Influence of collector type and the glass cover cooling on the performance of the solar distiller integrated with the solar collectors

被引:1
作者
Algburi, Sameer [1 ]
Baker, Gulan A. [2 ]
Ahmed, Omer K. [2 ]
Ahmed, Ahmed H. [2 ]
Abdullah, Abdullah A. [3 ]
机构
[1] Al Kitab Univ, Kirkuk, Iraq
[2] Northern Tech Univ, Mosul, Iraq
[3] Tikrit Univ, Tikrit, Iraq
关键词
Glass cover cooling; Solar distiller; Solar collector; Investigation; STILL;
D O I
10.1016/j.egyr.2024.05.076
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
Improving the efficiency of solar distillers is essential to increasing freshwater production. One method to enhance the output of the solar distiller is to connect it with another solar collector. Previous studies did not indicate a comparison of the performance of integrated solar stills with different types of solar collectors. The current article aims to study the performance of solar distillers connected to two different types of solar collectors, study the influencing operational variables, and compare these cases. A practical model was built that included four operational cases. The first case (M1) was a solar heater with a solar concentrator collector and a solar distiller connected in series. The second case (M2): A solar concentrator collector and solar distiller connected in series. The third case (M3): A solar heater and solar distiller connected in series. The fourth case (M4): It is the same as the M1 system, but the solar distiller contains a tube to cool the glass and compare the productivity with the classical solar distiller. The results showed that the M1 case is higher than the M3 and M2 cases. In contrast, the M4 case had the highest productivity in all the cases and systems that were discussed, which is estimated at 7583 ml/ day; this means that the M4 system is the best system studied, and this is due to the glass cooling mechanism. The highest productivity recorded for the M4 system was on 28 June, and the lowest productivity recorded was on 15 July. The highest hourly productivity was reached when the glass surface temperature (4 & ring;C) was 1400 ml/h at 14:00.
引用
收藏
页码:6015 / 6022
页数:8
相关论文
共 32 条
  • [1] Abbas EF., 2018, Al-Kitab J Pure Sci, V2, P264, DOI [10.32441/KJPS.02.02.P18, DOI 10.32441/KJPS.02.02.P18]
  • [2] Theoretical modeling of a glass-cooled solar still incorporating PCM and coupled to flat plate solar collector
    Abu-Arabi, Mousa
    Al-harahsheh, Mohammad
    Ahmad, Maysam
    Mousa, Hasan
    [J]. JOURNAL OF ENERGY STORAGE, 2020, 29
  • [3] Water film cooling over the glass cover of a solar still including evaporation effects
    AbuHijleh, BAK
    Mousa, HA
    [J]. ENERGY, 1997, 22 (01) : 43 - 48
  • [4] Ahmed K., 2023, NTU J Renew Energy, V4, P97, DOI [DOI 10.56286/NTUJRE.V4I1.456, 10.56286/ntujre.v4i1.456]
  • [5] Experimental assessment of the effect of black dye and water depth on the performance of PV/solar distiller
    Ahmed, Omer K.
    Algburi, Sameer
    Jasim, Maryam A.
    Taha, Taha A.
    Saleh, Ali M.
    Yassin, Khalil F.
    [J]. DESALINATION AND WATER TREATMENT, 2024, 318
  • [6] Hybrid solar chimneys: A comprehensive review
    Ahmed, Omer K.
    Algburi, Sameer
    Ali, Zaid H.
    Ahmed, Amer K.
    Shubat, Hawazen N.
    [J]. ENERGY REPORTS, 2022, 8 : 438 - 460
  • [7] THE COMBINED EFFECT OF NANOFLUID AND REFLECTIVE MIRRORS ON THE PERFORMANCE OF PHOTOVOLTAIC/THERMAL SOLAR COLLECTOR
    Ahmed, Omer Khalil
    Bawa, Shaimaa Mohammed
    [J]. THERMAL SCIENCE, 2019, 23 (02): : 573 - 587
  • [8] Ambarita H., 2020, Journal of Physics: Conference Series, V1542, DOI 10.1088/1742-6596/1542/1/012058
  • [9] An Exhaustive Review on a Solar Still Coupled with a Flat Plate Collector
    Ayoobi, Ahmadreza
    Ramezanizadeh, Mahdi
    [J]. INTERNATIONAL JOURNAL OF PHOTOENERGY, 2021, 2021
  • [10] Baker G.A., 2023, NTU J. Renew. Energy, V4, P47