Mixed convection MHD nanofluid flow over a wedge with temperature-dependent heat source

被引:0
|
作者
P Mishra
M R Acharya
S Panda
机构
[1] Odisha University of Agriculture and Technology,Department of Physics, College of Basic Science and Humanities
[2] National Institute of Technology Calicut,Department of Mathematics
来源
Pramana | 2021年 / 95卷
关键词
Nanofluid; Brownian motion; temperature-dependent heat source; 47.56.r; 47.11.-j; 47.65.-d; 44.40.+a;
D O I
暂无
中图分类号
学科分类号
摘要
The present work investigates the transfer of heat, mass and fluid flow at the boundary layer of a nanofluid past a wedge in the presence of a variable magnetic field, temperature-dependent heat source and chemical reaction. The study is entirely theoretical and the proposed model describes the influence of Brownian motion and thermophoresis in the case of nanofluids. This study also includes the impact of thermal radiation. The partial differential equations relating to the flow are nonlinear and hence are numerically solved after transforming them into ordinary differential equations with similar variables. The outcome of the present study is given in tabular form and depicted graphically. It is found that the nanofluid flow along the wedge is accelerated by enhancing the Falkner–Skan parameter. The study further reveals that the magnetic field has an improved effect on the velocity. The Brownian motion parameter raises the profile of temperature but decreases the profile of volume fractions. Thermal radiation decreases the energy transport rate to the fluid and hence reduces the degree of heat present in the fluid. It is also observed that heat sink blankets the surface with a layer of cold fluid.
引用
收藏
相关论文
共 50 条
  • [1] Mixed convection MHD nanofluid flow over a wedge with temperature-dependent heat source
    Mishra, P.
    Acharya, M. R.
    Panda, S.
    PRAMANA-JOURNAL OF PHYSICS, 2021, 95 (02):
  • [2] On the Impact of Temperature and Space Dependent Heat Source/Sink with Richardson Number for the MHD Convection Flow of Nanofluid
    P. K. Ratha
    R. S. Tripathy
    S. R. Mishra
    International Journal of Applied and Computational Mathematics, 2024, 10 (6)
  • [3] MHD flow and heat transfer of Casson nanofluid over a wedge
    Madhu, Macha
    Kishan, Naikoti
    MECHANICS & INDUSTRY, 2017, 18 (02)
  • [4] MHD Mixed Convection Heat Transfer in a Vertical Channel with Temperature-Dependent Transport Properties
    Prasad, K. V.
    Vaidya, H.
    Vajravelu, K.
    JOURNAL OF APPLIED FLUID MECHANICS, 2015, 8 (04) : 693 - 701
  • [5] Influence of chemical reaction and heat source on dissipative MHD mixed convection flow of a Casson nanofluid over a nonlinear permeable stretching sheet
    Ibrahim, S. M.
    Lorenzini, G.
    Kumar, P. Vijaya
    Raju, C. S. K.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2017, 111 : 346 - 355
  • [6] Influence of temperature-dependent viscosity and thermal radiation on MHD forced convection over a non-isothermal wedge
    Pal, Dulal
    Mondal, Hiranmoy
    APPLIED MATHEMATICS AND COMPUTATION, 2009, 212 (01) : 194 - 208
  • [7] MHD Nonlinear Mixed Convection Flow of Micropolar Nanofluid over Nonisothermal Sphere
    Ibrahim, Wubshet
    Zemedu, Chaluma
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2020, 2020
  • [8] Mixed Convection Nanofluid Flow with Heat Source and Chemical Reaction over an Inclined Irregular Surface
    Haq, Izharul
    Bilal, Muhammad
    Ahammad, N. Ameer
    Ghoneim, Mohamed E.
    Ali, Aatif
    Weera, Wajaree
    ACS OMEGA, 2022, 7 (34): : 30477 - 30485
  • [9] Fractal Numerical Investigation of Mixed Convective Prandtl-Eyring Nanofluid Flow with Space and Temperature-Dependent Heat Source
    Nawaz, Yasir
    Arif, Muhammad Shoaib
    Mansoor, Muavia
    Abodayeh, Kamaleldin
    Baazeem, Amani S.
    FRACTAL AND FRACTIONAL, 2024, 8 (05)
  • [10] Analytical solution for MHD nanofluid flow over a porous wedge with melting heat transfer
    Azar, Ali Ahmadi
    Jalili, Payam
    Moziraji, Zahra Poolaei
    Jalili, Bahram
    Ganji, Davood Domiri
    HELIYON, 2024, 10 (15)