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P-ISSN: 2971-785X
E-ISSN: 3141-4095

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Volume 2, Issue 1

Research Article

Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study

Published: March 28, 2025 | Volume: 2 | Issue: 1

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View Count: 20 Page No: 33-40

Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study

Nyong, Oku Ekpenyong1 corresponding author email *, Odu, Odu Emmanuel2

Published: March 28, 2025 | Issue: Volume 2, Issue 1

Page No. 33–40

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Corresponding Author: Nyong, Oku Ekpenyong

Email: nyong.oku@gmails.com

1 Thermo-fluid, Combustion, and Energy System Research Group, Department of Mechanical engineering, University of Cross River State, Calabar, Nigeria.

2 Industrial, Manufacturing and Operations Research Group, Department of Mechanical engineering, University of Cross River State, Calabar, Nigeria.

Received: March 2, 2025 Reviewed: March 14, 2025 Accepted: March 28, 2025

Abstract

A preliminary design of a shell and tube heat exchanger (STHE) was conducted using a computer code developed in Engineering Equation Solver (EES). This code, based on the Kern method, systematically varied exchanger parameters, specifically the tube length, to identify configurations that met specified heat transfer coefficients and pressure drops within the Tubular Exchanger Manufacturers Association (TEMA) standards. The program considered shell-and-tube side flow heat exchangers with one shell pass and two tube passes, featuring segmental baffles and fixed tube sheets, with single-phase fluid flow on both sides. It was used to compute the overall dimensions of the design, ensuring conformance with TEMA requirements regarding allowable pressure drop and heat transfer coefficient. To enhance the fidelity of the work, the mathematical model was validated against literature. The study considered five different tube lengths, ranging from 6 feet to 14 feet. Observations indicated that the 14-foot tube length met all the criteria prescribed in the TEMA standard and was therefore selected as the core dimension for the
preliminary design of the current STHE. Finally, a parametric study capturing the effect of tube length on the heat transfer coefficient and pressure drop was also performed.

Keywords: Baffle spacing, friction factor, heat transfer coefficient, pressure drop, tube bundle

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APA
Nyong, Oku Ekpenyong et al. (2025). Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study. Nigerian Journal of Engineering Research, 2(1), 33-40. https://izlik.org/JA28WS58XL
AMA
Nyong, Oku Ekpenyong et al. Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study. Nigerian Journal of Engineering Research. 2025;2(1):33-40. https://izlik.org/JA28WS58XL
Chicago
Nyong, Oku Ekpenyong et al. 2025. \"Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study\". Nigerian Journal of Engineering Research 2 (1): 33-40. https://izlik.org/JA28WS58XL.
IEEE
[1] Nyong, Oku Ekpenyong et al., \"Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study\", Nigerian Journal of Engineering Research, vol. 2, no. 1, pp. 33-40, Mar 2025. [Online]. Available: https://izlik.org/JA28WS58XL
MLA
Nyong, Oku Ekpenyong et al. \"Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study\". Nigerian Journal of Engineering Research, vol. 2, no. 1, Mar 2025, pp. 33-40, https://izlik.org/JA28WS58XL.
Vancouver
1. Nyong, Oku Ekpenyong et al. Computer-based Program for Analyzing the Thermo-hydraulic Design of a Shell and Tube Heat Exchanger: Parametric Study. Nigerian Journal of Engineering Research [Internet]. 2025 Mar. 28;2(1):33-40. Available from: https://izlik.org/JA28WS58XL

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