THE ANALYSIS OF THE OPERATION OF A LINEAR HOMOPOLAR MOTOR AND ITS APPLICATIONS IN THE CONTEXT OF ELECTRICAL ENGINEERING

Authors

DOI:

https://doi.org/10.47820/recima21.v3i11.2210

Keywords:

Homopolar motor, Simulation programs, Lorentz force

Abstract

This work aims to describe the design, design and operational characteristics of a homopolar engine using physical experiments and simulation programs. The homopolar motor converts electrical energy into mechanical energy using lorentz force, the torque of this force drives the homopolar motor forward. The aim of this study is to describe the design, design and operational characteristics of a homopolar engine, and the specific objective is to define and characterize the homopolar engine; and discuss the theoretical model in PSpice. A homopolar model was developed in the software in PSpice. Through experiments using various lubricants and a variation of reinforcements, it was possible to achieve maximum average speeds of 0.71m/s. Simulation in PSpice was able to predict the performance of the homopolar engine, including position and speed.

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Author Biographies

Luiz Gustavo da Silva

Universidade de Araraquara - UNIARA

Antonio Pinto do Nascimento Neto

Prof. Me. do curso de Engenharia Eletrica da Universidade de Araraquara - Uniara

References

ALVES, R, N. Propulsão elétrica de navios. Orientador: Edson Hirokazu Watanabe. 2007 180 F. Dissertação (Mestre em Ciências em Engenharia Elétrica)- Universidade Federal do Rio de Janeiro, 2007. Disponível em: http://www.pee.ufrj.br/index.php/pt/producao-academica/dissertacoes-de-mestrado/2007-1/2007102901-2007102901/file Access: 20 set. 2022.

BARRET, P. Machines électriques: Théorie et mise en oeuvre. Paris: Elipses, 2002.

BASSHAM, B. A. An Evaluation of Electric Motors for Ship Propulsion. Advisor: Robert Ashton. 2009, 118 F. Dissertation (Master of Science in Electrical Engineering)- Naval Postgraduate School (NPS), Monterey, California, USA, 2009. Available: https://core.ac.uk/download/36694766.pdf Access: 20 set. 2022.

BURRES, Tim. Benchmarking State-of-the-art Technologies. Oak Ridge National Laboratory, 2013. Available: https://www.energy.gov/sites/prod/files/2014/03/f13/ape006_burress_2013_o.pdf Access: 20 set. 2022.

DMITRIEVSKII, V.; PRAKHT, V.; ANUCHIN, A.; KAZAKBAEV, V. Design optimization of a traction synchronous homopolar motor. Mathematics, Basel, Switzerland, v. 9, n. 12, p. 1-12, 2021. . Available: https://www.mdpi.com/2227-7390/9/12/1352 Access: 20 set. 2022.

DOFF, A..; SZMOSKI, R. M. A descrição do funcionamento de um motor Homopolar linear e suas aplicações: Ilustrando o funcionamento de um acelerador de partículas. Revista Brasileira de Ensino de Física, São Paulo, v. 38, n. 2, p. e2311, 2016. Disponível em: https://www.scielo.br/j/rbef/a/VXW6TW3qwPFLFNKh3bf8CCd/?format=pdf&lang=pt Access: 20 set. 2022.

FARIA NETO, A.; LOTUFO, F. A.; MESQUITA, L.; COELHO, A. P. C. Introdução ao armazenamento eletroquímico de energia: uma abordagem didática. Revista Ciências Exatas, Taubaté, SP, v. 19 n. 2, p. 36-46, 2013. Disponível em: http://periodicos.unitau.br/ojs/index.php/exatas/article/view/1927/1327 Acesso e: 28 set. 2022.

HELERBROCK, R. Torque. Brasil Escola. 2018. Disponível em: https://brasilescola.uol.com.br/fisica/torque-uma-forca.htm Acesso em: 6 set. 2022.

IRONS, S. Lecturer / Manager Instructional Labs. The Physics Teacher, Yale, v. 53, pp. 186-188, 2015. Available: https://physics.yale.edu/news/stephen-irons-lecturer-manager-instructional-labs-published-physics-teacher-vol-53-march-2015 Access: 20 set. 2022.

KUSKO, A.; PEERAN, S. M. Definition of the brushless DC motor. In: ENGINEERING CONFERENCE RECORD OF THE 1988. IEEE INDUSTRY APPLICATIONS SOCIETY ANNUAL MEETING, USA . 1988 [Proceeding…] USA, IEEE, 1988. v. 35, n. 6, p. 20-22. Available: https://ieeexplore.ieee.org/document/25036 Access: 20 set. 2022.

MARQUES, L. V. Uma abordagem histórica da indução eletromagnética para o ensino fundamental os experimentos do disco de Faraday e do motor homopolar. Orientador: Antony Marco Mota Polito. 2018. 72 f. Dissertação (Mestre)-Universidade de Brasília, Sociedade Brasileira de física, Brasília, DF, 2018. Disponível em: 2018https://repositorio.unb.br/bitstream/10482/33238/2/2018_Leth%C3%ADciaVieiraMarques_PRODUTO.pdf Acesso em: 6 set. 2022.

MORO, J. Z. Motor homopolar. 2009. Disponível em: http://voltampere.blogspot.com/2009/11/o-motor-homopolar.html Acesso em: 30 set. 2022.

SANTARELLI, R. Motor de Faraday. Instituto de Física Gleb Wataghin. UNICAMP F 609B, Tópicos de Ensino de Física I Relatório Final, 2007. Disponível em: https://www.ifi.unicamp.br/~lunazzi/F530_F590_F690_F809_F895/F809/F809_sem1_2007/RaphaelS-Saa_F609_RF2.pdf Acesso: 20 set. 2022.

TARASIUK, T. A few remarks about assessment methods of electric power quality on ships — present state and further development. Measurement, Perugia, Italy, v. 4, n. 8, p. 1153-1163 , 2009. Available: https://www.sciencedirect.com/science/article/abs/pii/S0263224108000304 Access: 20 set. 2022.

PRAÇA. F. S. G. Metodologia da pesquisa científica: organização estrutural e os desafios para redigir o trabalho de conclusão. Revista Eletrônica “Diálogos Acadêmicos, Fortaleza/CE, v. 8, n. 1, p. 72-87, jan-jul, 2015. Disponível em: http://uniesp.edu.br/sites/_biblioteca/revistas/20170627112856.pdf Acesso em: 12 set. 2022.

Published

21/11/2022

How to Cite

Silva, L. G. da, & Nascimento Neto, A. P. do. (2022). THE ANALYSIS OF THE OPERATION OF A LINEAR HOMOPOLAR MOTOR AND ITS APPLICATIONS IN THE CONTEXT OF ELECTRICAL ENGINEERING. RECIMA21 - Revista Científica Multidisciplinar - ISSN 2675-6218, 3(11), e3112210. https://doi.org/10.47820/recima21.v3i11.2210