Year-round performance evaluation of photovoltaic-thermal collector with nano-modified phase-change material for building application in an arid desert climate zone

被引:5
|
作者
Mahdi, Jasim M. [1 ]
Al-Najjar, Hussein M. Taqi [1 ]
Togun, Hussein [2 ]
Biswas, Nirmalendu [3 ]
Boujelbene, Mohamed [4 ]
Alshammari, Serhan [4 ]
Talebizadehsardari, Pouyan [5 ]
机构
[1] Univ Baghdad, Dept Energy Engn, Baghdad 10071, Iraq
[2] Univ Baghdad, Dept Mech Engn, Baghdad 10071, Iraq
[3] Jadavpur Univ, Dept Power Engn, Kolkata 700106, India
[4] Univ Hail, Coll Engn, Dept Ind Engn, Hail 55425, Saudi Arabia
[5] Univ Nottingham, Power Elect Machines & Control PEMC Grp, Nottingham, England
关键词
Solar collector; Phase change material; Nanoparticles; Energy analysis; SOLAR COLLECTOR; HEAT-TRANSFER; SYSTEM; PVT; NEPCM; PCM;
D O I
10.1016/j.enbuild.2024.114597
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This study provides a comprehensive analysis of the energetic and thermoelectric characteristics of a solar photovoltaic-thermal (PVT) collector equipped with a nano-modified phase-changing material (NPCM) for PV cooling. The operational effectiveness of the collector is evaluated using various parameters such as PV temperature, electrical and thermal powers, melting time, PCM liquid fraction, and PV cooling duration. These factors are meticulously examined under different operating conditions of solar irradiance, ambient air temperature, and the thickness of the NPCM layer. Hail, Saudi Arabia, a city known for its arid desert climate, is chosen as the geographic setting for the study. A numerical methodology based on finite volume discretization is used to solve the governing mathematical models. The year-round performance of the combined PVT and NPCM unit is systematically assessed in terms of monthly averages across the four seasons, considering varying NPCM layer thickness over different time frames. The results indicate that an NPCM with a nanoparticle volumetric concentration of 5% and an appropriately chosen NPCM layer thickness provides effective PV cooling, with cooling durations ranging from 54 to 305 min throughout the year. In terms of electrical performance, months with high solar irradiance yielded a greater power output, peaking at approximately 52.5 Watts, while the winter months exhibited the lowest output. The thermal performance followed a similar pattern, demonstrating the significant influence of solar irradiance on thermal efficiency, with peak outputs reaching up to 225 Watts during high solar intensity months.
引用
收藏
页数:13
相关论文
共 16 条
  • [1] Year-round performance analysis of a photovoltaic panel coupled with phase change material
    Zhao, Jiaxin
    Ma, Tao
    Li, Zhenpeng
    Song, Aotian
    APPLIED ENERGY, 2019, 245 : 51 - 64
  • [2] Evaluation of Phase-change Material Performance in Hot and Dry Climate for Building Efficiency
    Ahmad, Inzamam
    Kumar, Ravinder
    Ghosh, Uddipta
    Bhargav, Atul
    8TH THERMAL AND FLUIDS ENGINEERING CONFERENCE, 2023, : 1713 - 1721
  • [3] Techno-economic and environmental evaluation of photovoltaic-thermal collector design with pork fat as phase change material
    Jurcevic, Miso
    Nizetic, Sandro
    Coko, Duje
    Arici, Muslum
    Anh Tuan Hoang
    Giama, Effrosyni
    Papadopoulos, Agis
    ENERGY, 2022, 254
  • [4] A year-round study of a photovoltaic thermal system integrated with phase change material in Shanghai using transient model
    Kazemian, Arash
    Salari, Ali
    Ma, Tao
    ENERGY CONVERSION AND MANAGEMENT, 2020, 210
  • [5] Application of Copper Oxide Nanofluid and Phase Change Material on the Performance of Hybrid Photovoltaic-Thermal (PVT) System
    Tiwari, Awaneendra Kumar
    Chatterjee, Kalyan
    Deolia, Vinay Kumar
    PROCESSES, 2023, 11 (06)
  • [6] Year-round energy and exergy performance investigation of a photovoltaic panel coupled with metal foam/phase change material composite
    Sharaf, Mohamed
    Yousef, Mohamed S.
    Huzayyin, A. S.
    RENEWABLE ENERGY, 2022, 189 : 777 - 789
  • [7] Performance evaluation of a novel solar photovoltaic-thermal collector with dual channel using microencapsulated phase change slurry as cooling fluid
    Liu, Lingkun
    Jia, Yuting
    Lin, Yaxue
    Alva, Guruprasad
    Fang, Guiyin
    ENERGY CONVERSION AND MANAGEMENT, 2017, 145 : 30 - 40
  • [8] Experimental performance evaluation of a dual-purpose photovoltaic-thermal system with phase change material for passive heating and cooling
    Fakhraei, Omid
    Gorjian, Shiva
    Ghobadian, Barat
    Najafi, Gholamhassan
    JOURNAL OF BUILDING ENGINEERING, 2024, 98
  • [9] Experimental evaluation of a photovoltaic thermal collector using twisted tape absorber with nano-enhanced phase change material for thermal storage
    Al-Karboly, Abdalrahman M. O.
    Ibrahim, Adnan
    Fazlizan, Ahmad
    Sopian, Kamaruzzaman
    Al-Aasam, Anwer B.
    Ishak, Muhammad Amir Aziat Bin
    Al-Waeli, Ali H. A.
    Elmnifi, Monaem
    JOURNAL OF ENERGY STORAGE, 2025, 109
  • [10] A novel photovoltaic/thermal (PV/T) solar collector based on a multi-functional nano-encapsulated phase-change material (nano-ePCM) dispersion
    Hamada, Ahmed T.
    Sharaf, Omar Z.
    Orhan, Mehmet F.
    ENERGY CONVERSION AND MANAGEMENT, 2023, 280