Heat transfer assessment with entropy generation and thermal density effects on boundary layer flow of magneto nanofluid across the stretching sheet under magnetic field

被引:13
|
作者
Ullah, Zia [1 ]
El-Zahar, Essam. R. [2 ,3 ]
Aldhabani, Musaad S. [4 ]
Alrihieli, Haifaa F. [4 ]
Seddek, Laila F. [2 ,5 ]
机构
[1] Univ Lahore, Dept Math & Stat, Sargodha Campus, Sargodha 40100, Pakistan
[2] Prince Sattam Bin Abdulaziz Univ, Coll Sci & Humanities Al Kharj, Dept Math, POB 83, Al Kharj 11942, Saudi Arabia
[3] Menoufia Univ, Fac Engn, Dept Basic Engn Sci, Shibin Al Kawm 32511, Egypt
[4] Univ Tabuk, Fac Sci, Dept Math, POB 741, Tabuk 71491, Saudi Arabia
[5] Zagazig Univ, Fac Engn, Dept Engn Math & Phys, Zagazig 44519, Egypt
关键词
Temperature dependent density; Nanofluids; MHD; Entropy generation; Heat transfer; Mass transfer; Thermophoresis; Stretching sheet; Keller box simulation; OPTIMIZATION;
D O I
10.1016/j.tsep.2023.101955
中图分类号
O414.1 [热力学];
学科分类号
摘要
The main objective of the current study is to compute entropy generation impact on heat and mass transfer characteristics of magnetic nanofluid flow across the heated stretching sheet for high temperature differences. Most of studies are found to deal with a small temperature difference between the surface and ambient nanofluid. However, the circumstances arise where this temperature difference is high due to entropy generation. The primary focus of this study is to reduce excessive heating by using magnetic field as an insulating material. The density of the fluid is assumed as a function of temperature. The impact of thermophoresis and Brownian motion is also used along the stretching sheet to compute heat transfer characteristics. The coupled partial differential equations are converted into ordinary differential equations by using stream functions and similarity transformation. The numerical and graphical results are obtained for various governing parameters by using Keller box simulation. The velocity, temperature and concentration distribution are examined for each reducing parameter such as density parameter, Eckert number, Prandtl number, thermophoresis number, Brownian motion parameter, magnetic force parameter and buoyancy parameter. The main finding is that velocity and temperature distribution improves for lower density parameter. It was found that heat and mass transfer rate enhances as Brownian motion improves. Moreover, the skin friction and heat transfer rate increases as entropy generation increases.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Consequences of thermal conductivity and thermal density on heat and mass transfer in the nanofluid boundary layer flow toward a stretching sheet in the presence of a magnetic field
    Ullah, Zia
    Alam, Md Mahbub
    Khan, Aamir Abbas
    Alkarni, Shalan
    Khan, Qaisar
    Merga, Feyisa Edosa
    AIP ADVANCES, 2024, 14 (10)
  • [2] Melting heat transfer in boundary layer stagnation-point flow of nanofluid toward a stretching sheet with induced magnetic field
    Gireesha, B. J.
    Mahanthesh, B.
    Shivakumara, I. S.
    Eshwarappa, K. M.
    ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH, 2016, 19 (01): : 313 - 321
  • [3] Significance of thermal density and viscous dissipation on heat and mass transfer of chemically reactive nanofluid flow along stretching sheet under magnetic field
    Ullah, Zia
    Abbas, Amir
    El-Zahar, Essam R.
    Seddek, Laila F.
    Akgul, Ali
    Hassan, Ahmed M.
    RESULTS IN ENGINEERING, 2023, 20
  • [4] MHD Boundary Layer Flow and Heat Transfer Past a Stretching/Shrinking Sheet in a Nanofluid
    Sandeep, N.
    Sulochana, C.
    Kumar, B. Rushi
    JOURNAL OF NANOFLUIDS, 2015, 4 (04) : 512 - 517
  • [5] MHD boundary layer flow and heat transfer over a stretching sheet with induced magnetic field
    Fadzilah Md. Ali
    Roslinda Nazar
    Norihan Md. Arifin
    Ioan Pop
    Heat and Mass Transfer, 2011, 47 : 155 - 162
  • [6] MHD boundary layer flow and heat transfer over a stretching sheet with induced magnetic field
    Ali, Fadzilah Md.
    Nazar, Roslinda
    Arifin, Norihan Md.
    Pop, Ioan
    HEAT AND MASS TRANSFER, 2011, 47 (02) : 155 - 162
  • [7] Effects of thermal radiation and variable density of nanofluid heat transfer along a stretching sheet by using Keller Box approach under magnetic field
    Gamaoun, Fehmi
    Ullah, Zia
    Ahammad, N. Ameer
    Fadhl, Bandar M.
    Makhdoum, Basim M.
    Khan, Aamir Abbas
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2023, 41
  • [8] Unsteady Boundary Layer Nanofluid Flow and Heat Transfer along a Porous Stretching Surface with Magnetic Field
    Alam, M. S.
    Ali, M.
    Alim, M. A.
    Munshi, M. J. Haque
    7TH BSME INTERNATIONAL CONFERENCE ON THERMAL ENGINEERING (ICTE), 2017, 1851
  • [9] Unsteady Boundary Layer Flow and Heat Transfer over a Stretching Sheet with a Convective Boundary Condition in a Nanofluid
    Mansur, Syahira
    Ishak, Anuar
    PROCEEDINGS OF THE 3RD INTERNATIONAL CONFERENCE ON MATHEMATICAL SCIENCES, 2014, 1602 : 311 - 316
  • [10] Boundary layer flow and heat transfer over a nonlinearly permeable stretching/shrinking sheet in a nanofluid
    Zaimi, Khairy
    Ishak, Anuar
    Pop, Ioan
    SCIENTIFIC REPORTS, 2014, 4