,因此非常相似,尽管它们随着时间的推移以自己的方式发展,包括了一些R&D结果和其他演变。这些规则由AFCEN发布,涉及核工业的众多国际组织,例如Apave,Areva,必维国际检验集团,CEA,DCNS,EDF,EDF Energy,ONET-MHI,Rolls-Royce和Westinghouse。 EN-13445-3 [2]是欧洲标准,今天在常规行业中使用最多。它的疲劳规则是欧洲各种国家法规的汇编,例如德国AD-Merkblatt,英国标准,土木工程欧洲法规和法国CODAP。疲劳规则在EN-13445-3的第17和18章中进行了汇编,并且是来自核,石油,天然气,化学和机械行业的主要欧洲组织贡献者的工作成果:这些尤其包括:阿海珐,林德集团,CETIM,TUV和TWI(焊接学会)。自2015年初以来,AFCEN成立了一个关于疲劳的技术工作组(WG),目的是确定疲劳分析中的安全因素和不确定性(SFUF),并可能提出改进现行疲劳规范的建议。然而,在不与操作经验或其他法规或标准进行比较的情况下,对疲劳进行安全系数和不确定性的明确量化是一项极其困难的任务,因此无法进行疲劳分析。从历史上看,疲劳规范的方法实际上是在分析的每个步骤中增加保守性,这导致难以对分析中的总体安全裕度进行量化。为了履行其使命,工作组认为有必要领导EN-13445-3标准的基准,因为该标准已在其他行业广泛使用。确定了两种情况:可以与EN-13445-3进行比较,在这种情况下,将根据该标准进行安全因素和不确定性的识别;或无法进行比较,在这种情况下,将RCC-M代码的总体保守性与操作经验,测试结果,文献等联系起来进行评估。本文旨在描述该小组的总体工作,并着重于特别是通过EN-13445 -3标准通过基准测试获得的结果。

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