Experimental and numerical investigation of parameters influencing anisotropic thermal conductivity of magnetorheological fluids

被引:11
|
作者
Maroofi, J. [1 ]
Hashemabadi, S. H. [1 ]
机构
[1] Iran Univ Sci & Technol, CFD Res Lab, Sch Chem Engn, Tehran 1684613114, Iran
关键词
Magnetorheological fluid; Anisotropic thermal conductivity; Computational fluid dynamics (CFD) simulation; HEAT-TRANSFER; MAGNETIC FLUID; NANOFLUIDS; TEMPERATURE; ENHANCEMENT; COMPRESSION; SIMULATION; BEHAVIOR; WIRE; FLOW;
D O I
10.1007/s00231-019-02618-w
中图分类号
O414.1 [热力学];
学科分类号
摘要
Application of a magnetic field causes significant changes in rheological and thermal properties of a magnetorheological (MR) fluid. One of the thermal properties of a MR fluid which is influenced by the magnetic field is the thermal conductivity. In this paper, Discrete Phase Model (DPM) was used to simulate the effects of influencing parameters on thermal conductivity of MR fluids. In the next step, CFD simulation results are validated with experimental data from THW method, and then the effects of influencing parameters on thermal conductivity of MR suspensions are studied. A MR fluid with volume fraction of dispersed carbonyl iron particles equal to 15% in the magnetic field with intensity of 14 mT is tested and it was concluded that in case of a magnetic field is parallel to the temperature gradient direction, the thermal conductivity increases 105%, but if the magnetic field direction is perpendicular to the temperature gradient direction, it decreases by 23%. Results also show that anisotropic thermal conductivity of the MR fluid under investigation is promoted by increasing the volume fraction and decreasing the size of dispersed particles.
引用
收藏
页码:2751 / 2767
页数:17
相关论文
共 50 条
  • [1] Experimental and numerical investigation of parameters influencing anisotropic thermal conductivity of magnetorheological fluids
    J. Maroofi
    S. H. Hashemabadi
    Heat and Mass Transfer, 2019, 55 : 2751 - 2767
  • [2] Investigation of the Chain Formation Effect on Thermal Conductivity of Magnetorheological Fluids
    Maroofi, J.
    Hashemabadi, S. H.
    Rabbani, Y.
    JOURNAL OF THERMOPHYSICS AND HEAT TRANSFER, 2020, 34 (01) : 3 - 12
  • [3] On the anisotropic thermal conductivity of magnetorheological suspensions
    Reinecke, Benjamin N.
    Shan, Jerry W.
    Suabedissen, Karl K.
    Cherkasova, Anna S.
    JOURNAL OF APPLIED PHYSICS, 2008, 104 (02)
  • [4] Anisotropic thermal conductivity of magnetic fluids
    Fang, Xiaopeng
    Xuan, Yimin
    Li, Qiang
    PROGRESS IN NATURAL SCIENCE-MATERIALS INTERNATIONAL, 2009, 19 (02) : 205 - 211
  • [5] Anisotropic thermal conductivity of magnetic fluids
    Xiaopeng Fang
    Progress in Natural Science:Materials International, 2009, 19 (02) : 205 - 211
  • [6] Anisotropic thermal conductivity of magnetic fluids
    Xiaopeng FangYimin XuanQiang Li School of Power EngineeringNanjing University of Science TechnologyNanjing China
    ProgressinNaturalScience, 2009, 19 (02) : 205 - 211
  • [7] An experimental study of magnetorheological fluids on electrical conductivity property
    Yang, Xiongbo
    Huang, Yuehua
    Hou, Yaqian
    Wu, Hao
    Xu, Ruizhen
    Chu, Paul K.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2017, 28 (11) : 8130 - 8135
  • [8] An experimental study of magnetorheological fluids on electrical conductivity property
    Xiongbo Yang
    Yuehua Huang
    Yaqian Hou
    Hao Wu
    Ruizhen Xu
    Paul K. Chu
    Journal of Materials Science: Materials in Electronics, 2017, 28 : 8130 - 8135
  • [9] Metrology of the Experimental Investigation of the Dynamics of Magnetorheological Fluids
    Gordeev, B. A.
    Sinev, A. V.
    Kopytov, I. N.
    Okhulkov, S. N.
    JOURNAL OF MACHINERY MANUFACTURE AND RELIABILITY, 2008, 37 (01): : 77 - 82
  • [10] Metrology of the experimental investigation of the dynamics of magnetorheological fluids
    Gordeev B.A.
    Sinev A.V.
    Kopytov I.N.
    Okhulkov S.N.
    Journal of Machinery Manufacture and Reliability, 2008, 37 (1) : 77 - 82