Concentration Performance Analysis of Solar Simulator Based on Compound Parabolic Concentrator

2020 ◽  
Vol 49 (12) ◽  
pp. 1-10
Author(s):  
王昊 Hao WANG ◽  
付跃刚 Yue-gang FU ◽  
张国玉 Guo-yu ZHANG ◽  
孙高飞 Gao-fei SUN ◽  
刘石 Shi LIU ◽  
...  
2020 ◽  
Vol 49 (12) ◽  
pp. 1-10
Author(s):  
王昊 Hao WANG ◽  
付跃刚 Yue-gang FU ◽  
张国玉 Guo-yu ZHANG ◽  
孙高飞 Gao-fei SUN ◽  
刘石 Shi LIU ◽  
...  

2015 ◽  
Vol 154 ◽  
pp. 221-231 ◽  
Author(s):  
Siti Hawa Abu-Bakar ◽  
Firdaus Muhammad-Sukki ◽  
Daria Freier ◽  
Roberto Ramirez-Iniguez ◽  
Tapas Kumar Mallick ◽  
...  

Author(s):  
Dharamveer ◽  
Samsher ◽  
Anil Kumar

Abstract This paper presents performance analyses based on temperatures, thermal energy (overall), thermal exergy (overall), electrical exergy, and yield of the systems that have been investigated. In the present study, an analytical expression of N-identical partly covered photovoltaic compound parabolic concentrator collector connected in series (N-PVT-CPC-SS-HE) an active single slope solar distiller unit helically coiled heat exchanger has been found. The performance analyses of the proposed system have been executed for 0.25% concentration of CuO nanoparticles for collectors (N = 4), fluid flowing rate 0.02 kg/s in 280 kg mass of basin fluid. The system's performance is compared with N-identical partly covered photovoltaic flat plate collector connected in series (N-PVT-FPC-DS-HE) an active double slope solar distiller unit with helically coiled heat exchanger previous system ref (Sahota and Tiwari 2017). The thermal energy 112,109.1 kwh, thermal exergy 312.07 kwh, and yield 3,615.05 kg annually. It is found that enhancement daily in thermal energy of the proposed system with CuO nanoparticles than the previous system with various nanofluids CuO, Al2O3, TiO2, and water are found 16.75%, 51.13%, 61.82%, and 80.67% more significant correspondingly. The enhancement in yield of the proposed system is obtained for CuO nanoparticles greater than the previous system with CuO 11.19%, Al2O3 17.2%, TiO2 26.25%, and water 32.17% greater. The electrical exergy is almost the same as the previous system.


2021 ◽  
Vol 2083 (2) ◽  
pp. 022023
Author(s):  
Danyi Wang ◽  
Shanping Jiang ◽  
Pengsong Zhang ◽  
Yanhong Xiang ◽  
Hongsong Li ◽  
...  

Abstract With the development of space science and technology, the requirements of spacecraft environment simulation tests are gradually increasing, and radiation environment simulation has also attracted much attention. Based on space radiation environment simulation equipment of vertical metal reflector material in the solar simulator performance analysis, the systematic analysis of the influence factors of metal reflector, aimed at straight metal mirror blank material performance analysis, including the mechanics analysis and optical analysis, the performance to the blank material for testing. The test results show that the aluminum alloy 6061T6 billet used in the metal mirror can meet the requirements of high irradiation vertical solar simulator, and lay a solid foundation for the subsequent solar irradiation simulation, space illumination simulation and spacecraft thermal environment simulation.


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