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Homepage>BS Standards>27 ENERGY AND HEAT TRANSFER ENGINEERING>27.120 Nuclear energy engineering>27.120.30 Fissile materials>BS EN ISO 10276:2021 Nuclear energy. Fuel technology. Trunnion systems for packages used to transport radioactive material
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immediate downloadReleased: 2021-08-17
BS EN ISO 10276:2021 Nuclear energy. Fuel technology. Trunnion systems for packages used to transport radioactive material

BS EN ISO 10276:2021

Nuclear energy. Fuel technology. Trunnion systems for packages used to transport radioactive material

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Standard number:BS EN ISO 10276:2021
Pages:32
Released:2021-08-17
ISBN:978 0 539 16734 4
Status:Standard
BS EN ISO 10276:2021 - Nuclear Energy Fuel Technology Standard

BS EN ISO 10276:2021 - Nuclear Energy Fuel Technology Standard

In the ever-evolving field of nuclear energy, safety and efficiency are paramount. The BS EN ISO 10276:2021 standard is a critical document that addresses these concerns by providing comprehensive guidelines for trunnion systems used in the transportation of radioactive material. Released on August 17, 2021, this standard is an essential resource for professionals in the nuclear energy sector, ensuring that the transportation of radioactive materials is conducted with the highest levels of safety and reliability.

Overview of BS EN ISO 10276:2021

This standard, officially titled Nuclear energy. Fuel technology. Trunnion systems for packages used to transport radioactive material, is a meticulously crafted document that spans 32 pages. It is designed to provide detailed specifications and requirements for trunnion systems, which are crucial components in the secure and efficient transport of radioactive materials. The standard number for this document is BS EN ISO 10276:2021, and it is identified by the ISBN 978 0 539 16734 4.

Importance of Trunnion Systems

Trunnion systems play a vital role in the nuclear energy industry. They are used to secure packages containing radioactive materials during transportation, ensuring that these materials are safely contained and do not pose a risk to the environment or public health. The BS EN ISO 10276:2021 standard provides the necessary guidelines to design, manufacture, and test these systems, ensuring they meet the stringent safety requirements necessary for handling such sensitive materials.

Key Features of the Standard

  • Comprehensive Guidelines: The standard offers detailed instructions on the design and implementation of trunnion systems, ensuring they are robust and reliable.
  • Safety Assurance: By adhering to this standard, organizations can ensure that their transportation methods for radioactive materials meet international safety standards.
  • Industry Compliance: Compliance with BS EN ISO 10276:2021 is crucial for companies involved in the nuclear energy sector, as it aligns with global best practices and regulatory requirements.
  • Updated Information: Released in 2021, this standard reflects the latest advancements and research in nuclear fuel technology, providing users with the most current information available.

Who Should Use This Standard?

The BS EN ISO 10276:2021 standard is indispensable for a wide range of professionals and organizations within the nuclear energy industry, including:

  • Nuclear Engineers: Engineers involved in the design and maintenance of nuclear facilities will find this standard essential for ensuring the safe transport of radioactive materials.
  • Safety Inspectors: Inspectors responsible for evaluating the safety of nuclear transport systems can use this standard as a benchmark for compliance and safety assurance.
  • Regulatory Bodies: Government and regulatory agencies can utilize this standard to develop and enforce safety regulations related to the transportation of radioactive materials.
  • Manufacturers: Companies that produce trunnion systems and related components will benefit from the detailed specifications and guidelines provided in this standard.

Benefits of Implementing BS EN ISO 10276:2021

Implementing the BS EN ISO 10276:2021 standard offers numerous benefits, including:

  • Enhanced Safety: By following the guidelines outlined in this standard, organizations can significantly reduce the risk of accidents and incidents during the transportation of radioactive materials.
  • Regulatory Compliance: Adhering to this standard ensures compliance with international regulations, helping organizations avoid legal issues and potential fines.
  • Improved Efficiency: The standard provides clear instructions for the design and implementation of trunnion systems, leading to more efficient and reliable transportation processes.
  • Global Recognition: As an internationally recognized standard, BS EN ISO 10276:2021 enhances the credibility and reputation of organizations that implement it.

Conclusion

The BS EN ISO 10276:2021 standard is a vital resource for anyone involved in the nuclear energy sector. By providing comprehensive guidelines for trunnion systems used in the transportation of radioactive materials, it ensures that these processes are conducted safely and efficiently. Whether you are a nuclear engineer, safety inspector, regulatory body, or manufacturer, this standard is an invaluable tool that will help you achieve the highest levels of safety and compliance in your operations.

DESCRIPTION

BS EN ISO 10276:2021


This standard BS EN ISO 10276:2021 Nuclear energy. Fuel technology. Trunnion systems for packages used to transport radioactive material is classified in these ICS categories:
  • 27.120.30 Fissile materials and nuclear fuel technology

This document covers trunnion systems used for tie-down, tilting and/or lifting of a package of radioactive material during transport operations.

Aspects included are the design, manufacture, maintenance, inspection and management system. Regulations which can apply during handling operation in nuclear facilities are not addressed in document.

This document does not supersede any of the requirements of international or national regulations, concerning trunnions used for lifting and tie-down.