Experimental and Finite Element Investigation of Thermal Distribution and Heat Flux in an Internal Combustion Engine Cylinder

Authors
  • Sunday IWERIOLOR

    Author

  • Ngozi G. EMORDI

    Author

  • Festus O. ISAAC

    Author

  • Linus CHUKWUKA

    Author

  • Onyekachukwu N. AKPENYI-ABOH

    Author

  • Liberty ANWULE

    Author

Keywords:
Thermal Analysis, Engine Cylinder, Temperature, Finite Element, Heat transfer.
Abstract

The radial temperature variation, heat flow, heat-transfer rate, and convective cooling pattern within an engine cylinder wall were all examined using experimental and finite-element methods. At particular points along the cylinder wall, radial temperature measurements were taken from the inner combustion surface. The simulated temperatures resulting from steady-state finite-element thermal analysis were compared with experimental data. Experimented temperature data displayed a steady temperature drop from 450 °C at the inner wall to 158 °C at the exterior wall. Errors margins of 0.50 °C, 11.48 °C, and 3.13 °C were observed as simulated temperatures nearly approximate to interpolated experimental data. A maximum total heat flow of 5.415 × 10² W/m² became apparent via Temperature Contour analysis, resulting to a simulated heat-transfer rate of 146 kW.This is consistent with the experimental figure of 147 kW (0.68% deviation). The experimental result of 1100 W/m²•K differs 1.8% from the estimated convective heat-transfer coefficient of 1080 W/m²•K. The remarkable correlation between the observed and simulated temperatures, heat flux, heat-transfer rate, and convective coefficient indicates that the well-established finite-element framework provides a reliable and experimentally validated technique for quantifying heat transfer in engine cylinders. This provides a strong basis for the development of improved coatings, high-temperature-resistant materials, and cooling techniques in the future as well as a verifiable technique for establishing engine cylinder performance, durability, and thermal variables.

References
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Published
14-08-2026
Section
Articles
License

Copyright (c) 2026 Sunday IWERIOLOR, Ngozi G. EMORDI, Festus O. ISAAC, Linus CHUKWUKA, Onyekachukwu N. AKPENYI-ABOH, Liberty ANWULE (Author)

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

How to Cite

[1]
S. IWERIOLOR, N. G. EMORDI, F. O. ISAAC, L. CHUKWUKA, O. N. AKPENYI-ABOH, and L. ANWULE, “Experimental and Finite Element Investigation of Thermal Distribution and Heat Flux in an Internal Combustion Engine Cylinder”, FJET, vol. 2, no. 2, pp. 124–135, Aug. 2026, doi: 10.33003/p53cgp54.

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