Research Article

Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters

Volume: 4 Number: 2 August 15, 2020
EN

Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters

Abstract

Microchannel heat exchangers have been gradually getting importance in industrial applications due to offering outstanding benefits. The current study has focused on the development of a numerical model to predict the thermal performance of the microchannel air preheaters (MCPH) for HVAC systems. An experimental study has been performed to validate the numerical model results. A louvered fin multiport microchannel heat exchanger has been employed as an air preheater in the experiments. The proposed model has been developed based on the segment-by-segment approach and calculated the outlet temperature and heat capacity of the MCPH. Different air velocities at the frontal face and varying mass flow rates in passes of the MCPH have been taken into consideration in the model. It has been concluded from experimental data that the model predicts the outlet temperature with an average absolute deviation within ±2% for all investigated test conditions. The proposed model shows high accuracy with respect to temperature calculation. Another conclusion is that the non-uniform air velocity approach improves the precision of the proposed model. The heat capacity predictions with the uniform air velocity approach indicate higher deviations than the non-uniform air velocity approach.

Keywords

References

  1. 1. Sen, O., Yılmaz, C., Thermodynamic performance analysis of geothermal and solar energy assisted power generation and residential cooling system. International Advanced Researches and Engineering Journal, 2020. 04(01): p.41–7.
  2. 2. Kandlikar, S.G., A roadmap for implementing minichannels in refrigeration and air-conditioning systems - Current status and future directions. Heat Transfer Enginering, 2007. 28(12): p.973–85.
  3. 3. Roth, K., Westphalen, D., Dieckmann, J., Hamilton, S., Goetzler, W., Energy consumption characteristics of commercial building HVAC systems, Volume III: Energy savings potential, 2002. 3.
  4. 4. Kandlikar, S.G., Garimella, S., Li, D., Stephane, C., King, M.R., Heat transfer and fluid flow in minichannels and microchannels. 2005, Oxford: UK: Elsevier.
  5. 5. Gong, L., Lu, H., Li, H., Xu, M., Parametric numerical study of the flow and heat transfer in a dimpled wavy microchannel. Heat Transf Research, 2016. 47(2): p.105–18.
  6. 6. Kaya, H., Ekiciler, R., Arslan, K., Entropy generation analysis of forced convection flow in a semicircular microchannel with TiO2/water nanofluid. Heat Transf Research, 2019. 50(4): p.335–48.
  7. 7. Mohammadpourfard, M., Zonouzi, S.A., Mohseni, F., Numerical study of the hydrothermal behavior and exergy destruction of magnetic nanofluid in curved rectangular microchannels. Heat Transf Research, 2015. 46(9): p.795–818.
  8. 8. Tiwari, N., Moharana, M.K., Numerical study of thermal enhancement in modified raccoon microchannels. Heat Transf Research, 2019. 50(6): p.519–43.

Details

Primary Language

English

Subjects

Mechanical Engineering

Journal Section

Research Article

Publication Date

August 15, 2020

Submission Date

March 12, 2020

Acceptance Date

May 7, 2020

Published in Issue

Year 2020 Volume: 4 Number: 2

APA
Başaran, A., & Yurddaş, A. (2020). Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters. International Advanced Researches and Engineering Journal, 4(2), 64-75. https://doi.org/10.35860/iarej.703104
AMA
1.Başaran A, Yurddaş A. Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters. Int. Adv. Res. Eng. J. 2020;4(2):64-75. doi:10.35860/iarej.703104
Chicago
Başaran, Anıl, and Ali Yurddaş. 2020. “Numerical and Experimental Study on Thermal Characteristics of Louvered Fin Microchannel Air Preheaters”. International Advanced Researches and Engineering Journal 4 (2): 64-75. https://doi.org/10.35860/iarej.703104.
EndNote
Başaran A, Yurddaş A (August 1, 2020) Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters. International Advanced Researches and Engineering Journal 4 2 64–75.
IEEE
[1]A. Başaran and A. Yurddaş, “Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters”, Int. Adv. Res. Eng. J., vol. 4, no. 2, pp. 64–75, Aug. 2020, doi: 10.35860/iarej.703104.
ISNAD
Başaran, Anıl - Yurddaş, Ali. “Numerical and Experimental Study on Thermal Characteristics of Louvered Fin Microchannel Air Preheaters”. International Advanced Researches and Engineering Journal 4/2 (August 1, 2020): 64-75. https://doi.org/10.35860/iarej.703104.
JAMA
1.Başaran A, Yurddaş A. Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters. Int. Adv. Res. Eng. J. 2020;4:64–75.
MLA
Başaran, Anıl, and Ali Yurddaş. “Numerical and Experimental Study on Thermal Characteristics of Louvered Fin Microchannel Air Preheaters”. International Advanced Researches and Engineering Journal, vol. 4, no. 2, Aug. 2020, pp. 64-75, doi:10.35860/iarej.703104.
Vancouver
1.Anıl Başaran, Ali Yurddaş. Numerical and experimental study on thermal characteristics of louvered fin microchannel air preheaters. Int. Adv. Res. Eng. J. 2020 Aug. 1;4(2):64-75. doi:10.35860/iarej.703104



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