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Study the effect of axially perforated baffle plate with multiple opposite-oriented trapezoidal flow deflectors in an air–water tubular heat exchanger

Md Atiqur Rahman (Department of Mechanical Engineering, Birla Institute of Technology, Ranchi, India)

World Journal of Engineering

ISSN: 1708-5284

Article publication date: 7 February 2024

23

Abstract

Purpose

The research focused on analysing a unique type of heat exchanger that uses swirling air flow over heated tubes. This heat exchanger includes a round baffle plate with holes and opposite-oriented trapezoidal air deflectors attached at different angles. The deflectors are spaced at various distances, and the tubes are arranged in a circular pattern while maintaining a constant heat flux.

Design/methodology/approach

This setup is housed inside a circular duct with airflow in the longitudinal direction. The study examined the impact of different inclination angles and pitch ratios on the performance of the heat exchanger within a specific range of Reynolds numbers.

Findings

The findings revealed that the angle of inclination significantly affected the flow velocity, with higher angles resulting in increased velocity. The heat transfer performance was best at lower inclination angles and pitch ratios. Flow resistance decreased with increasing angle of inclination and pitch ratio.

Originality/value

The average thermal enhancement factor decreased with higher inclination angles, with the maximum value observed as 0.94 at a pitch ratio of 1 at an angle of 30°.

Keywords

Acknowledgements

The author greatly appreciates the support, facility and assistance provided by the Department of Mechanical Engineering, BIT-Mesra, India.

Availability of data and materials: Will be made available on request.

Author’s contributions: Equal contribution to author.

Citation

Rahman, M.A. (2024), "Study the effect of axially perforated baffle plate with multiple opposite-oriented trapezoidal flow deflectors in an air–water tubular heat exchanger", World Journal of Engineering, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1108/WJE-10-2023-0425

Publisher

:

Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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