Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite

A combination of fins-nanoparticle is essential for a wide range of technologies using to enhance the performance of Thermal Energy Storage (TES) systems. Major problem is that most Phase-Change Materials (PCMs) have low thermal conductivity (k ≤ 0.2 W/m K), resulting in an incomplete melting and so...

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Main Authors: Ammar M. Abdulateef, Jasim Abdulateef, Kamaruzzaman Sopian, Sohif Mat, Adnan Ibrahim
Format: Article
Language:English
Published: Elsevier 2019-09-01
Series:Case Studies in Thermal Engineering
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X19302199
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spelling doaj-71bba6c1e1b5498c9450a0ead3222d152020-11-25T01:54:35ZengElsevierCase Studies in Thermal Engineering2214-157X2019-09-0114Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger uniteAmmar M. Abdulateef0Jasim Abdulateef1Kamaruzzaman Sopian2Sohif Mat3Adnan Ibrahim4Solar Energy Research Institute, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, Malaysia; Department of Mechanical Engineering, University of Diyala, 32001, Diyala, Iraq; Corresponding author. Solar Energy Research Institute, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, Malaysia.Department of Mechanical Engineering, University of Diyala, 32001, Diyala, IraqSolar Energy Research Institute, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, MalaysiaSolar Energy Research Institute, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, MalaysiaSolar Energy Research Institute, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, MalaysiaA combination of fins-nanoparticle is essential for a wide range of technologies using to enhance the performance of Thermal Energy Storage (TES) systems. Major problem is that most Phase-Change Materials (PCMs) have low thermal conductivity (k ≤ 0.2 W/m K), resulting in an incomplete melting and solidification processes. Triplex-Tube Heat Exchanger (TTHX) was numerically studied with Alumina nanoparticle (Al2O3) and Paraffin (RT82) that has melting and solidification temperatures of 82 °C and 65 °C, respectively. The findings indicate that the isothermal and liquid fraction contours of PCM obtained using external triangular fins entirely achieved at 193 min and 630 min, respectively. Furthermore, other important findings were that the external triangular fins-nanoparticle model has fins number (8), fins length (141 mm) and fins aspect ratio (18%) considered the most efficient to minimize the melting and solidification times to 163 min and 425 min, respectively. A close agreement has proved between numerical and experimental results. Keywords: Thermal energy storage, Triangular fins, Nanoparticle, Melting time, Solidification timehttp://www.sciencedirect.com/science/article/pii/S2214157X19302199
collection DOAJ
language English
format Article
sources DOAJ
author Ammar M. Abdulateef
Jasim Abdulateef
Kamaruzzaman Sopian
Sohif Mat
Adnan Ibrahim
spellingShingle Ammar M. Abdulateef
Jasim Abdulateef
Kamaruzzaman Sopian
Sohif Mat
Adnan Ibrahim
Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite
Case Studies in Thermal Engineering
author_facet Ammar M. Abdulateef
Jasim Abdulateef
Kamaruzzaman Sopian
Sohif Mat
Adnan Ibrahim
author_sort Ammar M. Abdulateef
title Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite
title_short Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite
title_full Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite
title_fullStr Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite
title_full_unstemmed Optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite
title_sort optimal fin parameters used for enhancing the melting and solidification of phase-change material in a heat exchanger unite
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2019-09-01
description A combination of fins-nanoparticle is essential for a wide range of technologies using to enhance the performance of Thermal Energy Storage (TES) systems. Major problem is that most Phase-Change Materials (PCMs) have low thermal conductivity (k ≤ 0.2 W/m K), resulting in an incomplete melting and solidification processes. Triplex-Tube Heat Exchanger (TTHX) was numerically studied with Alumina nanoparticle (Al2O3) and Paraffin (RT82) that has melting and solidification temperatures of 82 °C and 65 °C, respectively. The findings indicate that the isothermal and liquid fraction contours of PCM obtained using external triangular fins entirely achieved at 193 min and 630 min, respectively. Furthermore, other important findings were that the external triangular fins-nanoparticle model has fins number (8), fins length (141 mm) and fins aspect ratio (18%) considered the most efficient to minimize the melting and solidification times to 163 min and 425 min, respectively. A close agreement has proved between numerical and experimental results. Keywords: Thermal energy storage, Triangular fins, Nanoparticle, Melting time, Solidification time
url http://www.sciencedirect.com/science/article/pii/S2214157X19302199
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