Parallelization of Plasma Physics Simulations on Massively Parallel Architectures
Proyecto de Graduación (Maestría en Computación) Instituto Tecnológico de Costa Rica, Escuela de Ingeniería en Computación, 2017.
Autor Principal: | Chavarría-Ledezma, Luis Diego |
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Otros Autores: | Meneses-Rojas, Esteban |
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Idioma: | Inglés |
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Instituto Tecnológico de Costa Rica
2018
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https://hdl.handle.net/2238/9594 |
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RepoTEC95942023-05-04T15:01:45Z Parallelization of Plasma Physics Simulations on Massively Parallel Architectures Chavarría-Ledezma, Luis Diego Meneses-Rojas, Esteban Fuentes de energía Plasma Física Simulación Paralelismo Arquitectura de computadoras Proyecto de Graduación (Maestría en Computación) Instituto Tecnológico de Costa Rica, Escuela de Ingeniería en Computación, 2017. Clean energy sources have increased its importance in the last few years. Because of that, the seek for more sustainable sources has been increased too. This effect made to turn the eyes of the scientific community into plasma physics, specially to the controlled fusion. This plasma physics developments have to rely on computer simulation processes before start the implementation of the respective fusion devices. The simulation process has to be done in order to detect any kind of issues on the theoretical model of the device, saving time and money. To achieve this, those computer simulation processes have to finish in a timely manner. If not, the simulation defeats its purpose. However, in recent years, computer systems have passed from an increment speed approach to a increment parallelism approach. That change represents a short stop for these applications. Because of these reasons, on this dissertation we took one plasma physics application for simulation and sped it up by implementing vectorization, shared, and distributed memory programming in a hybrid model. We ran several experiments regarding the performance improvement and the scaling of the new implementation of the application on sumpercomputers using a recent architecture, Intel Xeon Phi - Knights Landing - manycore processor. The claim of this thesis is that a plasma physics application can be parallelized achieving around 0.8 of performance under the right configuration and the right architecture. 2018-02-21T19:18:29Z 2018-02-21T19:18:29Z 2017 info:eu-repo/semantics/masterThesis https://hdl.handle.net/2238/9594 eng_US application/pdf Instituto Tecnológico de Costa Rica |
institution |
Tecnológico de Costa Rica |
collection |
Repositorio TEC |
language |
Inglés |
topic |
Fuentes de energía Plasma Física Simulación Paralelismo Arquitectura de computadoras |
spellingShingle |
Fuentes de energía Plasma Física Simulación Paralelismo Arquitectura de computadoras Chavarría-Ledezma, Luis Diego Parallelization of Plasma Physics Simulations on Massively Parallel Architectures |
description |
Proyecto de Graduación (Maestría en Computación) Instituto Tecnológico de Costa Rica, Escuela de Ingeniería en Computación, 2017. |
author2 |
Meneses-Rojas, Esteban |
format |
Tesis |
author |
Chavarría-Ledezma, Luis Diego |
author_sort |
Chavarría-Ledezma, Luis Diego |
title |
Parallelization of Plasma Physics Simulations on Massively Parallel Architectures |
title_short |
Parallelization of Plasma Physics Simulations on Massively Parallel Architectures |
title_full |
Parallelization of Plasma Physics Simulations on Massively Parallel Architectures |
title_fullStr |
Parallelization of Plasma Physics Simulations on Massively Parallel Architectures |
title_full_unstemmed |
Parallelization of Plasma Physics Simulations on Massively Parallel Architectures |
title_sort |
parallelization of plasma physics simulations on massively parallel architectures |
publisher |
Instituto Tecnológico de Costa Rica |
publishDate |
2018 |
url |
https://hdl.handle.net/2238/9594 |
_version_ |
1796139068749250560 |
score |
12.040382 |