Research Article
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Numerical investigations on a triple fluid heat exchanger with helical and sinusoidal coils

Year 2023, Volume: 7 Issue: 1, 46 - 56, 31.03.2023
https://doi.org/10.30521/jes.1116707

Abstract

A modification is made in the existing concentric heat exchanger design to enhance its heat duty. A standard concentric tube heat exchanger is modified by considering two inner tubes with a combination of helical and sinusoidal coils. Numerical studies are performed in this triple fluid heat exchanger to assess its thermal performance by taking into account mass flow rate, fluid temperatures, heat transfer, which are governed by fundamental heat transfer equations. Computational fluid dynamics simulation methodology together with local and element-by-element method is applied with a MatLab computer code. Hot water and milk fluids are used as working fluids in helical and sinusoidal coils, respectively. Cooling water is used as shell side fluid. The attainment of high heat-load-per-unit-area and high surface-area-to-volume ratio is used as optimizing parameter in the simulations. The helical coil provides an increase in heat transfer rate and overall heat transfer coefficient increases by a percentage 13% for varying hot fluid flow rates, when it is compared with the sinusoidal coil. The pressure drop for the helical coil increases, exponentially compared to the sinusoidal coil, thereby it shows a higher pumping power for the helical coil.

Thanks

The author acknowledges the assistance rendered by the post-graduate energy engineering student of author’s institution, Mr. Putta Venugopal, towards the completion of this work.

References

  • 1. Ahmet Unal, 2003, Effectiveness-NTU relations for triple concentric-tube heat exchangers, International Communications in Heat and Mass Transfer, vol. 30, pp. 261-272.
  • 2. Ediz Badmaz and K. P. Sandeep, 2005, Calculation of overall heat transfer coefficients in a triple tube heat exchanger, Heat and Mass Transfer, vol. 41, pp. 271-279.
  • 3. J. S. Jayakumar, S. M. Mahajani, J. C. Mandal, P. K. Vijayan and Rohidas Bhoi, 2008, Experimental and CFD estimation of heat transfer in helically coiled heat exchangers, Chemical Engineering Research and Design, vol. 86, pp. 221-232.
  • 4. O. Garcia-Valladares, 2004, Numerical simulation of triple concentric-tube heat exchangers, International Journal of Thermal Sciences, vol. 43, pp. 979-991.
  • 5. Timothy J. Rennie, 2004, Numerical and experimental studies of a double pipe helical heat exchanger, A thesis submitted to McGill University, Montreal, pp. 1-206.
  • 6. Mahmoud Abdelmagied, 2020, Experimental study of a triple spirally coiled tube heat exchanger thermo-fluid characteristics, Applied Thermal Engineering, vol. 180, pp. 115803.
  • 7. Mahmoud Abdelmagied, 2020, Thermal performance characteristics of a triple spiral tube heat exchanger, Chemical Engineering & Processing: Process Intensification, vol. 149. Pp. 107707.
  • 8. Arun Kumar Tiwari, Summaiya Javed, Hakan F. Oztop, Zafar Said and Naimish S. Pandya, 2021, Experimental and numerical investigation on the thermal performance of triple tube heat exchanger equipped with different inserts with WO3/water nanofluid under turbulent condition, International Journal of Thermal Sciences, vol. 164, pp. 106861.
  • 9. Mehdi Bahiraei, Nima Mazaheri and Maryam Hanooni, 2021, Performance enhancement of a triple-tube heat exchanger through heat transfer intensification using novel crimped-spiral ribs and nanofluid: A two-phase analysis, Chemical Engineering & Processing: Process Intensification, vol. 160. Pp. 108289.
  • 10. Ashraf Mimi Elsaid, Emad M.S. El-Said, Gamal B. Abdelaziz, Swellam W. Sharshir, Hamed R. El-Tahan and M.F. Abd Raboo, 2021, Performance and exergy analysis of different perforated rib designs of triple tubes heat exchanger employing hybrid nanofluids, International Journal of Thermal Sciences, vol. 168, pp. 107006.
Year 2023, Volume: 7 Issue: 1, 46 - 56, 31.03.2023
https://doi.org/10.30521/jes.1116707

Abstract

References

  • 1. Ahmet Unal, 2003, Effectiveness-NTU relations for triple concentric-tube heat exchangers, International Communications in Heat and Mass Transfer, vol. 30, pp. 261-272.
  • 2. Ediz Badmaz and K. P. Sandeep, 2005, Calculation of overall heat transfer coefficients in a triple tube heat exchanger, Heat and Mass Transfer, vol. 41, pp. 271-279.
  • 3. J. S. Jayakumar, S. M. Mahajani, J. C. Mandal, P. K. Vijayan and Rohidas Bhoi, 2008, Experimental and CFD estimation of heat transfer in helically coiled heat exchangers, Chemical Engineering Research and Design, vol. 86, pp. 221-232.
  • 4. O. Garcia-Valladares, 2004, Numerical simulation of triple concentric-tube heat exchangers, International Journal of Thermal Sciences, vol. 43, pp. 979-991.
  • 5. Timothy J. Rennie, 2004, Numerical and experimental studies of a double pipe helical heat exchanger, A thesis submitted to McGill University, Montreal, pp. 1-206.
  • 6. Mahmoud Abdelmagied, 2020, Experimental study of a triple spirally coiled tube heat exchanger thermo-fluid characteristics, Applied Thermal Engineering, vol. 180, pp. 115803.
  • 7. Mahmoud Abdelmagied, 2020, Thermal performance characteristics of a triple spiral tube heat exchanger, Chemical Engineering & Processing: Process Intensification, vol. 149. Pp. 107707.
  • 8. Arun Kumar Tiwari, Summaiya Javed, Hakan F. Oztop, Zafar Said and Naimish S. Pandya, 2021, Experimental and numerical investigation on the thermal performance of triple tube heat exchanger equipped with different inserts with WO3/water nanofluid under turbulent condition, International Journal of Thermal Sciences, vol. 164, pp. 106861.
  • 9. Mehdi Bahiraei, Nima Mazaheri and Maryam Hanooni, 2021, Performance enhancement of a triple-tube heat exchanger through heat transfer intensification using novel crimped-spiral ribs and nanofluid: A two-phase analysis, Chemical Engineering & Processing: Process Intensification, vol. 160. Pp. 108289.
  • 10. Ashraf Mimi Elsaid, Emad M.S. El-Said, Gamal B. Abdelaziz, Swellam W. Sharshir, Hamed R. El-Tahan and M.F. Abd Raboo, 2021, Performance and exergy analysis of different perforated rib designs of triple tubes heat exchanger employing hybrid nanofluids, International Journal of Thermal Sciences, vol. 168, pp. 107006.
There are 10 citations in total.

Details

Primary Language English
Subjects Mechanical Engineering
Journal Section Research Articles
Authors

Suresh Mariappan 0000-0001-8672-076X

Publication Date March 31, 2023
Acceptance Date November 8, 2022
Published in Issue Year 2023 Volume: 7 Issue: 1

Cite

Vancouver Mariappan S. Numerical investigations on a triple fluid heat exchanger with helical and sinusoidal coils. JES. 2023;7(1):46-5.

Journal of Energy Systems is the official journal of 

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Electrical and Computer Engineering Research Group (ECERG)  8753


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