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PMID: 36733611 Published · epublish English Journal Article

Numerical study of perforated obstacles effects on the performance of solar parabolic trough collector.

Frontiers in chemistry ·Vol. 10 ·2022-00-00 ·页码 1089080

Fahim T, Laouedj S, Abderrahmane A, Driss Z, Tag-ElDin ESM, Guedri K, Younis O

Abstract

The current work presents and discusses a numerical analysis of improving heat transmission in the receiver of a parabolic trough solar collector by introducing perforated barriers. While the proposed approach to enhance the collector's performance is promising, the use of obstacles results in increased pressure loss. The Computational Fluid Dynamics (CFD) model analysis is conducted based on the renormalization-group (RNG) k-ɛ turbulent model associated with standard wall function using thermal oil D12 as working fluid The thermo-hydraulic analysis of the receiver tube with perforated obstacles is taken for various configurations and Reynolds number ranging from 18,860 to 81,728. The results are compared with that of the receiver without perforated obstacles. The receiver tube with three holes (PO3) showed better heat transfer characteristics. In addition, the Nusselt number (Nu) increases about 115% with the increase of friction factor 5-6.5 times and the performance evaluation criteria (PEC) changes from 1.22 to 1.24. The temperature of thermal oil fluid attains its maximum value at the exit, and higher temperatures (462.1 K) are found in the absorber tube with perforated obstacles with three holes (PO3). Accordingly, using perforated obstacles receiver for parabolic trough concentrator is highly recommended where significant enhancement of system's performance is achieved.

Keywords
Nusselt number nanofluid numerical investigation parabolic trough solar collector perforated obstacles
作者与单位
共 7 位作者,点击展开单位 / ORCID
Fahim Tayeb
Materials and Reactive Systems Laboratory (LMSR), Djillali Liabes University, Sidi Bel Abbes, Algeria.
Laouedj Samir
Materials and Reactive Systems Laboratory (LMSR), Djillali Liabes University, Sidi Bel Abbes, Algeria.
Abderrahmane Aissa
Laboratoire de Physique Quantique de la Matière et Modélisation Mathématique (LPQ3M), Université Mustapha Stambouli de Mascara, Mascara, Algeria.
Driss Zied
Laboratory of Electromechanical Systems (LASEM), National School of Engineers of Sfax, University of Sfax, Sfax, Tunisia.
Tag-ElDin El Sayed Mohamed
Center of Research, Faculty of Engineering, Future University in Egypt, New Cairo, Egypt.
Guedri Kamel
Mechanical Engineering Department, College of Engineering and Islamic Architecture, Umm Al-Qura University, Makkah, Saudi Arabia.
Younis Obai
Department of Mechanical Engineering, College of Engineering in Wadi Addwasir, Prince Sattam Bin Abdulaziz University, Al-kharj, Saudi Arabia.
Article Info
Journal
Frontiers in chemistry
Abbr.
Front Chem
ISSN
2296-2646
Published
2022-00-00
电子出版
2023-00-17
页码
1089080
Language
English
Country/Region
Switzerland
NLM ID
101627988
勘误 / 撤稿关联
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