DOI

The paper discusses the concept of a system that encapsulates the transition from geometry building to strength tests. The solution we propose views the engineer as a programmer who is capable of coding the procedure for working with the modeli.e., to outline the necessary transformations and create cases for boundary conditions. We propose a prototype of such system. In our work, we used: Python programming language to create the program; Jupyter framework to create a single workspace visualization; pythonOCC library to implement CAD; FeniCS library to implement FEM; GMSH and VTK utilities. The prototype is launched on a platform which is a dynamically expandable multi-tenant cloud service providing users with all computing resources on demand. However, the system may be deployed locally for prototyping or work that does not involve resource-intensive computing. To make it possible, we used containerization, isolating the system in a Docker container.

Язык оригиналаанглийский
Название основной публикацииComputer Methods in Mechanics, CMM 2017
Подзаголовок основной публикацииProceedings of the 22nd International Conference on Computer Methods in Mechanics
РедакторыTadeusz Burczynski, Jaroslaw Latalski, Ewa-Blazik Borowa, Jerzy Podgorski, Jaroslaw Bec, Mieczyslaw Kuczma, Jerzy Warminski
ИздательAmerican Institute of Physics
Число страниц7
Том1922
ISBN (электронное издание)9780735416147
DOI
СостояниеОпубликовано - 5 янв 2018
Событие22nd International Conference on Computer Methods in Mechanics, CMM 2017 - Lublin, Польша
Продолжительность: 13 сен 201716 сен 2017

Серия публикаций

НазваниеAIP Conference Proceedings
ИздательAMER INST PHYSICS
Том1922
ISSN (печатное издание)0094-243X

конференция

конференция22nd International Conference on Computer Methods in Mechanics, CMM 2017
Страна/TерриторияПольша
ГородLublin
Период13/09/1716/09/17

    Предметные области Scopus

  • Физика и астрономия (все)

ID: 35949322