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Using SpaceClaim scripts to create training models

https://doi.org/10.21122/2309-4923-2023-3-60-64

Abstract

One of the possible approaches in the formation of the geometric part of the finite-element model in the process of teaching students is the use of the language IronPython in SpaceClaim environment with the purpose of subsequent modeling on the platform ANSYS WorkBench. The comparative advantages of Design Modeler and SpaceClaim for such a problem are described. An example of using this approach in a real learning process is given.

About the Authors

V. V. Naprasnikov
Belarusian National Technical University
Belarus

Naprasnikov Vladimir Vladimirovich, PhD, associate Professor of the Software Department

Minsk



Zirui Wang
Belarusian National Technical University
Belarus

Wang Zirui, postgraduate student of the department "Software for information systems and technologies

Minsk



I. L. Kovaleva
Belarusian National Technical University
Belarus

Irina L.Kovaleva, PhD, associate Professor of the Department of Software for Information technologies and systems

Minsk



S. N. Novikov
Belarusian National Technical University
Belarus

Novikov Sergey Nikolaevich, graduate student of the department "Software for information systems and technologies"

Minsk



References

1. Naprasnikov V.V., Polozkov J.V., Kunkevich D.P. Van Czy ZHuj, Solovev A.N. Preparation of data on external loads in problems with changing boundary conditions for parts with cellular structures. Mathematical methods in technology and engineering. 2022;12(1):22-28. DOI: I0.52348/2712-8873_MMTT_2022_12_22

2. Kovaleva I.L., Kunkevich D.P., Naprasnikov V.V.,. Polozkov Yu.В,. Chvankov A.A. Topological optimization of the constructive geometry of lightweight parts. "System analysis and applied informatics." 2022;(3):55-61.

3. Naprasnikov V.V., Polozkov J.V., Borodulya A.V., Kunkevich D.P. Building a geometric part finite element model of one kind of porous structures. «System analysis and applied information science». 2019;(4):55-61. (In Russ.) DOI: 10.21122/2309-4923-2019-4-55-61

4. Krasnovskaya S.V., Naprasnikov V.V. Investigation of the possibility of identifying the clamping forces of structural fasteners using neural networks based on a fi element model of a compressor-condenser installation. Informatics. 2017;(4):92-99.

5. Krasnovskaya S.V, Naprasnikov V.V. An overview of the possibilities of optimization algorithms for modeling the designs of compressor-condenser units by the finite element method. News of National Academy of Sciences Belarus, series of physical and technical sciences. 2016;(2):92-99.

6. Naprasnikov V.V., Krasnovskaya S.V. Simplifying assumptions of condensing unit finite element model and their influence on natural frequency spectrum. «System analysis and applied information science». 2014;(1-3):51-55.

7. Huei-Huang, L. Finite elements simulations with ANSYS Workbench 14. Kansas : SDC, 2012, 602 p.

8. Free Engineering Simulation Software for Students [Electronic resource] // ANSYS Inc., 2016. URL: http://www.ansys.com/products/academic (accessed: 30.10.2016).

9. Python 2.7.13 documentation // Python Software Foundation, 2016. URL: https://docs.python.org/2/ (accessed: 30.10.2016).

10. SpaceClaim Online Help [Electronic resource] / SpaceClaim Corporation, 2023. Access mode : https://help.spaceclaim.com/2023.0.0/en/Content/Scripting.htm. Аccessed: 25.03.2023


Review

For citations:


Naprasnikov V.V., Wang Z., Kovaleva I.L., Novikov S.N. Using SpaceClaim scripts to create training models. «System analysis and applied information science». 2023;(3):60-64. (In Russ.) https://doi.org/10.21122/2309-4923-2023-3-60-64

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ISSN 2309-4923 (Print)
ISSN 2414-0481 (Online)