A comprehensive review of the energy efficiency on nano coated fin and tube condenser

Author:

Venkateswaran Naveenprabhu1ORCID,Subbaiyan Naveen2,Punniyakotti Varadharajan Gopirajan3ORCID,Vellingiri Suresh4ORCID,Asary Abdul Rab5,Giri Jitendra Mohan6ORCID,Petchimuthu Pitchandi7

Affiliation:

1. Department of Mechanical Engineering Sri Eshwar College of Engineering Coimbatore Tamil Nadu India

2. Department of Mechanical Engineering Saveetha School of Engineering, SIMATS Chennai Tamil Nadu India

3. Department of Computational Intelligence, School of Computing, SRM Institute of Science And Technology Kattankulathur campus Chennai Tamil Nadu India

4. Department of Mechanical Engineering Kingston Engineering College Vellore Tamil Nadu India

5. Department of Energy Science and Engineering University of Naples Parthenope Italy

6. Department of Mechanical Engineering Lloyd Institute of Engineering & Technology Greater Noida India

7. Department of Mechanical Engineering PSN College of Engineering and Technology Tirunelveli Tamil Nadu India

Abstract

AbstractThe condenser is a piece of equipment used to effectively transfer heat from water to the environment. The fin and tube condenser is the most commonly used in commercial applications. The improved performance of heat transfer in the fin and tube condenser is a significant area of study all over the world because optimizing the efficiency of heat transfer in the condenser will contribute to enhancing the effectiveness of system performance. The vapor deposition, plasma spray, and thermal spray techniques are being used, and it is determined that a heat transfer enhancing coating improves condenser performance. This review discusses the nanomaterial coating over the fin and tube condenser in detail. The various nanomaterial coatings with various propositions and coating methods had been discussed with the evidence of previous researchers. At a 50‐degree inclination angle on the condensate plate, the condensate over the coating surface increases by more than 30%. The thermal properties of the working fluid are improved over the condenser, and the overall effectiveness of the condenser is increased by approximately 40% over the non‐coated condenser. A 1% volumetric concentration of Nanoparticles in the coated material achieves a maximum efficiency increase of 78.7%.

Publisher

Wiley

Subject

Management, Monitoring, Policy and Law,Public Health, Environmental and Occupational Health,Pollution,Waste Management and Disposal

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