JP Journal of Heat and Mass Transfer

The JP Journal of Heat and Mass Transfer is indexed in Scopus® and specializes in publishing articles related to heat and mass transfer. The journal covers both theoretical and experimental aspects and emphasizes their applications in engineering, electronics, environmental sciences, and nanoscale heat transfer. Additionally, the journal welcomes articles that explore transport-property data, energy engineering, and environmental applications.

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NANOFLUID EFFECT IN THE VERTICAL PIPE WITH HEAT INPUT CONCERNING FLAT PLATE SOLAR COLLECTOR: AN ANALYTICAL ANALYSIS

Authors

  • Rama Chandra Panda
  • Lipika Panigrahi
  • Sudhansu S. Sahoo
  • Ashok K. Barik

Keywords:

analytical study, flat plate solar collector, nanofluid, natural heat convection, heat transfer enhancement, parametric study.

DOI:

https://doi.org/10.17654/0973576322035

Abstract

Heat transfer analysis in nanofluid-based flat plate solar collectors has been investigated and presented in this work. $Cu-H_2O$ nanofluid in absorber tubes of the collector has been considered in the present analytical study. Natural convection flow in the pipe is studied as free convective flow through a vertical cylinder filled with $Cu-H_2O$ nanofluid. The governing nondimensional ODEs along with their appropriate boundary conditions are solved analytically. The impacts of numerous physical parameters like heat, Grashof number and volume of fraction concerning nanofluid are analyzed. The range of heat parameters is considered 1 to 3, while the Grashof number has been varied from 10-20 and the nanofluid volume fraction is varied from 1% to 3% in the parametric study. From the present study, it is observed that heat transfer enhancement occurs with an increase in the parameters mentioned.

Received: April 16, 2022;
Revised: May 24, 2022;
Accepted: June 13, 2022;

References

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Published

2022-07-15

Issue

Section

Articles

How to Cite

NANOFLUID EFFECT IN THE VERTICAL PIPE WITH HEAT INPUT CONCERNING FLAT PLATE SOLAR COLLECTOR: AN ANALYTICAL ANALYSIS. (2022). JP Journal of Heat and Mass Transfer, 28, 71-84. https://doi.org/10.17654/0973576322035

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