Graphene Nanoplatelets Suspended in Different Basefluids Based Solar Collector: An Experimental and Analytical Study

被引:8
作者
Alawi, Omer A. [1 ]
Kamar, Haslinda Mohamed [1 ]
Mallah, Abdul Rahman [2 ]
Mohammed, Hussein A. [3 ]
Sabrudin, Mohd Aizad Sazrul [1 ,4 ]
Hussein, Omar A. [5 ]
Kazi, Salim Newaz [2 ]
Najafi, Gholamhassan [6 ]
机构
[1] Univ Teknol Malaysia, Sch Mech Engn, Dept Thermofluids, Utm Skudai 81310, Johor Bahru, Malaysia
[2] Univ Malaya, Dept Mech Engn, Kuala Lumpur 50603, Malaysia
[3] Edith Cowan Univ, Sch Engn, 270 Joondalup Dr, Joondalup, WA 6027, Australia
[4] PROTON Holdings Sdn Bhd, HICOM Ind Estate,Batu 3,POB 7100, Shah Alam 40918, Selangor, Malaysia
[5] Tikrit Univ, Coll Engn Alsharkat, Dept Mech Engn, Tikrit 34001, Iraq
[6] Tarbiat Modares Univ, Dept Biosyst Engn, Tehran 14115111, Iran
关键词
flat plate solar collector (FPSC); GNPs; characterization and stability; collector efficiency; HEAT-TRANSFER CHARACTERISTICS; FLAT-PLATE; DIRECT ABSORPTION; THERMAL PERFORMANCE; CARBON NANOTUBES; NANOFLUIDS; EFFICIENCY; GRAPHITE; ENERGY;
D O I
10.3390/pr9020302
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
A flat plate solar collector (FPSC) was analytically studied, with functionalized graphene nanoplatelets (f-GNPs) as its working fluid. Four samples (wt % nanofluids) were prepared in different base fluids such as ethylene glycol (EG), distilled water (DW):EG (70:30), and DW:EG (50:50). Experimental results (via DW) were used to verify the effectiveness of the analytical model. Some of the operating conditions were taken into account in this research, including temperatures, power, and mass flow rates. Experimental techniques were used to elucidate the modified nanofluids' physicochemical properties, such as its particle sizes, stability, and morphology, involving electron microscopes (EMs), UV-VIS, and X-ray techniques. Differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) were applied to test the thermal analysis. The findings confirmed that the use of f-GNPs nanofluids enhanced the performance of the FPSC relative to the use of base fluids for all testing conditions. The maximum enhancement of the collector's effectiveness at a mass flow rate of 1.5 kg min(-1) and a weight concentration of 0.1 wt %, increased to 12.69%, 12.60%, and 12.62% in the case of EG, DW:EG (70:30), and DW:EG (50:50), respectively. The results also confirmed an improvement in both the heat gain (F-R(tau alpha)) and heat loss (FRUL) coefficients for the f-GNPs nanofluid.
引用
收藏
页码:1 / 22
页数:22
相关论文
共 45 条
  • [21] A review on the applications of nanofluids in solar energy field
    Khanafer, Khalil
    Vafai, Kambiz
    [J]. RENEWABLE ENERGY, 2018, 123 : 398 - 406
  • [22] Applicability of graphite nanofluids in direct solar energy absorption
    Ladjevardi, S. M.
    Asnaghi, A.
    Izadkhast, P. S.
    Kashani, A. H.
    [J]. SOLAR ENERGY, 2013, 94 : 327 - 334
  • [23] Mekhilef S., 2013, P IOP C SER EARTH EN
  • [24] Comparison of Solar Collector Testing Methods-Theory and Practice
    Obstawski, Pawel
    Bakon, Tomasz
    Czekalski, Dariusz
    [J]. PROCESSES, 2020, 8 (11) : 1 - 29
  • [25] Hydrodynamic and heat transfer study of dispersed fluids with submicron metallic oxide particles
    Pak, BC
    Cho, YI
    [J]. EXPERIMENTAL HEAT TRANSFER, 1998, 11 (02) : 151 - 170
  • [26] Trends and Opportunities in Direct-Absorption Solar Thermal Collectors
    Phelan, Patrick
    Otanicar, Todd
    Taylor, Robert
    Tyagi, Himanshu
    [J]. JOURNAL OF THERMAL SCIENCE AND ENGINEERING APPLICATIONS, 2013, 5 (02)
  • [27] A review of studies using nanofluids in flat-plate and direct absorption solar collectors
    Raj, Pankaj
    Subudhi, Sudhakar
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2018, 84 : 54 - 74
  • [28] Thermophysical properties of Single Wall Carbon Nanotubes and its effect on exergy efficiency of a flat plate solar collector
    Said, Z.
    Saidur, R.
    Sabiha, M. A.
    Rahim, N. A.
    Anisur, M. R.
    [J]. SOLAR ENERGY, 2015, 115 : 757 - 769
  • [29] Analyses of exergy efficiency and pumping power for a conventional flat plate solar collector using SWCNTs based nanofluid
    Said, Z.
    Saidur, R.
    Rahim, N. A.
    Alim, M. A.
    [J]. ENERGY AND BUILDINGS, 2014, 78 : 1 - 9
  • [30] Thermal Efficiency, Heat Transfer, and Friction Factor Analyses of MWCNT
    Saleh, Bahaa
    Sundar, Lingala Syam
    [J]. PROCESSES, 2021, 9 (01)