ASME V V 10 - Standard for Verification and Validation in Computational Solid Mechanics V V 10 - 2019

Description
ASME’s V&V 10 enables managers and practitioners of verification, validation, and uncertainty quantification (VVUQ) to better assess and enhance the credibility of computational solid mechanics (CSM) models. V&V 10 provides users with general guidance to implementing the processes of computational model VVUQ Key Features and Applications Core Features: Recommended overall approach to VVUQ Discussions of factors to consider when developing and executing a VVUQ program Applications: Computational solid mechanics modeling and simulation The purpose of this Standard is to provide the CSM community with a common language, a conceptual framework, and general guidance for implementing the processes of computational model VVUQ. It also enables Managers and Practitioners of VVUQ to better assess and enhance the credibility of CSM models. The Standard includes a glossary of terms, figures illustrating the recommended overall approach to VVUQ activities, and discussions of factors that should be considered when developing and executing a VVUQ program. Intended Users: Developers and users of computational solid mechanics models.
Description
ASME’s V&V 10 enables managers and practitioners of verification, validation, and uncertainty quantification (VVUQ) to better assess and enhance the credibility of computational solid mechanics (CSM) models. V&V 10 provides users with general guidance to implementing the processes of computational model VVUQ Key Features and Applications Core Features: Recommended overall approach to VVUQ Discussions of factors to consider when developing and executing a VVUQ program Applications: Computational solid mechanics modeling and simulation The purpose of this Standard is to provide the CSM community with a common language, a conceptual framework, and general guidance for implementing the processes of computational model VVUQ. It also enables Managers and Practitioners of VVUQ to better assess and enhance the credibility of CSM models. The Standard includes a glossary of terms, figures illustrating the recommended overall approach to VVUQ activities, and discussions of factors that should be considered when developing and executing a VVUQ program. Intended Users: Developers and users of computational solid mechanics models.

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V V 10 - Standard for Verification and Validation in Computational Solid Mechanics - V V 10 - 2019 - ASME
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V V 10 - Standard for Verification and Validation in Computational Solid Mechanics
V V 10 - 2019
V V 10 - Standard for Verification and Validation in Computational Solid Mechanics V V 10 - 2019
ASME’s V&V 10 enables managers and practitioners of verification, validation, and uncertainty quantification (VVUQ) to better assess and enhance the credibility of computational solid mechanics (CSM) models. V&V 10 provides users with general guidance to implementing the processes of computational model VVUQ Key Features and Applications Core Features: Recommended overall approach to VVUQ Discussions of factors to consider when developing and executing a VVUQ program Applications: Computational solid mechanics modeling and simulation The purpose of this Standard is to provide the CSM community with a common language, a conceptual framework, and general guidance for implementing the processes of computational model VVUQ. It also enables Managers and Practitioners of VVUQ to better assess and enhance the credibility of CSM models. The Standard includes a glossary of terms, figures illustrating the recommended overall approach to VVUQ activities, and discussions of factors that should be considered when developing and executing a VVUQ program. Intended Users: Developers and users of computational solid mechanics models.

ASME’s V&V 10 enables managers and practitioners of verification, validation, and uncertainty quantification (VVUQ) to better assess and enhance the credibility of computational solid mechanics (CSM) models. V&V 10 provides users with general guidance to implementing the processes of computational model VVUQ

Key Features and Applications

Core Features:

  • Recommended overall approach to VVUQ
  • Discussions of factors to consider when developing and executing a VVUQ program

Applications:

  • Computational solid mechanics modeling and simulation

The purpose of this Standard is to provide the CSM community with a common language, a conceptual framework, and general guidance for implementing the processes of computational model VVUQ. It also enables Managers and Practitioners of VVUQ to better assess and enhance the credibility of CSM models. The Standard includes a glossary of terms, figures illustrating the recommended overall approach to VVUQ activities, and discussions of factors that should be considered when developing and executing a VVUQ program.

Intended Users: Developers and users of computational solid mechanics models.

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Technical Specifications

  ASME
Product Category Standards and Technical Documents
Product Number V V 10 - 2019
Product Name V V 10 - Standard for Verification and Validation in Computational Solid Mechanics
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