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Interactive FEM education for load-bearing system static and dynamic analysises by case of the bionic tower of the Eddys- tone lighthouse

https://doi.org/10.21122/2309-4923-2022-3-76-87

Abstract

FEM simulation of Eddystone lighthouse is provided. Incorporated bionic tower is modelled as well. Load cases including gravity force, wind thrust, water stream and 50-year wave impulse are accomplished. Stress concentrator system is described. Effect of tension stress concentrator compensation caused by gravity is showed. Low gradient stress dispensation is demonstrated for bionic tower outer surfaces. Recommendation touching places to monitor are given.

Methodic experience related to interactive one-command student – professor FEM simulation of responsible load-bearing systems is collected.

About the Authors

S. S. Dounar
Belarusian National Technical University
Belarus

Stanislau Dounar, candidate of technical sciences, docent, “Technological machines” department of mechanical engineering faculty

Minsk



A. M. Iakimovitch
Belarusian National Technical University
Belarus

Aleksandre Iakimovitch, candidate of technical sciences, professor, “Technological machines” department of mechanical engineering faculty

Minsk



O. K. Jatskevitch
Belarusian National Technical University
Belarus

Jatskevich Volha, candidate of technical sciences, docent, chief of department “Technological machines”

Minsk



A. D. Lapuka
Belarusian National Technical University
Belarus

Anastasia Lapuka, assistant of “Technological machines” department of mechanical faculty

Minsk



References

1. Rowlett, Russ. Lighthouses of Southwest England (Devon and Cornwall). The Lighthouse Directory. University of North Carolina at Chapel Hill. Retrieved 30 April 2016.

2. Douglass, J. (1878), Note on the eddystone lighthouse., in “Minutes of the Proceedings of the Institution of Civil Engineers”, Vol. 53, Thomas Telford-ICE Virtual Library, pp. 247–248.

3. Davide Banfi A fi and laboratory study on the dynamic response of the Eddystone lighthouse to wave loading. School of Engineering Plymouth University Thesis submitted for the degree of Doctor of Philosophy, September 2017 https://www.researchgate.net/publication/325553419

4. Rinh, Q., Raby, A., Banfi D., Corrado, M., Chiaia, B., Rafi Y. & Cali, F. (2016), “Modelling the eddystone lighthouse response to wave loading”, Engineering Structures, 125, 566–578.

5. Stanislau Dounar, Alexandre Iakimovitch, Katsiaryna Mishchanka, Andrzej Jakubowski, and Leszek Chybowski. (2020) FEA Simulation of the Biomechanical Structure Overload in the University Campus Planting. Applied Bionics and Biomechanics, Volume 2020, Article ID 8845385. https://doi.org/10.1155/2020/8845385

6. Vincent, Julian F. V.; Olga A Bogatyreva, Nikolaj R Bogatyrev, Adrian Bowyer, Anja-Karina Pahl. (2006). «Biomimetics: its practice and theory». Journal of the Royal Society Interface. 3 (9): 471–482. https://doi:10.1098/rsif.2006.0127

7. Довнар С.С., Лапука А.Д. МКЭ-АНАЛИЗ БИОНИЧЕСКОГО УСИЛЕНИЯ КОЛОНН СТАНКОВ. «Перспективные направления развития технологии машиностроения и металлообработки» «Технология – Оборудование – Инструмент – Качество»: тезисы докл. 36-ой междун. науч.-техн. конф. (Минск, 7 апреля 2022 г.). Минск: Бизнесофсет, 2022. с. 31 34. https://rep.bntu.by/handle/data/111441


Review

For citations:


Dounar S.S., Iakimovitch A.M., Jatskevitch O.K., Lapuka A.D. Interactive FEM education for load-bearing system static and dynamic analysises by case of the bionic tower of the Eddys- tone lighthouse. «System analysis and applied information science». 2022;(3):76-87. (In Russ.) https://doi.org/10.21122/2309-4923-2022-3-76-87

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