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Hybrid optimization algorithm for enhanced performance and security of counter-flow shell and tube heat exchangers

Kiran, Ajmeera; Nagaraju, Ch; Babu, J. Chinna; Venkatesh, B; Kumar, Adarsh; Khan, Surbhi Bhatia; Albuali, Abdullah; Basheer, Shakila

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Authors

Ajmeera Kiran

Ch Nagaraju

J. Chinna Babu

B Venkatesh

Adarsh Kumar

Surbhi Bhatia Khan

Abdullah Albuali

Shakila Basheer



Contributors

Mashallah Rezakazemi
Editor

Abstract

A shell and tube heat exchanger (STHE) for heat recovery applications was studied to discover the intricacies of its optimization. To optimize performance, a hybrid optimization methodology was developed by combining the Neural Fitting Tool (NFTool), Particle Swarm Optimization (PSO), and Grey Relational Analysis (GRE). STHE heat exchangers were analyzed systematically using the Taguchi method to analyze the critical elements related to a particular response. To clarify the complex relationship between the heat exchanger efficiency and operational parameters, grey relational grades (GRGs) are first computed. A forecast of the grey relation coefficients was then conducted using NFTool to provide more insight into the complex dynamics. An optimized parameter with a grey coefficient was created after applying PSO analysis, resulting in a higher grey coefficient and improved performance of the heat exchanger. A major and far-reaching application of this study was based on heat recovery. A detailed comparison was conducted between the estimated values and the experimental results as a result of the hybrid optimization algorithm. In the current study, the results demonstrate that the proposed counter-flow shell and tube strategy is effective for optimizing performance.

Citation

Kiran, A., Nagaraju, C., Babu, J. C., Venkatesh, B., Kumar, A., Khan, S. B., …Basheer, S. (in press). Hybrid optimization algorithm for enhanced performance and security of counter-flow shell and tube heat exchangers. PloS one, 19(3), e0298731. https://doi.org/10.1371/journal.pone.0298731

Journal Article Type Article
Acceptance Date Jan 29, 2024
Online Publication Date Mar 25, 2024
Deposit Date Apr 8, 2024
Publicly Available Date Apr 8, 2024
Journal PLOS ONE
Print ISSN 1932-6203
Publisher Public Library of Science
Peer Reviewed Peer Reviewed
Volume 19
Issue 3
Pages e0298731
DOI https://doi.org/10.1371/journal.pone.0298731

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