Forced Convection Heat Transfer of Nanofluids: A Review

被引:0
|
作者
Kuchibhotla, Aditya [1 ]
Banerjee, Debjyoti [1 ]
机构
[1] Texas A&M Univ, College Stn, TX 77843 USA
关键词
THERMAL-CONDUCTIVITY ENHANCEMENT; PRESSURE-DROP; AQUEOUS SUSPENSIONS; AL2O3; NANOFLUIDS; WATER NANOFLUIDS; PARTICLE-SIZE; FLOW BEHAVIOR; REGIME; TUBE; NANOPARTICLES;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
Stable homogeneous colloidal suspensions of nanoparticles in a liquid solvents are termed as nanofluids. In this review the results for the forced convection heat transfer of nanofluids are gleaned from the literature reports. This study attempts to evaluate the experimental data in the literature for the efficacy of employing nanofluids as heat transfer fluids (HTF) and for Thermal Energy Storage (TES). The efficacy of nanofluids for improving the performance of compact heat exchangers were also explored. In addition to thermal conductivity and specific heat capacity the rheological behavior of nanofluids also play a significant role for various applications. The material properties of nanofluids are highly sensitive to small variations in synthesis protocols. Hence the scope of this review encompassed various sub-topics including: synthesis protocols for nanofluids, materials characterization, thereto-physical properties (thermal conductivity, viscosity, specific heat capacity), pressure drop and heat transfer coefficients under forced convection conditions. The measured values of heat transfer coefficient of the nanofluids varies with testing configuration i.e. flow regime, boundary condition and geometry. Furthermore, a review of the reported results on the effects of particle concentration, size, temperature is presented in this study. A brief discussion on the pros and cons of various models in the literature is also performed especially pertaining to the reports on the anomalous enhancement in heat transfer coefficient of nanofluids. Furthermore, the experimental data in the literature indicate that the enhancement observed in heat transfer coefficient is incongruous compared to the level of thermal conductivity enhancement obtained in these studies. Plausible explanations for this incongruous behavior is explored in this review. A brief discussion on the applicability of conventional single phase convection correlations based on Newtonian rheological models for predicting the heat transfer characteristics of the nanofluids is also explored in this review (especially considering that nanofluids often display non Newtonian rheology). Validity of various correlations reported in the literature that were developed from experiments, is also explored in this review. These comparisons were performed as a function of various parameters, such as, for the same mass flow rate, Reynolds number, mass averaged velocity and pumping power.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Forced Convection Heat Transfer of Nanofluids in a Porous Channel
    Maghrebi, M. J.
    Nazari, M.
    Armaghani, T.
    [J]. TRANSPORT IN POROUS MEDIA, 2012, 93 (03) : 401 - 413
  • [2] Forced Convection Heat Transfer of Nanofluids in a Porous Channel
    M. J. Maghrebi
    M. Nazari
    T. Armaghani
    [J]. Transport in Porous Media, 2012, 93 : 401 - 413
  • [3] Heat transfer enhancement by using nanofluids in forced convection flows
    Maïga, SE
    Palm, SJ
    Nguyen, CT
    Roy, G
    Galanis, N
    [J]. INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2005, 26 (04) : 530 - 546
  • [4] Effect of uncertainties in physical properties on forced convection heat transfer with nanofluids
    Ben Mansour, Ridha
    Galanis, Nicolas
    Nguyen, Cong Tam
    [J]. APPLIED THERMAL ENGINEERING, 2007, 27 (01) : 240 - 249
  • [5] Turbulent forced convection heat transfer of non-Newtonian nanofluids
    Hojjat, Mohammad
    Etemad, Seyed Gholamreza
    Bagheri, Rouhollah
    Thibault, Jules
    [J]. EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2011, 35 (07) : 1351 - 1356
  • [6] Forced Convective Heat Transfer of Nanofluids - A Review of the Recent Literature
    Dalkilic, A. S.
    Kayaci, N.
    Celen, A.
    Tabatabaei, M.
    Yildiz, O.
    Daungthongsuk, W.
    Wongwises, S.
    [J]. CURRENT NANOSCIENCE, 2012, 8 (06) : 949 - 969
  • [7] Numerical Study on the Forced Convection Heat Transfer of Nanofluids in Micro-Channels
    Shin, Hong-Cheol
    Han, Sangmok
    Kim, Sung-Min
    [J]. JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2017, 17 (11) : 8394 - 8403
  • [8] Forced convection heat transfer of molten Salts: A review
    Kuchibhotla, Aditya
    Banerjee, Debjyoti
    Dhir, Vijay
    [J]. NUCLEAR ENGINEERING AND DESIGN, 2020, 362
  • [9] Review on forced convection heat transfer in porous media
    Zheng Kun-Can
    Wen Zhi
    Wang Zhan-Sheng
    Lou Guo-Feng
    Liu Xun-Liang
    Wu Wen-Fei
    [J]. ACTA PHYSICA SINICA, 2012, 61 (01)
  • [10] Forced convective heat transfer of nanofluids
    Ding, Yulong
    Chen, Haisheng
    He, Yurong
    Lapkin, Alexei
    Yeganeh, Mahboubeh
    Siller, Lidija
    Butenko, Yuriy V.
    [J]. ADVANCED POWDER TECHNOLOGY, 2007, 18 (06) : 813 - 824