Cargando…

Automated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERN

The thesis aims at designing a flexible, extensible, user-friendly interface to model electro thermal transients occurring in superconducting magnets. Simulations are a fundamental tool for assessing the performance of a magnet and its protection system against the effects of a quench. The applicati...

Descripción completa

Detalles Bibliográficos
Autor principal: Maciejewski, Michał
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2025032
_version_ 1780947173451497472
author Maciejewski, Michał
author_facet Maciejewski, Michał
author_sort Maciejewski, Michał
collection CERN
description The thesis aims at designing a flexible, extensible, user-friendly interface to model electro thermal transients occurring in superconducting magnets. Simulations are a fundamental tool for assessing the performance of a magnet and its protection system against the effects of a quench. The application is created using scalable and modular architecture based on object-oriented programming paradigm which opens an easy way for future extensions. What is more, each model composed of thousands of blocks is automatically created in MATLAB/Simulink. Additionally, the user is able to automatically run sets of simulations with varying parameters. Due to its scalability and modularity the framework can be easily used to simulate wide range of materials and magnet configurations.
id cern-2025032
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-20250322019-09-30T06:29:59Zhttp://cds.cern.ch/record/2025032engMaciejewski, MichałAutomated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERNComputing and ComputersThe thesis aims at designing a flexible, extensible, user-friendly interface to model electro thermal transients occurring in superconducting magnets. Simulations are a fundamental tool for assessing the performance of a magnet and its protection system against the effects of a quench. The application is created using scalable and modular architecture based on object-oriented programming paradigm which opens an easy way for future extensions. What is more, each model composed of thousands of blocks is automatically created in MATLAB/Simulink. Additionally, the user is able to automatically run sets of simulations with varying parameters. Due to its scalability and modularity the framework can be easily used to simulate wide range of materials and magnet configurations.CERN-THESIS-2014-317oai:cds.cern.ch:20250322015-06-11T20:51:56Z
spellingShingle Computing and Computers
Maciejewski, Michał
Automated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERN
title Automated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERN
title_full Automated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERN
title_fullStr Automated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERN
title_full_unstemmed Automated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERN
title_short Automated Object-Oriented Simulation Framework for Modelling of Superconducting Magnets at CERN
title_sort automated object-oriented simulation framework for modelling of superconducting magnets at cern
topic Computing and Computers
url http://cds.cern.ch/record/2025032
work_keys_str_mv AT maciejewskimichał automatedobjectorientedsimulationframeworkformodellingofsuperconductingmagnetsatcern