MHD slip effects on (50:50) hybrid nanofluid flow over a moving thin inclined needle with consequences of non-linear thermal radiation, viscous dissipation, and inclined Lorentz force

被引:9
|
作者
Kirusakthika, S. [3 ]
Priya, S. [1 ]
Hakeem, A. K. Abdul [1 ]
Ganga, B. [2 ]
机构
[1] Sri Ramakrishna Mission Vidyalaya, Dept Math, Coimbatore 641020, Tamil Nadu, India
[2] Providence Coll Women, Dept Math, Coonoor 643104, Tamil Nadu, India
[3] Sri Krishna Coll Arts & Sci, Dept Math, Coimbatore 641008, Tamil Nadu, India
关键词
Inclined needle; Lorentz force; Non-linear thermal radiation; Viscous dissipation; Slip; HEAT-TRANSFER; FLUID;
D O I
10.1016/j.matcom.2023.07.015
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Due to their enormous implementation in engineering scrupulous, hybrid nanofluids have become a prevailing substance of consideration in mathematical and physical research. The augmentation of thermal conductivity is an exclusive emphasis of hybrid nanofluids. The fluid prototype substance probing in the existing study is the Ethylene Glycol-water (50:50) as base fluid and a mixture of nanoparticles are magnetic (Fe3O4) and non-magnetic (Al2O3) hybrid nanofluid. It is found in heat transfer and cooling in electronic devices, engines, refrigerants, energy storage and the automotive industry. To obtain solutions, the Partial Differential Equations with slip boundary conditions that describe the flow are converted into Ordinary Differential Equations with appropriate transformations using a numerically based technique known as the fourth-order Runge-Kutta method with shooting techniques. The illustration diagram of the gained outcomes accentuates the consequence of numerous physical variables on the flow dynamics in relation to fluid momentum, and thermal silhouette. Also, the consequence of heat transfer rate and surface drag force in multiple variables like Eckert number, magnetic variable, and radiation constant, are tabulated. These studies explain the decline in the thermal outline of hybrid nanofluid under slip situations when upsurges the non-linear radiation parameter. By analyzing these studies of hybrid nanofluids, it is possible to improve heat transfer efficiency and control temperature gradients in systems where nonlinear thermal radiation and viscous dissipation are important factors. (c) 2023 International Association for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:50 / 66
页数:17
相关论文
共 50 条
  • [41] Impacts of unsteady MHD hybrid nanofluid over a non-linear stretchable porous sheet with thermal radiation and gyrotatic microorganisms
    Choudhary, Prasun
    Choudhary, Sushila
    Jat, Kavita
    Loganathan, K.
    Eswaramoorthi, S.
    International Journal of Thermofluids, 2024, 23
  • [42] Hydromagnetic Flow over an Inclined Non-Linear Stretching Sheet with Variable Viscosity in the Presence of Thermal Radiation and Chemical Reaction
    Shit, G. C.
    Majee, S.
    JOURNAL OF APPLIED FLUID MECHANICS, 2014, 7 (02) : 239 - 247
  • [43] UNSTEADY MHD MICROPOLAR FLUID IN A STRETCHING SHEET OVER AN INCLINED PLATE WITH THE EFFECT OF NON-LINEAR THERMAL RADIATION AND SORET-DUFOUR
    Mondal, H.
    Mishra, S.
    Kundu, P. K.
    Sibanda, P.
    JOURNAL OF THERMAL ENGINEERING, 2019, 5 (06): : 205 - 213
  • [44] THERMAL RADIATION AND JOULE HEATING EFFECTS ON A MAGNETOHYDRODYNAMIC CASSON NANOFLUID FLOW IN THE PRESENCE OF CHEMICAL REACTION THROUGH A NON-LINEAR INCLINED POROUS STRETCHING SHEET
    Goud, B. Shankar
    Reddy, Y. Dharmendar
    Rao, V. Srinivasa
    Khan, Zafar Hayat
    JOURNAL OF NAVAL ARCHITECTURE AND MARINE ENGINEERING, 2020, 17 (02): : 143 - 164
  • [45] Entropy analysis for MHD flow over a non-linear stretching inclined transparent plate embedded in a porous medium due to solar radiation
    Dehsara, M.
    Matin, M. Habibi
    Dalir, N.
    MECHANIKA, 2012, (05): : 524 - 533
  • [46] Analytical Study on Sodium Alginate Based Hybrid Nanofluid Flow through a Shrinking/Stretching Sheet with Radiation, Heat Source and Inclined Lorentz Force Effects
    Hammachukiattikul, P.
    Govindaraju, M.
    Sohail, Muhammad
    Vadivel, R.
    Gunasekaran, Nallappan
    Askar, Sameh
    FRACTAL AND FRACTIONAL, 2022, 6 (02)
  • [47] Impact of Hall and Ion effects on MHD couple stress nanofluid flow through an inclined channel subjected to convective, hydraulic slip, heat generation, and thermal radiation
    Roja, A.
    Gireesha, B. J.
    HEAT TRANSFER, 2020, 49 (06) : 3314 - 3333
  • [48] Thermal radiation and slip effects on MHD stagnation point flow of non-Newtonian nanofluid over a convective stretching surface
    Prabhakar Besthapu
    Rizwan Ul Haq
    Shankar Bandari
    Qasem M. Al-Mdallal
    Neural Computing and Applications, 2019, 31 : 207 - 217
  • [49] Thermal radiation and slip effects on MHD stagnation point flow of non-Newtonian nanofluid over a convective stretching surface
    Besthapu, Prabhakar
    Ul Haq, Rizwan
    Bandari, Shankar
    Al-Mdallal, Qasem M.
    NEURAL COMPUTING & APPLICATIONS, 2019, 31 (01): : 207 - 217
  • [50] Unsteady Convective Boundary Layer Flow for MHD Williamson Fluid Over an Inclined Porous Stretching Sheet with Non-Linear Radiation and Heat Source
    Parmar A.
    International Journal of Applied and Computational Mathematics, 2017, 3 (Suppl 1) : 859 - 881