Abstract

Heat generation of engineering appliances has bad effect in handling the system can cause the trouble, short life cycle of machines, frequent maintenance requirements and low reliability of systems. The passive cooling technique has been widely used to solve such problems. This review work summarizes the heat transfer enhancement technique in a rectangular fin with economic way. So many research about the enhancement of heat transfer by rectangular fins experimentally and numerically and found very significant result. In this review, various types of rectangular fin structures are studied simultaneously. It is revealed through reviewing the related literature that the highest value of equivalent heat transfer enhancement is found the increase in average heat transfer performance of inverted triangular notched fin 50.51% as compared with plane rectangular fin and the perforated fin total heat transfer rate increased by 38.9% compared to regular fin. Furthermore, by reduction of the optimal fin spacing, heat flux can be changed by 20% in standard rectangular fin when compared with regular fin spacing. Also cooling performance of the inclined rectangular fin with 60° of tilt angle is seen to be as 6% higher than solid rectangular fin. This article can be considered as a benchmark in the practical application for enhances the heat transfer rates.

Highlights

  • Heat generation of engineering appliances has bad effect in handling the system can cause the trouble, short life cycle of machines, frequent maintenance requirements and low reliability of systems

  • Up to the critical fin spacing value, heat transfer coefficient rises and it decreases with the increase of fin spacing

  • The perforated fin total heat transfer rate increased by 38.9% and the heat transfer coefficient increased by 31.8%. 1

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Summary

INTRODUCTION

Heat generation of engineering appliances has bad effect in handling the system can cause the trouble, short life cycle of machines, frequent maintenance requirements and low reliability of systems. In passive methods heat transfer rate is often increased by providing extended surfaces which increases the effective heat transfer area. This is done by adding fins, pins, or other extensions to the heat transferring surface. These methods have so many advantages than active methods so that it is preferred for widely used. The present study investigated the heat transfer enhancement in various arrangements of several types of rectangular fin by using passive heat transfer technique and their impacts on different mediums and configurations. Review on Heat Transfer Enhancement by Rectangular Fin. International Journal of Engineering Materials and Manufacture, 6(2), 81-94. Chakma and Abedin (2021): International Journal of Engineering Materials and Manufacture, 6(2), 81-94

STUDIES ON STANDARD RECTANGULAR FINS
STUDIES ON INTERRUPTED RECTANGULAR FINS
STUDIES ON PERFORATED RECTANGULAR FINS
STUDIES ON INCLINED RECTANGULAR FINS
CONCLUSIONS
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