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Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 77, 2020 - Issue 6
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Original Articles

Numerical analysis on supercritical natural convection by lattice Boltzmann method

, , , &
Pages 461-473 | Received 29 Aug 2019, Accepted 04 Mar 2020, Published online: 24 Mar 2020
 

Abstract

One of the main factors affecting the heat transfer efficiency of solar collector is that the ordinary fluid in it is in the state of natural convection. Supercritical fluid is expected to improve the heat transfer efficiency of solar collectors due to its dramatic changes in thermal properties, so it is necessary to carry out the research of natural convection of supercritical fluid. Although researchers have made lots of related experimental investigations, heat transfer mechanism of supercritical natural convection is still unclear. In order to clarify its heat transfer mechanism, this article conducts a numerical analysis for supercritical natural convection applying lattice Boltzmann method, which has been proved to be valid and convenient. Considering the influences of temperature difference and pressure on natural convective heat transfer of supercritical fluid are seldom studied, the relevant researches are carried out in the article. The results imply that pressure of supercritical fluid in solar collectors should be less than 11 MPa so that high heat transfer performance can be obtained. Finally, the correlations of average Nusselt number, Rayleigh number, and pressure are fitted for the convenience of heat transfer calculation.

Additional information

Funding

This study is supported by the Natural Science Foundation of Jiangsu Province (No. BK20180732), China Postdoctoral Science Foundation (No. 2018M632332), and the Natural Science Research of Colleges and Universities of Jiangsu Province (No. 18KJB470017).

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