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Receiving heat from a PCM tank by using natural convection of water and NEPCM: A simulation for LHTES application

  • Yan Cao
  • , Hamdi Ayed
  • , A. M. Algelany
  • , Mahidzal Dahari
  • , Phuoc Quy Phong Nguyen
  • , Khaled A. Gepreel
  • , Van Nhanh Nguyen
  • , Mohamed Ehab
  • , Makatar Wae-Hayee
  • Xi'an Technological University
  • King Khalid University
  • Prince Sattam Bin Abdulaziz University
  • Al-Fayoum University
  • University of Malaya
  • Ho Chi Minh City University of Transport
  • Taif University
  • Ho Chi Minh City University of Technology - HUTECH
  • Faculty of Engineering and Technology
  • Prince of Songkla University

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

Latent heat thermal energy storage (LHTES) systems are widely used due to their ability to store a lot of heat energy as latent, and few studies have directly or indirectly investigated on the heat exchange methods with LHTES systems. In the present study, the free convection of a mixture of water and Nano-encapsulated phase change material (NEPCM) with a porous medium was used to exchange heat energy between a cold-water stream and a hot tank filled phase change material (PCM). NEPCM are nanostructures consisted of a solid shell and a PCM core, and the addition of these nanostructures to water has remarkable effects on the heat transfer parameters. In this research, a number of cases were simulated using computational fluid dynamic (CFD) to observe the impacts of injecting NEPCM to water, the porosity of the porous media and the location of the phase change zone on the average heat flux of the PCM tank. The results showed that increment of porosity number from 0.85 to 0.95 decreased the average heat flux of the PCM tank by 13.8%. Moreover, adding 3% NEPCM to water enhanced the average heat flux of the PCM tank by 22.2% and 18.4% when porosity numbers were 0.85 and 0.95, respectively.

Original languageEnglish
Article number102123
JournalCase Studies in Thermal Engineering
Volume35
DOIs
StatePublished - Jul 2022
Externally publishedYes

Keywords

  • Latent heat thermal energy storage
  • Nano-encapsulated phase change material
  • Natural convection
  • Phase change material
  • Porous medium

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