Research Article

Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage

Volume: 10 Number: 4 July 29, 2024
  • Ibrahim E. Sadiq
  • Sattar Aljabair *
  • Abdulhassan A. Karamallah
EN

Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage

Abstract

The thermal performance and heat transfer augmentation of paraffin wax as a phase change material (PCM) throughout discharging process within a triplex tube heat storage have been examined using a combined experimental and numerical analysis. The efforts of this research are focused on using a blend of two different types of highly conductive nanoparticles (Al2O3/CuO hybrid nano additives) to enhance the thermal characteristics of paraffin and improve the overall performance of TTHS, which is the originality of this study. Various volume concentrations (0.4, 0.8, 1.6, 3.2%) of hybrid nanoparticles were explored. Besides that, A set of tests were carried out to evaluate the impact of changing inlet temperature and mass flow rate of the heat transfer fluid (HTF) on the phase change phenomenon of the paraffin. The mass flow rates of HTF ranges from 3 kg/min to 12 kg/min while the temperatures of HTF varies from 30 °C to 40 °C. The calculations are included an iterative, finite-volume numerical technique that involves a domain enthalpy porosity model to simulate the phase transition process. The agreement between the experimental data and the numerical simulation is good. According to the results, reducing inlet temperature and/or increase the inlet mass flow rate of HTF speed up solidification rate. However, HTF inlet temperature has more impact on solidification rate than inlet mass flow rate. Moreover, the reduction in freezing duration caused by implementing hybrid nanoparticles has been observed for all volume concentrations investigated. However, adding 3.2% volume percentage of hybrid nanoparticles results in the highest overall freezing time reduction (about 23%).

Keywords

References

  1. [1] Dincer I, Rosen MA. Thermal Energy Storage: Systems and Applications. John Wiley & Sons; 2021. [CrossRef]
  2. [2] Afsharpanah F, Pakzad K, Ajarostaghi SSM, Arıcı M. Assessment of the charging performance in a cold thermal energy storage container with two rows of serpentine tubes and extended surfaces. J Energy Storage 2022;51:104464. [CrossRef]
  3. [3] Khudhair A, Hatem F, Mohammed Ridha D. Enhancement of thermal storage properties of phase change material by using metallic swarf. Eng Technol J 2018;36:586595. [CrossRef]
  4. [4] Abed AH. Thermal storage efficiency enhancement for solar air heater using a combined SHSm and PCM cylindrical capsules system: Experimental investigation. Eng Technol J 2016;34:9991011. [CrossRef]
  5. [5] Tawalbeh M, Khan HA, Al-Othman A, Almomani F, Ajith S. A comprehensive review on the recent advances in materials for thermal energy storage applications. Int J Thermofluids 2023;18:100326. [CrossRef]
  6. [6] Aljabair S, Alesbe I, Ibrahim SH. Review on latent thermal energy storage using phase change material. J Therm Eng. 2021;9:247256. [CrossRef]
  7. [7] Sadr AN, Shekaramiz M, Zarinfar M, Esmaily A, Khoshtarash H, Toghraie D. Simulation of mixed-convection of water and nano-encapsulated phase change material inside a square cavity with a rotating hot cylinder. J Energy Storage 2022;47:103606. [CrossRef]
  8. [8] Modi N, Wang X, Negnevitsky M. Solar hot water systems using latent heat thermal energy storage: perspectives and challenges. Energies 2023;16:1969. [CrossRef]

Details

Primary Language

English

Subjects

Thermodynamics and Statistical Physics

Journal Section

Research Article

Authors

Sattar Aljabair * This is me
0000-0002-0528-8651
Iraq

Abdulhassan A. Karamallah This is me
0000-0002-9035-6611
Iraq

Publication Date

July 29, 2024

Submission Date

May 27, 2023

Acceptance Date

August 30, 2023

Published in Issue

Year 2024 Volume: 10 Number: 4

APA
Sadiq, I. E., Aljabair, S., & Karamallah, A. A. (2024). Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage. Journal of Thermal Engineering, 10(4), 880-903. https://izlik.org/JA46TE76SE
AMA
1.Sadiq IE, Aljabair S, Karamallah AA. Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage. Journal of Thermal Engineering. 2024;10(4):880-903. https://izlik.org/JA46TE76SE
Chicago
Sadiq, Ibrahim E., Sattar Aljabair, and Abdulhassan A. Karamallah. 2024. “Accelerated Solidification of PCM via Al2O3 CuO Hybrid Nanoparticles in Triplex Tube Heat Storage”. Journal of Thermal Engineering 10 (4): 880-903. https://izlik.org/JA46TE76SE.
EndNote
Sadiq IE, Aljabair S, Karamallah AA (July 1, 2024) Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage. Journal of Thermal Engineering 10 4 880–903.
IEEE
[1]I. E. Sadiq, S. Aljabair, and A. A. Karamallah, “Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage”, Journal of Thermal Engineering, vol. 10, no. 4, pp. 880–903, July 2024, [Online]. Available: https://izlik.org/JA46TE76SE
ISNAD
Sadiq, Ibrahim E. - Aljabair, Sattar - Karamallah, Abdulhassan A. “Accelerated Solidification of PCM via Al2O3 CuO Hybrid Nanoparticles in Triplex Tube Heat Storage”. Journal of Thermal Engineering 10/4 (July 1, 2024): 880-903. https://izlik.org/JA46TE76SE.
JAMA
1.Sadiq IE, Aljabair S, Karamallah AA. Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage. Journal of Thermal Engineering. 2024;10:880–903.
MLA
Sadiq, Ibrahim E., et al. “Accelerated Solidification of PCM via Al2O3 CuO Hybrid Nanoparticles in Triplex Tube Heat Storage”. Journal of Thermal Engineering, vol. 10, no. 4, July 2024, pp. 880-03, https://izlik.org/JA46TE76SE.
Vancouver
1.Ibrahim E. Sadiq, Sattar Aljabair, Abdulhassan A. Karamallah. Accelerated solidification of PCM via Al2O3/CuO hybrid nanoparticles in triplex tube heat storage. Journal of Thermal Engineering [Internet]. 2024 Jul. 1;10(4):880-903. Available from: https://izlik.org/JA46TE76SE

IMPORTANT NOTE: JOURNAL SUBMISSION LINK http://eds.yildiz.edu.tr/journal-of-thermal-engineering