Numerical assessment of MHD hybrid nanofluid flow over an exponentially stretching surface in the presence of mixed convection and non uniform heat source/sink

被引:6
|
作者
Naseem, Anum [1 ]
Kasana, Abdul Ghafoor [1 ]
机构
[1] Natl Univ Modern Languages NUML, Fac Engn & Comp Sci, Dept Math, Islamabad 44000, Pakistan
关键词
VERTICAL SURFACE; SHEET;
D O I
10.1016/j.rineng.2024.102294
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The modern era is concerned about the problems related to heat transfer and energy storage. The hybridization of nanofluids stands an important study due to the enhanced thermophysical properties of these effective fluids. The distinguished response of hybrid nanofluids towards thermal conductivity is appreciated for heating and cooling industrial purposes. Thus, the current study intends to investigate the effect of magnetohydrodynamics and thermal radiation on aiding opposing flow of Al 2 O 3 - Cu /H 2 O hybrid nanofluid flowing over a porous exponentially stretching surface. The flow is influenced by the presence of stagnation point and non -uniform heat source/sink while the convective boundary conditions are also assumed. The flow control equations are exhibited according to the assumptions and a similarity transformation leads to a system of ordinary differential equations from a system of partial differential equations. The deduced system is solved numerically using bvp4c technique, built-in MATLAB based algorithm. The upshots spectacle the results for velocity and temperature profiles on behalf of various parameters affecting the hybrid nanofluid flow. The increasing values of magnetic parameter and velocity ratio parameter significantly impacts the velocity profile for assisting and opposing flows. The temperature profile escalates for higher values of thermal radiation parameter, Eckert number and Biot number. Moreover, the analysis delivers valued insights into the heat transfer and friction drag for the considered hybrid nanofluid model. The gained results can support study in applications involving nanofluid based systems.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Second order slip micropolar MHD hybrid nanofluid flow over a stretching surface with uniform heat source and activation energy: Numerical computational approach
    Abas, Syed Arshad
    Ullah, Hakeem
    Fiza, Mehreen
    Akgul, Ali
    Jan, Aasim Ullah
    Abd El-Rahman, Magda
    Al-Mekhlafi, Seham M.
    RESULTS IN ENGINEERING, 2025, 25
  • [22] MHD Casson nanofluid boundary layer flow in presence of radiation and non-uniform heat source/sink
    Manvi, Bharatkumar K.
    Kerur, Shravankumar B.
    Tawade, Jagadish, V
    Nieto, Juan J.
    Sankeshwari, Sagar Ningonda
    Ahmad, Hijaz
    Govindan, Vediyappan
    MATHEMATICAL MODELLING AND CONTROL, 2021, 3 (03): : 152 - 167
  • [23] Regression modelling of hybrid nanofluid flow past an exponentially stretching/shrinking surface with heat source-sink effect
    Sulochana, C.
    Kumar, T. Prasanna
    MATERIALS TODAY-PROCEEDINGS, 2022, 54 : 669 - 676
  • [24] Regression modelling of hybrid nanofluid flow past an exponentially stretching/shrinking surface with heat source-sink effect
    Sulochana, C.
    Kumar, T. Prasanna
    Materials Today: Proceedings, 2022, 54 : 669 - 676
  • [25] Heat transfer analysis of MHD viscous nanofluid flow over a nonlinearly stretching sheet with heat source/sink: A numerical study
    Santosh, Ch
    Parida, Sampada Kumar
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2023,
  • [26] Shape effect of nanoparticles on MHD nanofluid flow over a stretching sheet in the presence of heat source/sink with entropy generation
    Berrehal, Hamza
    Sowmya, G.
    Makinde, Oluwole Daniel
    INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2022, 32 (05) : 1643 - 1663
  • [27] Unsteady MHD radiative flow and heat transfer of a dusty nanofluid over an exponentially stretching surface
    Sandeep, N.
    Sulochana, C.
    Kumar, B. Rushi
    ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH, 2016, 19 (01): : 227 - 240
  • [28] Heat and mass transfer in MHD Williamson nanofluid flow over an exponentially porous stretching surface
    Li, Yi-Xia
    Alshbool, Mohammed Hamed
    Lv, Yu-Pei
    Khan, Ilyas
    Khan, M. Riaz
    Issakhov, Alibek
    CASE STUDIES IN THERMAL ENGINEERING, 2021, 26
  • [29] MHD hybrid nanofluid and slip flow towards an exponentially stretching/shrinking sheet with nonlinear thermal radiation and nonuniform heat source/sink
    Sharma, Ram Prakash
    Prakash, Om
    Shafi, Shaik
    MODERN PHYSICS LETTERS B, 2024, 38 (23):
  • [30] Dual Solutions of MHD Boundary Layer flow past an Exponentially Stretching Sheet with Non-Uniform Heat Source/Sink
    Raju, C. S. K.
    Sandeep, N.
    Sulochana, C.
    Babu, M. Jayachandra
    JOURNAL OF APPLIED FLUID MECHANICS, 2016, 9 (02) : 555 - 563