CFD Analysis of Heat Transfer Enhancement in a Flat-Plate Solar Collector/Evaporator with Different Geometric Variations in the Cross Section

William Quitiaquez, José Estupiñán Campos, César Nieto-Londoño, Patricio Quitiaquez

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

There is a growing demand from the industrial sector and the population to cover the need for water temperature increases that can be covered with systems such as heat pumps. The present research aims to increase the heat transfer to the working fluid in a collector/evaporator, part of a solar-assisted direct expansion heat pump. This research was developed using a numerical analysis and by applying computational fluid dynamics; different simulations were performed to compare the performances of collector/evaporators with models exhibiting variations in the cross-section profile under similar conditions. An average incident solar radiation of 464.1 W·m−2 was considered during the analysis. For the comparison, profiles with hexagon-, four-leaf clover-, and circular-shaped sections with floral shapes, among others, were analysed, resulting in a temperature increase at the outlet of the working fluid of 1.3 °C. In comparison, the collector/evaporator surface temperature varied between 4 and 13.8 °C, while the internal temperature of the fluid reached 11.21 °C. Finally, it is indicated that the best results were presented by analysing the profile corresponding to the circular section with the flower shape.

Original languageEnglish
Article number5755
JournalEnergies
Volume16
Issue number15
DOIs
StatePublished - Aug 2023

Bibliographical note

Funding Information:
This work was financially funded by the Engineering, Productivity, and Industrial Simulation Research Group (GIIPSI) of Universidad Politécnica Salesiana and Salesian Institutions of Higher Education (IUS).

Funding Information:
Universidad Politécnica Salesiana and Universidad Pontificia Bolivariana supported this work via the Engineering, Productivity, and Industrial Simulation Research Group (GIIPSI) and Grupo de Energía y Termodinámica, respectively.

Publisher Copyright:
© 2023 by the authors.

Keywords

  • cross-section profile
  • heat pump
  • heat transfer
  • hydrocarbon
  • solar-assisted heat pump

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