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Homepage>BS Standards>27 ENERGY AND HEAT TRANSFER ENGINEERING>27.120 Nuclear energy engineering>27.120.10 Reactor engineering>BS EN ISO 18229:2021 Essential technical requirements for mechanical components and metallic structures foreseen for Generation IV nuclear reactors
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immediate downloadReleased: 2021-08-13
BS EN ISO 18229:2021 Essential technical requirements for mechanical components and metallic structures foreseen for Generation IV nuclear reactors

BS EN ISO 18229:2021

Essential technical requirements for mechanical components and metallic structures foreseen for Generation IV nuclear reactors

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Standard number:BS EN ISO 18229:2021
Pages:38
Released:2021-08-13
ISBN:978 0 539 16738 2
Status:Standard
BS EN ISO 18229:2021 - Essential Technical Requirements for Generation IV Nuclear Reactors

BS EN ISO 18229:2021 - Essential Technical Requirements for Mechanical Components and Metallic Structures Foreseen for Generation IV Nuclear Reactors

Standard Number: BS EN ISO 18229:2021

Pages: 38

Released: 2021-08-13

ISBN: 978 0 539 16738 2

Status: Standard

Overview

The BS EN ISO 18229:2021 standard is a comprehensive document that outlines the essential technical requirements for mechanical components and metallic structures intended for use in Generation IV nuclear reactors. This standard is crucial for ensuring the safety, reliability, and efficiency of next-generation nuclear reactors, which are designed to offer significant improvements over current reactor technologies.

Key Features

  • Comprehensive Coverage: Spanning 38 pages, this standard provides detailed guidelines and requirements for the design, fabrication, and testing of mechanical components and metallic structures.
  • Up-to-Date Information: Released on August 13, 2021, this standard incorporates the latest advancements and best practices in the field of nuclear reactor technology.
  • Global Relevance: As an ISO standard, it is recognized and applicable worldwide, ensuring consistency and interoperability across international projects.
  • ISBN: 978 0 539 16738 2, making it easy to reference and locate in academic and professional settings.

Why Choose BS EN ISO 18229:2021?

Generation IV nuclear reactors represent the future of nuclear energy, promising enhanced safety, efficiency, and sustainability. The BS EN ISO 18229:2021 standard is an essential resource for engineers, designers, and manufacturers involved in the development of these advanced reactors. By adhering to the guidelines and requirements set forth in this standard, stakeholders can ensure that their components and structures meet the highest standards of quality and performance.

Enhanced Safety

Safety is paramount in the nuclear industry, and this standard provides rigorous requirements to ensure the integrity and reliability of mechanical components and metallic structures. By following these guidelines, you can minimize the risk of failures and accidents, protecting both personnel and the environment.

Improved Efficiency

Generation IV reactors are designed to be more efficient than their predecessors, and the BS EN ISO 18229:2021 standard supports this goal by providing requirements that optimize the performance of mechanical components and metallic structures. This can lead to reduced operational costs and increased energy output.

Global Consistency

As an internationally recognized standard, BS EN ISO 18229:2021 ensures that mechanical components and metallic structures are designed and manufactured to consistent quality levels, regardless of where they are produced. This is particularly important for multinational projects and collaborations.

Who Should Use This Standard?

The BS EN ISO 18229:2021 standard is intended for a wide range of professionals involved in the nuclear industry, including:

  • Engineers and designers working on Generation IV nuclear reactor projects
  • Manufacturers of mechanical components and metallic structures for nuclear reactors
  • Quality assurance and control personnel
  • Regulatory bodies and inspectors
  • Academic researchers and students specializing in nuclear engineering

Detailed Content

The standard covers a broad spectrum of topics essential for the development of Generation IV nuclear reactors, including:

  • Material selection and properties
  • Design criteria and methodologies
  • Fabrication processes and techniques
  • Testing and inspection requirements
  • Quality assurance and control measures
  • Safety and reliability considerations

Conclusion

The BS EN ISO 18229:2021 standard is an indispensable resource for anyone involved in the development and implementation of Generation IV nuclear reactors. By providing clear and comprehensive guidelines for mechanical components and metallic structures, this standard helps ensure that these advanced reactors meet the highest standards of safety, efficiency, and reliability. Whether you are an engineer, manufacturer, or regulator, adhering to this standard is crucial for the success of your projects and the advancement of nuclear technology.

DESCRIPTION

BS EN ISO 18229:2021


This standard BS EN ISO 18229:2021 Essential technical requirements for mechanical components and metallic structures foreseen for Generation IV nuclear reactors is classified in these ICS categories:
  • 27.120.10 Reactor engineering

This document defines the essential technical requirements that are addressed in the process of design and construction of Generation IV (GEN IV) nuclear reactors. It does not address operation, maintenance and in-service inspection of reactors.

Six reactor concepts are considered for GEN IV: the sodium fast reactor, the lead fast reactor, the gas fast reactor, the very high temperature reactor, the supercritical water reactor and the molten salt reactor.

Annex A details the main characteristics for the different concepts.

The scope of application of this document is limited to mechanical components related to nuclear safety and to the prevention of the release of radioactive materials

  • that are considered to be important in terms of nuclear safety and operability,

  • that play a role in ensuring leaktightness, partitioning, guiding, securing and supporting, and

  • that contain and/or are in contact with fluids (such as vessels, pumps, valves, pipes, bellows, box structures, heat exchangers, handling and driving mechanisms).