Kerosene−alumina nanofluid flow and heat transfer for cooling application

被引:0
|
作者
M. Mahmoodi
Sh. Kandelousi
机构
[1] Malek-Ashtar University of Technology,Department of Aerospace Engineering
[2] Babol University of Technology,Department of Mechanical Engineering
来源
关键词
magnetic field; nanofluid; heat transfer; differential transformation method;
D O I
暂无
中图分类号
学科分类号
摘要
Kerosene−alumina nanofluid flow and heat transfer in the presence of magnetic field are studied. The basic partial differential equations are reduced to ordinary differential equations which are solved semi analytically using differential transformation method. Velocity and temperature profiles as well as the skin friction coefficient and the Nusselt number are determined analytically. The influence of pertinent parameters such as magnetic parameter, nanofluid volume fraction, viscosity parameter and Eckert number on the flow and heat transfer characteristics is discussed. Results indicate that skin friction coefficient decreases with increase of magnetic parameter, nanofluid volume fraction and viscosity parameter. Nusselt number increases with increase of magnetic parameter and nanofluid volume fraction while it decreases with increase of Eckert number and viscosity parameter.
引用
收藏
页码:983 / 990
页数:7
相关论文
共 50 条
  • [41] Laminar heat transfer with alumina nanofluid in cu tube with different diameters
    Kim, Sedong
    Haque, A. K. M. Mahmudul
    Kim, Junhyo
    Yu, Kitae
    Song, Heegeun
    Park, Cheol
    Chung, Hanshik
    Jeong, Hyomin
    6TH INTERNATIONAL CONFERENCE ON MANUFACTURING ENGINEERING AND PROCESS (ICMEP 2017), 2017, 885
  • [42] Experimental investigation on heat transfer and flow resistance of drag-reducing alumina nanofluid in a fin-and-tube heat exchanger
    Raei, Behrouz
    Peyghambarzadeh, S. M.
    Asl, R. Salehi
    APPLIED THERMAL ENGINEERING, 2018, 144 : 926 - 936
  • [43] Entropy generation under the influence of melting heat transfer in stratified Polystyrene-water/kerosene nanofluid flow with velocity slip
    Anjum, Aisha
    Mir, N. A.
    Farooq, M.
    Ahmad, S.
    Jabeen, Iffat
    MATERIALS RESEARCH EXPRESS, 2019, 6 (12)
  • [44] Flow structure and enhanced heat transfer in channel flow with dimpled surfaces: Application to heat sinks in microelectronic cooling
    Silva, Carlos
    Marotta, Egidio
    Fletcher, Leroy
    JOURNAL OF ELECTRONIC PACKAGING, 2007, 129 (02) : 157 - 166
  • [45] Flow structure and enhanced heat transfer in channel flow with dimpled surfaces: Application to heat sinks in microelectronic cooling
    Silva, Carlos
    Marotta, Egidio
    Fletcher, Leroy
    PROCEEDINGS OF THE ASME HEAT TRANSFER DIVISION 2005, VOL 1, 2005, 376-1 : 697 - 708
  • [46] Performance of overall heat transfer in multi-channel heat exchanger by alumina nanofluid
    Jwo, Ching-Song
    Jeng, Lung-Yue
    Teng, Tun-Ping
    Chen, Chien-Chih
    JOURNAL OF ALLOYS AND COMPOUNDS, 2010, 504 : S385 - S388
  • [47] EXPERIMENTS TO EXPLORE THE MECHANISMS OF HEAT TRANSFER IN NANOCRYSTALLINE ALUMINA/WATER NANOFLUID UNDER LAMINAR AND TURBULENT FLOW CONDITIONS
    Chandrasekar, M.
    Suresh, S.
    EXPERIMENTAL HEAT TRANSFER, 2011, 24 (03) : 234 - 256
  • [48] Heat transfer enhancement in hydromagnetic alumina-copper/water hybrid nanofluid flow over a stretching cylinder
    Maskeen, Muhammad Muddassar
    Zeeshan, Ahmad
    Mehmood, Obaid Ullah
    Hassan, Mohsan
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2019, 138 (02) : 1127 - 1136
  • [49] Nanofluid in the multiphase flow field and heat transfer: A review
    Dey, Debashis
    Sahu, Dibyansu S.
    HEAT TRANSFER, 2021, 50 (04) : 3722 - 3775
  • [50] Flow and heat transfer characteristics on a moving plate in a nanofluid
    Bachok, Norfifah
    Ishak, Anuar
    Pop, Ioan
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2012, 55 (04) : 642 - 648