ASME VVUQ 1 - Verification, Validation, and Uncertainty Quantification Terminology in Computational Modeling and Simulation VVUQ 1 - 2022

Description
The VVUQ 1 Standard establishes terminology and summarizes key concepts for verification, validation, and uncertainty quantification (VVUQ) to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use. Core Features and Applications: Core Features: Harmonized terminology for all ASME VVUQ Standards Summary of key VVUQ concepts Applications: Computational modeling and simulation The purpose of this Standard is to give a summary of key definitions and concepts for VVUQ and describe the themes that connect the VVUQ community and ASME VVUQ standards. The intent is to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use. ASME VVUQ 1 is also intended to provide the VVUQ Subcommittees with terminology that can be used to establish consistency across all VVUQ standards while allowing each subcommittee to adapt the terminology to their own specific requirements. This Standard provides a harmonized set of definitions for verification, validation, and uncertainty quantification (VVUQ) concepts. Intended Users: Developers and users of computational models. Table of Contents
Description
The VVUQ 1 Standard establishes terminology and summarizes key concepts for verification, validation, and uncertainty quantification (VVUQ) to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use. Core Features and Applications: Core Features: Harmonized terminology for all ASME VVUQ Standards Summary of key VVUQ concepts Applications: Computational modeling and simulation The purpose of this Standard is to give a summary of key definitions and concepts for VVUQ and describe the themes that connect the VVUQ community and ASME VVUQ standards. The intent is to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use. ASME VVUQ 1 is also intended to provide the VVUQ Subcommittees with terminology that can be used to establish consistency across all VVUQ standards while allowing each subcommittee to adapt the terminology to their own specific requirements. This Standard provides a harmonized set of definitions for verification, validation, and uncertainty quantification (VVUQ) concepts. Intended Users: Developers and users of computational models. Table of Contents

Suppliers

Company
Product
Description
Supplier Links
VVUQ 1 - Verification, Validation, and Uncertainty Quantification Terminology in Computational Modeling and Simulation - VVUQ 1 - 2022 - ASME
New York, NY, USA
VVUQ 1 - Verification, Validation, and Uncertainty Quantification Terminology in Computational Modeling and Simulation
VVUQ 1 - 2022
VVUQ 1 - Verification, Validation, and Uncertainty Quantification Terminology in Computational Modeling and Simulation VVUQ 1 - 2022
The VVUQ 1 Standard establishes terminology and summarizes key concepts for verification, validation, and uncertainty quantification (VVUQ) to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use. Core Features and Applications: Core Features: Harmonized terminology for all ASME VVUQ Standards Summary of key VVUQ concepts Applications: Computational modeling and simulation The purpose of this Standard is to give a summary of key definitions and concepts for VVUQ and describe the themes that connect the VVUQ community and ASME VVUQ standards. The intent is to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use. ASME VVUQ 1 is also intended to provide the VVUQ Subcommittees with terminology that can be used to establish consistency across all VVUQ standards while allowing each subcommittee to adapt the terminology to their own specific requirements. This Standard provides a harmonized set of definitions for verification, validation, and uncertainty quantification (VVUQ) concepts. Intended Users: Developers and users of computational models. Table of Contents

The VVUQ 1 Standard establishes terminology and summarizes key concepts for verification, validation, and uncertainty quantification (VVUQ) to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use.

Core Features and Applications:

Core Features:

  • Harmonized terminology for all ASME VVUQ Standards
  • Summary of key VVUQ concepts

Applications:

  • Computational modeling and simulation

The purpose of this Standard is to give a summary of key definitions and concepts for VVUQ and describe the themes that connect the VVUQ community and ASME VVUQ standards. The intent is to assist the developers and users of computational models to better communicate the evidence that justifies application of their models for the context of use. ASME VVUQ 1 is also intended to provide the VVUQ Subcommittees with terminology that can be used to establish consistency across all VVUQ standards while allowing each subcommittee to adapt the terminology to their own specific requirements.

This Standard provides a harmonized set of definitions for verification, validation, and uncertainty quantification (VVUQ) concepts.

Intended Users: Developers and users of computational models.

Table of Contents

Supplier's Site

Technical Specifications

  ASME
Product Category Standards and Technical Documents
Product Number VVUQ 1 - 2022
Product Name VVUQ 1 - Verification, Validation, and Uncertainty Quantification Terminology in Computational Modeling and Simulation
Unlock Full Specs
to access all available technical data

Similar Products