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2025 NUCLEAR CODE: THE VISION FOR THE FUTURE OF ASME NUCLEAR CODES AND STANDARDS

机译:2025核法典:ASME核电法和标准未来的愿景

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ASME Nuclear Codes and Standards are used worldwide in the construction, inspection, and repair of commercial nuclear power plants. As the industry looks to the future of nuclear power and some of the new plant designs under development, there will be some significant departures from the current light water reactor (LWR) technology. Some examples are gas-cooled and liquid metal-cooled high temperature reactors (HTRs), small modular reactors (SMRs), and fusion energy devices that are currently under development. Many of these designs will have different safety challenges from the current LWR fleet. Variations of the current LWR technology are also expected to remain in use for the foreseeable future. Worldwide, many LWRs are planned or are already under construction. However, technology for construction of these plants has advanced considerably since most of the current construction codes were written. As a result, many modern design and fabrication methods available today, which provide both safety and economic benefits, cannot be fully utilized since they are not addressed by Code rules. For ASME Nuclear Codes and Standards to maintain and enhance their position as the worldwide leader in the nuclear power industry, they will need to be modernized to address these items. Accordingly, the ASME Nuclear Codes and Standards organizations have initiated the "2025 Nuclear Code" initiative. The purpose of this initiative is to modernize all aspects of ASME's Nuclear Codes and Standards to adopt new technologies in plant design, construction, and life cycle management. Examples include modernized finite element analysis and fatigue rules, and incorporation of probabilistic and risk-informed methodology. This paper will present the vision for the 2025 ASME Nuclear Codes and Standards and will discuss some of the key elements that are being considered.
机译:ASME核代码和标准在全球范围内用于商业核电站的建设,检验和维修。随着该行业展望核电的未来和一些新的植物设计的开发,随着目前的轻型水反应堆(LWR)技术将会有一些重要的偏离。一些实例是气体冷却和液态金属冷却的高温反应器(HTRS),小型模块化反应器(SMR),以及目前正在开发的融合能量装置。这些设计中的许多设计将来自目前的LWR舰队具有不同的安全挑战。目前LWR技术的变化也预期可用于可预见的未来。在全球范围内,许多LWR是计划或已经建设的。然而,由于大多数当前的施工代码编写了大多数当前的施工代码,因此对这些植物建造的技术已经提出。因此,今天提供的许多现代设计和制造方法,提供安全性和经济效益,无法充分利用,因为它们未被代号规则讨论。对于ASME核代理和标准维持和提升其作为核电行业领导者的地位,他们将需要现代化以解决这些项目。因此,ASME核代码和标准组织已启动“2025核法”倡议。这一举措的目的是ASME的核电法规和标准的各方面现代化,采用工厂设计,建造和生命周期管理的新技术。例子包括现代化的有限元分析和疲劳规则,并纳入概率和风险信息的方法。本文将展示2025年ASME核代码和标准的愿景,并将讨论正在考虑的一些关键要素。

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