Analysis of hydromagnetic micropolar nanofluid flow past a nonlinear stretchable sheet and entropy generation with Navier slips

被引:35
作者
Fatunmbi, Ephesus Olusoji [2 ]
Salawu, Sulyman O. [1 ]
机构
[1] Landmark Univ, Dept Math, Omu Aran 251101, Kwara State, Nigeria
[2] Fed Polytech, Dept Math & Stat, Ilaro, Nigeria
关键词
Brownian motion; micropolar fluid; porous medium; thermophoresis; slip effects; MIXED CONVECTION FLOW; VARIABLE VISCOSITY; THERMAL-RADIATION; MASS-TRANSFER; POROUS-MEDIA; FLUID; SURFACE;
D O I
10.1080/02286203.2021.1905490
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The study numerically investigates the model of hydromagnetic, dissipative micropolar nanofluid flow being influenced by multiple slips and mass flux. Also, the entropy generated within the conducting chemical reactive micropolar nanofluid is examined in permeable media. Thermophoretic and Brownian motion impacts are examined on the model. The flow is assumed to be two-dimensional over a flat nonlinear stretchable sheet in a saturated porous medium of non-Darcy type. Mathematical equations representing the problem are converted from partial to ordinary differential equations by similarity transformation. The dimensionless form of the equations is solved using a shooting technique associated with Runge-Kutta algorithms of order four. The outcomes of the simulation are displayed graphically while comparisons are made with reported data in the literature for some limiting situations. The results reveal that the momentum boundary layer is enhanced with rising values of the Brownian motion term whereas a decrease in the concentration distribution is found with a rise in Brownian motion. Besides, the thermophoresis parameter reduces entropy production in the system and the Bejan number is also reduced.
引用
收藏
页码:359 / 369
页数:11
相关论文
共 39 条
  • [1] Fully developed entropy optimized second order velocity slip MHD nanofluid flow with activation energy
    Abbas, S. Z.
    Khan, M. Ijaz
    Kadry, S.
    Khan, W. A.
    Israr-Ur-Rehman, M.
    Waqas, M.
    [J]. COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, 2020, 190
  • [2] Electromagnetohydrodynamic nanofluid flow past a porous Riga plate containing gyrotactic microorganism
    Abbas, T.
    Hayat, T.
    Ayub, M.
    Bhatti, M. M.
    Alsaedi, A.
    [J]. NEURAL COMPUTING & APPLICATIONS, 2019, 31 (06) : 1905 - 1913
  • [3] Entropy Generation in Magnetohydrodynamic Mixed Convection Flow over an Inclined Stretching Sheet
    Afridi, Muhammad Idrees
    Qasim, Muhammad
    Khan, Ilyas
    Shafie, Sharidan
    Alshomrani, Ali Saleh
    [J]. ENTROPY, 2017, 19 (01):
  • [4] Bejan A., 1996, ENTROPY GENERATION M
  • [5] Bejan A., 1982, Adv. Heat Transfer, V15, P158, DOI [10.1016/S0065-2717(08)70172-2, DOI 10.1016/S0065-2717(08)70172-2]
  • [6] Laminar mixed convection adjacent to vertical, continuously stretching sheets
    Chen, CH
    [J]. HEAT AND MASS TRANSFER, 1998, 33 (5-6) : 471 - 476
  • [7] Viscous flow and heat transfer over a nonlinearly stretching sheet
    Cortell, Rafael
    [J]. APPLIED MATHEMATICS AND COMPUTATION, 2007, 184 (02) : 864 - 873
  • [8] FLOW PAST A STRETCHING PLATE
    CRANE, LJ
    [J]. ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND PHYSIK, 1970, 21 (04): : 645 - &
  • [9] THEORY OF THERMOMICROFLUIDS
    ERINGEN, AC
    [J]. JOURNAL OF MATHEMATICAL ANALYSIS AND APPLICATIONS, 1972, 38 (02) : 480 - &
  • [10] ERINGEN AC, 1966, J MATH MECH, V16, P1