ASME NTB-5 - Guidance for Determination of Risk-Informed Safety Classification for Light Water Reactor Nuclear Facility Pressure Retaining Components NTB-5 - 2022

Description
The goal of this publication is to provide guidance for determination of risk-informed safety classification for light water reactor nuclear facility pressure retaining components. The action discussed in this NTB takes advantage of the significant gains in the understanding of pressure boundary component integrity, factors that impact component reliability, the impact of inspections and the and the type of inspection, as well as risk assessment insights related to operating nuclear power reactors, and proposes a balanced action that reduces undue burden while ensuring plant safety. This action builds upon the work done at ASME Sections III and XI and OM Code, the industry and the NRC and represents the next step in the use of risk-informed technology for defining ASME Section III requirements.
Description
The goal of this publication is to provide guidance for determination of risk-informed safety classification for light water reactor nuclear facility pressure retaining components. The action discussed in this NTB takes advantage of the significant gains in the understanding of pressure boundary component integrity, factors that impact component reliability, the impact of inspections and the and the type of inspection, as well as risk assessment insights related to operating nuclear power reactors, and proposes a balanced action that reduces undue burden while ensuring plant safety. This action builds upon the work done at ASME Sections III and XI and OM Code, the industry and the NRC and represents the next step in the use of risk-informed technology for defining ASME Section III requirements.

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NTB-5 - Guidance for Determination of Risk-Informed Safety Classification for Light Water Reactor Nuclear Facility Pressure Retaining Components - NTB-5 - 2022 - ASME
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NTB-5 - Guidance for Determination of Risk-Informed Safety Classification for Light Water Reactor Nuclear Facility Pressure Retaining Components
NTB-5 - 2022
NTB-5 - Guidance for Determination of Risk-Informed Safety Classification for Light Water Reactor Nuclear Facility Pressure Retaining Components NTB-5 - 2022
The goal of this publication is to provide guidance for determination of risk-informed safety classification for light water reactor nuclear facility pressure retaining components. The action discussed in this NTB takes advantage of the significant gains in the understanding of pressure boundary component integrity, factors that impact component reliability, the impact of inspections and the and the type of inspection, as well as risk assessment insights related to operating nuclear power reactors, and proposes a balanced action that reduces undue burden while ensuring plant safety. This action builds upon the work done at ASME Sections III and XI and OM Code, the industry and the NRC and represents the next step in the use of risk-informed technology for defining ASME Section III requirements.

The goal of this publication is to provide guidance for determination of risk-informed safety classification for light water reactor nuclear facility pressure retaining components. The action discussed in this NTB takes advantage of the significant gains in the understanding of pressure boundary component integrity, factors that impact component reliability, the impact of inspections and the and the type of inspection, as well as risk assessment insights related to operating nuclear power reactors, and proposes a balanced action that reduces undue burden while ensuring plant safety. This action builds upon the work done at ASME Sections III and XI and OM Code, the industry and the NRC and represents the next step in the use of risk-informed technology for defining ASME Section III requirements.

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Technical Specifications

  ASME
Product Category Standards and Technical Documents
Product Number NTB-5 - 2022
Product Name NTB-5 - Guidance for Determination of Risk-Informed Safety Classification for Light Water Reactor Nuclear Facility Pressure Retaining Components
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