Applied thermal engineering2022,Vol.21511.DOI:10.1016/j.applthermaleng.2022.118933

Geometric and operational analysis of a heat recuperator operating with s-CO_2 near the pseudocritical region

Olivia C. da Rosa Alexandre K. da Silva Louis Gosselin
Applied thermal engineering2022,Vol.21511.DOI:10.1016/j.applthermaleng.2022.118933

Geometric and operational analysis of a heat recuperator operating with s-CO_2 near the pseudocritical region

Olivia C. da Rosa 1Alexandre K. da Silva 1Louis Gosselin2
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作者信息

  • 1. Department of Mechanical Engineering, Federal University of Santa Catarina
  • 2. Department of Mechanical Engineering, Universite Laval
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Abstract

Heat recuperators are commonly used in numerous industrial processes, including power generation plants. Additionally, with interest in power cycles operating with supercritical fluids, such as carbon dioxide (s-CO_2), a better understanding of heat exchangers operating with the hot and cold fluids near the pseudo critical points is needed. Therefore, this study models a printed circuit heat exchanger operating with s-CO_2 on the hot and cold sides using a finite volume formulation. The model considers the convective resistances associated with the s-CO_2 on both sides of the heat exchanger, as well as the conductive resistance due to the solid wall separating them. The recuperator's behavior was analyzed while varying its geometrical (diameter, length and number of channels) and operational (inlet pressure and temperature on both sides) parameters. Thermal and hydraulic figures of merit were considered, such as the heat exchanger effectiveness, thermal conductance and pressure drop. The results showed that similarly to geometrical parameters, the operational conditions also had a significant effect on the figure of merits considered, especially near the pseudo critical line, a region characterized by major property changes. In addition, a multi-objective optimization process was implemented returning a series of optimal solutions, which were presented as a Pareto curve. Among the results obtained, it is worth mentioning that an optimum hot s-CO_2 inlet temperature was obtained for the entire front at roughly 650 K, while there were a minimum number of channels and a cold s-CO_2 inlet pressure, close to 155,000 and 15 MPa, respectively, limiting the Pareto front, which were related to the maximum effectiveness.

Key words

PCHE/Recuperator/Supercritical fluid/Carbon dioxide/Optimization

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量2
参考文献量37
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