Prediction of pool boiling heat transfer coefficient for the refrigerant R141b and its solutions with surfactant and nanoparticles using limited set of experimental data

dc.contributor.authorKhliyeva, O.
dc.contributor.authorNikulin, A.
dc.contributor.authorZhelezny, V.
dc.contributor.authorLukianov, N.
dc.contributor.authorSemenyuk, Yu.
dc.contributor.authorMoreira, A. L. N.
dc.contributor.authorMurshed, S. M. S.
dc.date.accessioned2021-06-02T09:03:07Z
dc.date.available2021-06-02T09:03:07Z
dc.date.issued2019
dc.descriptionPrediction of pool boiling heat transfer coefficient for the refrigerant R141b and its solutions with surfactant and nanoparticles using limited set of experimental data / O. Khliyeva, A. Nikulin, V. Zhelezny, N. Lukianov, Yu. Semenyuk, A. L. N. Moreira, S. M. S. Murshed // Proc. of the 1th Intern. Conf. on Nanofluids (ICNF 2019), 2nd Europ. Symp. on Nanofluids (ICNF 2019), Castello (Spain), 26–28 June 2019. – Castello, 2019. – Р. 154–157 : fig. – Ref.: 5 tit.ru_RU
dc.description.abstractThe main purpose of this study is to evaluate the expediency of limited set of experimental data (LSED) to increase the accuracy of heat transfer coefficient (НTС) prediction under pool boiling conditions. The analysis was performed for the pure refrigerant R141b and its solutions with the surfactant Span-80 and TiO2 nanoparticles. The results have shown, that the joint use of LSED and existing correlations for internal boiling characteristics (IBC) helps to improve HTC prediction.ru_RU
dc.identifier.urihttps://card-file.ontu.edu.ua/handle/123456789/17809
dc.subjectpool boilingru_RU
dc.subjectnanofluidru_RU
dc.subjectheat transfer coefficientru_RU
dc.titlePrediction of pool boiling heat transfer coefficient for the refrigerant R141b and its solutions with surfactant and nanoparticles using limited set of experimental dataru_RU
dc.typeArticleru_RU
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