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BENCHMARKING XLPR VERSION 1.0 WITH THE PRO-LOCA VERSION 3.0 CODE

机译:使用PRO-LOCA 3.0版代码对XLPR 1.0版进行基准测试

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The US Nuclear Regulatory Commission (NRC) in conjunction with the US nuclear power industry under the leadership of the Electric Power Research Institute (EPRI) is developing a new probabilistic fracture mechanics (PFM) code as a means of demonstrating compliance with the 10CFR50 Appendix A, General Design Criterion 4 (GDC-4) requirement that primary system piping exhibit an extremely low probability of rupture. This PFM code, called xLPR (eXtremely Low Probability of Rupture) will be comprehensive by addressing all aspects of the problem, i.e., crack initiation, growth, stability, surface crack detection and leakage detection. Previously, the NRC, along with two of its contractors, Battelle Memorial Institute and Engineering Mechanics Corporation of Columbus (Emc2), developed a probabilistic fracture mechanics code called PRO-LOCA[1] which was to have been used as a tool for re-evaluating the break frequency versus break size curves developed as part of the technical basis for the transition break size as part of the redefinition of the emergency core cooling system (ECCS) requirements in 10CFR50.46. PRO-LOCA was subsequently developed as part of an international cooperative research program led by Battelle called MERIT (Maximizing Enhancements in Risk-Informed Technology). Today PRO-LOCA is being further developed as part of another international cooperative program called PARTRIDGE (Probabilistic Analysis as a Regulatory Tool for Risk-Informed Decision GuidancE). The focus of this paper is three-fold. First, the relationship between PRO-LOCA and xLPR will be described. Secondly, the enhancements being made to PRO-LOCA will be discussed and compared to xLPR development. Finally, the results of some comparative cases where PRO-LOCA (Version 3.0) was benchmarked against xLPR (Version 1.0) are provided.
机译:在电力研究所(EPRI)的领导下,美国核监管委员会(NRC)与美国核电工业正在开发新的概率断裂力学(PFM)规范,以证明其符合10CFR50附录A ,一般设计标准4(GDC-4)要求主系统管道表现出极低的破裂概率。该PFM代码称为xLPR(极低的破裂概率),将通过解决问题的各个方面(即裂纹萌生,扩展,稳定性,表面裂纹检测和泄漏检测)来实现全面的处理。以前,NRC及其两个承包商Battelle Memorial Institute和哥伦布工程机械公司(Emc2)共同开发了一个称为PRO-LOCA [1]的概率断裂力学代码,该代码将被用作重新设计的工具。评估断裂频率与断裂尺寸的关系曲线,这是过渡断裂尺寸的技术基础的一部分,是对10CFR50.46中应急堆芯冷却系统(ECCS)要求的重新定义的一部分。 PRO-LOCA随后作为由Battelle领导的一项国际合作研究计划的一部分而开发,该计划称为MERIT(最大限度地增强风险信息技术)。如今,PRO-LOCA作为另一个国际合作计划的一部分得到了进一步开发,该计划称为PARTRIDGE(概率分析作为风险知情决策的指导工具)。本文的重点是三个方面。首先,将描述PRO-LOCA和xLPR之间的关系。其次,将讨论对PRO-LOCA进行的增强,并将其与xLPR开发进行比较。最后,提供了一些比较案例的结果,其中PRO-LOCA(3.0版)相对于xLPR(1.0版)进行了基准测试。

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