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Integration of the Computational Validation Process for Reactor Equipment into a Single Information Space to Create Digital Doppelgangers of Nuclear Energy Facilities

The outcome of a project to integrate the business-process of computational validation of reactor equipment into a unified information space of an enterprise for the purpose of creating digital doppelgangers of nuclear power facilities is reported. The preparation time required for design documentat...

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Published in:Atomic energy (New York, N.Y.) N.Y.), 2020-04, Vol.127 (6), p.339-345
Main Authors: Belokrylov, P. Yu, Bol’shukhin, M. A., Komissarov, K. V., Petrunin, V. V., Poverennov, E. Yu
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container_end_page 345
container_issue 6
container_start_page 339
container_title Atomic energy (New York, N.Y.)
container_volume 127
creator Belokrylov, P. Yu
Bol’shukhin, M. A.
Komissarov, K. V.
Petrunin, V. V.
Poverennov, E. Yu
description The outcome of a project to integrate the business-process of computational validation of reactor equipment into a unified information space of an enterprise for the purpose of creating digital doppelgangers of nuclear power facilities is reported. The preparation time required for design documentation was reduced by implementing a program link between the Product Lifecycle Management (PLM) and Simulation Process and Data Management (SPDM) systems. A solution is proposed for optimizing the storage and usage of computational data in the High Performance Computing (HPC) infrastructure of OKBM Afrikantov.
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subjects Computer applications
Computer simulation
Data management
Digitization
Energy industry
Experiments
Hadrons
Heavy Ions
Life cycle analysis
Mathematical models
Nuclear Chemistry
Nuclear Energy
Nuclear engineering
Nuclear Physics
Nuclear power plants
Nuclear reactors
Numerical analysis
Partial differential equations
Physics
Physics and Astronomy
Product information
Product life cycle
Production management
Reactors
Simulation
Software
User training
title Integration of the Computational Validation Process for Reactor Equipment into a Single Information Space to Create Digital Doppelgangers of Nuclear Energy Facilities
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