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Computational analysis on the influence of design parameters and ambient conditions on performance of single stage traveling wave thermoacoustic generator

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dc.contributor.author Wickramasinghe, MDA
dc.contributor.author Manthilake, MMID
dc.contributor.author Wijewardane, MA
dc.contributor.author Ranasinghe, RACP
dc.contributor.editor Abeysooriya, R
dc.contributor.editor Adikariwattage, V
dc.contributor.editor Hemachandra, K
dc.date.accessioned 2024-03-15T04:27:30Z
dc.date.available 2024-03-15T04:27:30Z
dc.date.issued 2023-12-09
dc.identifier.citation M. Wickramasinghe, M. Manthilake, M. Wijewardane and R. Ranasinghe, "Computational Analysis on the Influence of Design Parameters and Ambient Conditions on Performance of Single Stage Traveling Wave Thermoacoustic Generator," 2023 Moratuwa Engineering Research Conference (MERCon), Moratuwa, Sri Lanka, 2023, pp. 288-291, doi: 10.1109/MERCon60487.2023.10355520. en_US
dc.identifier.uri http://dl.lib.uom.lk/handle/123/22321
dc.description.abstract The demand for clean and sustainable energy, energy conservation and recovery has increased with the growth of population and adverse impacts on the environment caused by using conventional energy sources. By transforming waste heat into sound, thermoacoustic technology is utilized to recover energy. Around the world, more study is being done in this area. Out of the two technologies used for thermoacoustic energy conversion, use of traveling waves was found to be more efficient than using standing waves. However still, the correlations between energy conversion efficiency and the design parameters need to be established by simulation as well as experiments. Here, a single stage traveling wave thermoacoustic generator was considered using an existing computational model. The influence of the ambient temperature and the length of the regenerator on the energy conversion efficiency was investigated. According to the results, the efficiency of the device increases with increasing ambient temperature for a constant regenerator length, while for a given ambient temperature the efficiency increased with the increasing regenerator length. There is a limit to this rise of efficiency with the regenerator length and after which, the acoustic behavior appears to be nonexistent. Further studies on this are being carried out. en_US
dc.language.iso en en_US
dc.publisher IEEE en_US
dc.relation.uri https://ieeexplore.ieee.org/document/10355520 en_US
dc.subject Thermoacoustic en_US
dc.subject Traveling wave en_US
dc.subject Regenerator en_US
dc.subject Heat recovery en_US
dc.subject DeltaEC en_US
dc.title Computational analysis on the influence of design parameters and ambient conditions on performance of single stage traveling wave thermoacoustic generator en_US
dc.type Conference-Full-text en_US
dc.identifier.faculty Engineering en_US
dc.identifier.department Engineering Research Unit, University of Moratuwa en_US
dc.identifier.year 2023 en_US
dc.identifier.conference Moratuwa Engineering Research Conference 2023 en_US
dc.identifier.place Katubedda en_US
dc.identifier.pgnos pp. 288-291 en_US
dc.identifier.proceeding Proceedings of Moratuwa Engineering Research Conference 2023 en_US
dc.identifier.email [email protected] en_US
dc.identifier.email [email protected] en_US
dc.identifier.email [email protected] en_US
dc.identifier.email [email protected] en_US


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