A theoretical study of Cu-H2O nano-fluid effect on heat transfer enhancement of a solar water heater

被引:2
|
作者
Kabeel A.E. [1 ]
El-Said E.M.S. [2 ]
El-Agouz S.A. [1 ]
机构
[1] Mechanical Power Engineering Department, Faculty of Engineering, Tanta University, Tanta
[2] Industrial Engineering Department, Faculty of Engineering, Fayoum University, Fayoum
关键词
flat-plate collector; heat transfer enhancement; nano-fluid; Solar energy;
D O I
10.1080/01430750.2015.1086674
中图分类号
学科分类号
摘要
In the present work, an attempt has been made to enhance the heat transfer in a solar water heater by using Cu nano-particles dispersed in water for various concentrations ranging from 0% to 5%. Considerable improvement in the solar collector efficiency is obtained by increasing the nano-particle concentration up to 17.5 for a concentration of 5% and for a mass flow rate ratio of 10. The outlet water temperature increases by increasing the nano-particle concentration up to 8.35% for a concentration of 5% and for a mass flow rate ratio of 5. The study showed that the solar heater collecting area takes into account significant factors for increasing the outlet temperature. An increase in the collecting area of the solar water heater by 6 times could increase the water temperature by 39% for a 5% nano-particle volume fraction. The helical heat exchanger effectiveness is increased up to 65.71 for a concentration of 5% for a mass flow rate ratio of 10. © 2015 Informa UK Limited, trading as Taylor & Francis Group.
引用
收藏
页码:286 / 294
页数:8
相关论文
共 50 条
  • [21] Heat Transport Characteristics of an Oscillating Heat Pipe with Al2O3 Nano-fluid
    Wang, Shuangfeng
    Lin, Zirong
    Zhang, Weibao
    Chen, Jinjian
    Tang, Yong
    PROCEEDINGS OF THE ASME MICRO/NANOSCALE HEAT AND MASS TRANSFER INTERNATIONAL CONFERENCE, VOL 3, 2010, : 331 - 335
  • [22] Heat transfer effect of cnt and ethylene glycol based nano-fluid in twisted tape heat exchanger with balls
    Saravanan R.
    Karuppasamy M.
    Chandrasekaran M.
    Muthuraman V.
    International Journal of Vehicle Structures and Systems, 2020, 12 (04) : 372 - 374
  • [23] INHERENT IRREVERSIBILITY IN CU-H2O NANOFLUID COUETTE FLOW WITH VARIABLE VISCOSITY AND NONLINEAR RADIATIVE HEAT TRANSFER
    Monaledi, R. L.
    Makinde, O. D.
    INTERNATIONAL JOURNAL OF FLUID MECHANICS RESEARCH, 2019, 46 (06) : 525 - 543
  • [24] Entropy Study of Hybrid (Al2O3-Cu/H2O) Nano-Fluid in a Cylindrical Cavity with Wavy Sides Under the Effect of a Parallel Magnetic Field
    Redouane, Fares
    Jamshed, Wasim
    Devi, S. Suriya Uma
    Prakash, M.
    Mahammed, Amine Belhadj
    Abdelhak, Roubi
    JOURNAL OF NANOFLUIDS, 2023, 12 (01) : 231 - 241
  • [25] Experimental investigation of heat transfer and pressure drop of alumina-water nano-fluid in a porous miniature heat sink
    Pourfarzad, E.
    Ghadiri, K.
    Behrangzade, A.
    Ashjaee, Mehdi
    EXPERIMENTAL HEAT TRANSFER, 2018, 31 (06) : 495 - 512
  • [26] Study on dispersion behavior and thermal conductivity of Cu-H2O nanofluids
    Li, Xin-Fang
    Zhu, Dong-Sheng
    Wang, Xian-Ju
    Wang, Nan
    Li, Hua
    Yang, Shuo
    Gongneng Cailiao/Journal of Functional Materials, 2008, 39 (01): : 162 - 165
  • [27] Thermal conductivity enhancement dependent pH and chemical surfactant for Cu-H2O nanofluids
    Li, X. F.
    Zhu, D. S.
    Wang, X. J.
    Wang, N.
    Gao, J. W.
    Li, H.
    THERMOCHIMICA ACTA, 2008, 469 (1-2) : 98 - 103
  • [28] Longitudinal vortex generator applied to heat transfer enhancement of a flat plate solar water heater
    da Silva, Felipe A. S.
    Dezan, Daniel J.
    Pantaleao, Aluisio V.
    Salviano, Leandro O.
    APPLIED THERMAL ENGINEERING, 2019, 158
  • [29] Investigation on influence of dimpled surfaces on heat transfer enhancement and friction factor in solar water heater
    Manoram, R. B.
    Moorthy, R. Sathiya
    Ragunathan, R.
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2021, 145 (02) : 541 - 558
  • [30] Investigation on influence of dimpled surfaces on heat transfer enhancement and friction factor in solar water heater
    R. B. Manoram
    R. Sathiya Moorthy
    R. Ragunathan
    Journal of Thermal Analysis and Calorimetry, 2021, 145 : 541 - 558