EFFECTS OF NANOREFRIGERANTS FOR REFRIGERATION SYSTEM: A REVIEW
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Date
2023
Journal Title
Journal ISSN
Volume Title
Publisher
Begell House Inc.
Abstract
In this article various nanorefrigerants have been critically reviewed towards the performance enhancement of the refrigeration system. Research has been more focused on the different techniques to prepare nanorefrigerants. This paper is an attempt to summarize all aspects of nanorefrigerants such as preparation, thermophysical properties, hydrodynamic study, boiling heat transfer, and performance of nanorefrigerants. It also discusses the effects of different nanoparticles on ther-mophysical properties. Nanorefrigerants are a special category of nanofluid, advanced nanotech-nology-based refrigerants that are stable mixtures of nanoparticles and base fluid, which improve thermophysical properties such as heat transfer and pressure drop and bring compactness to the system. This article presents an overview of improving thermal performance by using different nanoparticle blends with different base refrigerants. Further, influential parameters of nanopar-ticles and thermal performance are discussed. This paper also discusses the effects of different nanoparticles such as Al<inf>2</inf>O<inf>3</inf>, TiO<inf>2</inf>, CuO, carbon nanotubes (CNTs), etc., on thermophysical prop-erties. The present situation requires a robust system and refrigerants for required performance. Some refrigerants cannot be used directly. So, this paper deals with using nanorefrigerants for better system performance such as coefficient of performance (COP) enhancement, compressor work reduction, and energy efficiency. It is seen that the use of nanorefrigerants, or nanotechnology-based refrigerants, results in highly effective cooling and thus enhances the thermophysical properties of refrigeration systems. © 2023 by Begell House, Inc. www.begellhouse.com.
Description
Keywords
Alumina, Aluminum oxide, Carbon nanotubes, Cooling systems, Copper oxides, Energy efficiency, Nanofluidics, Refrigeration, Thermodynamic properties, TiO2 nanoparticles, Titanium dioxide, Boiling heat transfer, Coefficient of Performance, Heat performance, Hydrodynamic studies, Nano refrigerants, Nanofluids, Performance enhancements, Property, Refrigeration system, Thermal Performance, Refrigerants
Citation
Nanoscience and Technology, 2023, 14, 1, pp. 17-36
