Thermal performance optimization of rectangular cavity receiver for cross linear concentrating solar power system

被引:3
|
作者
Patel, Akash [1 ]
Malviya, Rajkumar [1 ]
Soni, Archana [1 ]
Baredar, Prashant [1 ]
机构
[1] Maulana Azad Natl Inst Technol, Energy Ctr, Bhopal 462003, MP, India
关键词
Cross linear; concentrated solar power; energy efficiency; rectangular cavity receiver; heliostats; exergy efficiency; FRESNEL REFLECTOR; PARABOLIC DISH; PROCESS HEAT; DESIGN;
D O I
10.1080/15567036.2023.2218286
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
A thermodynamic analysis was performed on a newly developed concentrated solar power (CSP) technology known as the Cross-Linear (CL), which addresses the issue of cosine loss in conventional CSP technology. The analytical model has been developed and validated using experimental data collected at the experimental site situated in Bhopal, India. The analysis was performed under direct normal irradiance of 775 W/m(2) with the key objective to determine the optimum inlet condition of the heat transfer fluid (HTF) considering three optimization parameters: HTF outlet temperature, energy, and exergy efficiency of the receiver. Also, the exergy of the solar field is investigated depending on the available solar irradiation throughout the day for three different configurations of the heliostat field. After a comprehensive analysis of the results, the optimal air inlet temperature range was observed to be between 373 and 423 K, and the optimal air mass flow rate was overserved to be 0.0925 kg/s (333 kg/h), which provides energy and exergy efficiency values within 50% to 60% and 28% to 34%, respectively. The maximum electrical exergy efficiency for 30 kW plant capacity is observed to be around 70% at solar noon with a cosine factor of around 0.9 for 4-hour duration.
引用
收藏
页码:6932 / 6948
页数:17
相关论文
共 50 条
  • [21] Thermal performance analysis of a Solar parabolic dish concentrator system with modified cavity receiver
    Kumar, Varinder
    Bopche, Santosh
    WORLD JOURNAL OF ENGINEERING, 2021, 18 (02) : 169 - 193
  • [22] Parameter Optimization of a Hybrid Solar Concentrating Photovoltaic/Concentrating Solar Power (CPV/CSP) System
    Han, Xue
    Xu, Chao
    Ju, Xing
    Du, Xiaoze
    Wei, Gaosheng
    INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS (SOLARPACES 2016), 2017, 1850
  • [23] Effects of Absorber Emissivity on Thermal Performance of a Solar Cavity Receiver
    Fang, Jiabin
    Tu, Nan
    Wei, Jinjia
    ADVANCES IN CONDENSED MATTER PHYSICS, 2014, 2014
  • [24] Experimental investigations on thermal performance characteristics of a solar cavity receiver
    Santosh B. Bopche
    Shobhit Kumar
    International Journal of Energy and Environmental Engineering, 2019, 10 : 463 - 481
  • [25] Experimental investigations on thermal performance characteristics of a solar cavity receiver
    Bopche, Santosh B.
    Kumar, Shobhit
    INTERNATIONAL JOURNAL OF ENERGY AND ENVIRONMENTAL ENGINEERING, 2019, 10 (04) : 463 - 481
  • [26] Analysis of the performance for a concentrating photovoltaic/thermal solar system
    Cheng, Xuetao
    Xu, Xianghua
    Liang, Xingang
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2009, 30 (05): : 624 - 627
  • [27] Simulation and analysis of the central cavity receiver's performance of solar thermal power tower plant
    Yu, Qiang
    Wang, Zhifeng
    Xu, Ershu
    SOLAR ENERGY, 2012, 86 (01) : 164 - 174
  • [28] Study on trough receiver for linear concentrating solar collector
    Zhai, Hui
    Dai, Yanjun
    Wu, Jingyi
    Wang, Ruzhu
    PROCEEDINGS OF ISES SOLAR WORLD CONGRESS 2007: SOLAR ENERGY AND HUMAN SETTLEMENT, VOLS I-V, 2007, : 711 - 715
  • [29] PERFORMANCE ANALYSIS AND OPTIMIZATION DESIGN OF SUPERCRITICAL CO2 POWER CYCLES FOR CONCENTRATING SOLAR THERMAL POWER
    Fan, Gang
    Song, Jian
    Gong, Xiaoyu
    Fu, Zijun
    Zhang, Jiageng
    Dai, Yiping
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2024, 45 (07): : 590 - 598
  • [30] Analysis of temperature distribution over pipe surfaces of air-based cavity linear receiver for cross-linear concentration solar power system
    Akash Patel
    Archana Soni
    Prashant Baredar
    Rajkumar Malviya
    Environmental Science and Pollution Research, 2023, 30 : 28621 - 28639