A novel tri-pass receiver design for parabolic trough collectors: Experimental investigation and thermal analysis

被引:0
|
作者
Otmani, Abdessalam [1 ]
Benmehidi, Nadia [2 ]
Seradg Eddine Guedri, Mohamed [1 ]
Khatir, Kalb Eddine [1 ]
Said Kahaleras, Mohamed [1 ]
机构
[1] Natl Higher Sch Technol & Engn, Dept Proc & Energy Engn, Annaba 23005, Algeria
[2] Univ Badji Mokhtar, Fac Technol, Dept Civil Engn, POB12, Annaba 23000, Algeria
关键词
PERFORMANCE; EFFICIENCY;
D O I
10.1063/5.0239466
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
One of the main challenges of solar parabolic trough collectors (PTCs) is their requirement for large land areas. To address this, a novel tri-pass receiver design has been experimentally developed, which is less sensitive to misalignments, easy to fabricate, maintain, and repair. First of all, the testbed thermal and optical efficiencies were evaluated. The PTC testbed comprises a polished stainless-steel reflector with a 44% optical efficiency integrated into a supervisory control and data acquisition system. No-load tests were initially performed, followed by an in-load test. These tests took place in North Africa, precisely in the northeast of Algeria. Initial experiments revealed a low PTC thermal efficiency of 20%. To address this issue, five different receiver configurations were manufactured, tested, and compared. the reference configuration is an uncoated copper tube. Therefore, a single black-coated copper tube receiver achieved a 27% increase in thermal efficiency. A bypass black-coated receiver showed a significant improvement, achieving 71% thermal efficiency. However, a three black-coated receiver with two centralized tubes experienced a 12% decrease in thermal efficiency. Yet, the three black-coated receiver with one central tube achieved the highest thermal efficiency of 85% due to the triangular pitch arrangement, which effectively focuses solar rays on the central tube while capturing deviated rays with the backside tubes. The no-load test determined the optimal fluid path for this configuration, ensuring smooth progression from preheating to heating as the fluid moved through increasingly hotter tubes. The in-load test confirmed the receiver's effectiveness.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Experimental investigation on a parabolic trough solar collector for thermal power generation
    LIU QiBin1
    2 Graduate University of Chinese Academy of Sciences
    3 China Huadian Engineering Co.
    Science China(Technological Sciences) , 2010, (01) : 52 - 56
  • [42] Experimental investigation on a parabolic trough solar collector for thermal power generation
    LIU QiBinWANG YaLongGAO ZhiChaoSUI JunJIN HongGuang LI HePing Institute of Engineering ThermophysicsChinese Academy of SciencesBeijing China Graduate University of Chinese Academy of SciencesBeijing China China Huadian Engineering CoLtdBeijing China
    Science China(Technological Sciences), 2010, 53 (01) : 52 - 56
  • [43] Experimental investigation on a parabolic trough solar collector for thermal power generation
    QiBin Liu
    YaLong Wang
    ZhiChao Gao
    Jun Sui
    HongGuang Jin
    HePing Li
    Science in China Series E: Technological Sciences, 2010, 53 : 52 - 56
  • [44] Analysis of optical and thermal factors' effects on the transient performance of parabolic trough solar collectors
    Xu, Li
    Sun, Feihu
    Ma, Linrui
    Li, Xiaolei
    Lei, Dongqiang
    Yuan, Guofeng
    Zhu, Huibin
    Zhang, Qiangqiang
    Xu, Ershu
    Wang, Zhifeng
    SOLAR ENERGY, 2019, 179 : 195 - 209
  • [45] Numerical analysis of the heat transfer behaviour of a wickless heat pipe receiver for parabolic trough solar collectors
    P Anto L.
    Varghese J.
    International Journal of Ambient Energy, 2024, 45 (01)
  • [46] Thermal Performance Analysis of an Absorption Cooling System Based on Parabolic Trough Solar Collectors
    Wang, Jiangjiang
    Yan, Rujing
    Wang, Zhuang
    Zhang, Xutao
    Shi, Guohua
    ENERGIES, 2018, 11 (10)
  • [47] A systematic parametric thermal analysis of nanofluid-based parabolic trough solar collectors
    Bellos, Evangelos
    Tzivanidis, Christos
    Said, Zafar
    SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 2020, 39 (39)
  • [48] Thermal Improvement in Parabolic Trough Solar Collector Using Receiver Tube Design and Nanofluid
    Al-Rabeeah, Asaad Yasseen
    Seres, Istvan
    Farkas, Istvan
    PROCEEDINGS OF I4SDG WORKSHOP 2021: IFTOMM FOR SUSTAINABLE DEVELOPMENT GOALS, 2022, 108 : 30 - 40
  • [49] Experimental analysis of overall thermal properties of parabolic trough receivers
    Luepfert, Eckhard
    Riffelmann, Klaus-J.
    Price, Henry
    Burkholder, Frank
    Moss, Tim
    JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2008, 130 (02): : 0210071 - 0210075
  • [50] CFD analysis of a receiving cavity suitable for a novel CSP parabolic trough receiver
    Zavattoni, S. A.
    Gaetano, A.
    Barbato, M. C.
    Ambrosetti, G.
    Good, P.
    Malnati, F.
    Pedrettib, A.
    PROCEEDINGS OF THE SOLARPACES 2013 INTERNATIONAL CONFERENCE, 2014, 49 : 579 - 588