Employment of probability-based multi-response optimization in high voltage thermofluids

Author:

Ofodu JosephORCID,Abifarin JohnsonORCID

Abstract

Introduction/purpose: Researchers of fluids for high voltage engineering application always experience problems when selecting and recommending specific fluids suitable for high voltage application. This is due to the dual functionality of fluids required for high voltage equipment. Methods: This study introduced and employed a probability-based multi-objective optimization technique in the selection of high voltage thermofluids. Beneficial and unbeneficial preferable probability utility indexes were employed based on the desired properties of oils. Results: It was shown that the nanofluid with 0.6 wt% Al2O3 is the most promising candidate for high voltage equipment compared to other produced fluids considered. It is also noteworthy to state that coconut oil exhibited better performance efficiency compared to standard oil. This study also identifies that the produced Jatropha oil was inadequate for high voltage equipment. Conclusion: In conclusion, a preliminary study essential for final usage of 0.6 wt% Al2O3 nanofluids and coconut oil for high voltage equipment is recommended as well as the improvement of the performance characteristics of Jatropha oil for usage in high voltage equipment.

Publisher

Centre for Evaluation in Education and Science (CEON/CEES)

Reference43 articles.

1. Abd-Elhady, A.M., Ibrahim, M.E., Taha, T.A. & Izzularab, M.A. 2018. Effect of temperature on AC breakdown voltage of nanofilled transformer oil. IET Science, Measurement & Technology, 12(1), pp.138-144. Available at: https://doi.org/10.1049/iet-smt.2017.0217;

2. Abeysundara, D.C., Weerakoon, C., Lucas, J.R., Gunatunga, K.A.I. & Obadage, K.C. 2001. Coconut oil as an alternative to transformer oil. ResearchGate [online]. Available at: https://www.researchgate.net/publication/268414369_Coconut_oil_as_an_altern ative_to_transformer_oil [Accessed: 5 January 2022];

3. Abifarin, J.K. 2021. Taguchi grey relational analysis on the mechanical properties of natural hydroxyapatite: effect of sintering parameters. The International Journal of Advanced Manufacturing Technology, 117, pp.49-57. Available at: https://doi.org/10.1007/s00170-021-07288-9;

4. Abifarin, J.K., Fidelis, F.B., Abdulrahim, M.Y., Oyedeji, E.O., Nkwuo, T. & Prakash, C. 2022. Response Surface Grey Relational Analysis On The Manufacturing of High Grade Biomedical Ti-13Zr-13Nb (preprint). The International Journal of Advanced Manufacturing Technology. Available at: https://doi.org/10.21203/rs.3.rs-1225030/v1;

5. Abifarin, J.K. & Ofodu, J.C. 2022. Modeling and Grey Relational Multiresponse Optimization of Chemical Additives and Engine Parameters on Performance Efficiency of Diesel Engine. International Journal of Grey Systems, in press. Available at: https://doi.org/10.52812/ijgs.33;

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