Unsteady hybrid-nanofluid flow comprising ferrousoxide and CNTs through porous horizontal channel with dilating/squeezing walls

被引:0
|
作者
Muhammad Bilal
Hamna Arshad
Muhammad Ramzan
Zahir Shah
Poom Kumam
机构
[1] The University of Lahore,Department of Mathematics
[2] Bahria University,Department of Mathematical Sciences
[3] University of Lakki Marwat,Center of Excellence in Theoretical and Computational Science (TaCS
[4] King Mongkut’s University of Technology Thonburi (KMUTT),CoE), Faculty of Science
[5] King Mongkut’s University of Technology Thonburi (KMUTT),Fixed Point Research Laboratory, Fixed Point Theory and Applications Research Group, Center of Excellence in Theoretical and Computational Science (TaCS
[6] China Medical University Hospital,CoE), Faculty of Science
[7] China Medical University,Department of Medical Research
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The key objective of the present research is to examine the hybrid magnetohydrodynamics (MHD) nanofluid (Carbon-nanotubes and ferrous oxide–water) CNT–Fe3O4/H2 flow into a horizontal parallel channel with thermal radiation through squeezing and dilating porous walls. The parting motion is triggered by the porous walls of the channel. The fluid flow is time-dependent and laminar. The channel is asymmetric and the upper and lower walls are distinct in temperature and are porous. With the combination of nanoparticles of Fe3O4 and single and multi-wall carbon nanotubes, the hybrid nanofluid principle is exploited. By using the similarity transformation, the set of partial differential equations (PDEs) of this mathematical model, governed by momentum and energy equations, is reduced to corresponding ordinary differential equations (ODEs). A very simple numerical approach called the Runge–Kutta system of order four along with the shooting technique is used to achieve the solutions for regulating ODEs. MATLAB computing software is used to create temperature and velocity profile graphs for various emerging parameters. At the end of the manuscript, the main conclusions are summarized. Through different graphs, it is observed that hybrid-nanofluid has more prominent thermal enhancement than simple nanofluid. Further, the single-wall nanotubes have dominated impact on temperature than the multi-wall carbon nanotubes. From the calculations, it is also noted that Fe2O3–MWCNT–water has an average of 4.84% more rate of heat transfer than the Fe2O3–SWCNT–water. On the other hand, 8.27% more heat flow observed in Fe2O3–SWCNT–water than the simple nanofluid. Such study is very important in coolant circulation, inter-body fluid transportation, aerospace engineering, and industrial cleaning procedures, etc.
引用
收藏
相关论文
共 46 条
  • [21] Modeling and Analysis of Unsteady Axisymmetric Squeezing Fluid Flow through Porous Medium Channel with Slip Boundary
    Qayyum, Mubashir
    Khan, Hamid
    Rahim, M. Tariq
    Ullah, Inayat
    PLOS ONE, 2015, 10 (03):
  • [22] Mixed convection Ag-MgO/water hybrid nanofluid flow in a porous horizontal channel
    Amira Jarray
    Zouhaier Mehrez
    Afif El Cafsi
    The European Physical Journal Special Topics, 2019, 228 : 2677 - 2693
  • [23] Thermophysical Analysis of Water Based (Cu-Al2O3) Hybrid Nanofluid in an Asymmetric Channel with Dilating/Squeezing Walls Considering Different Shapes of Nanoparticles
    Saba, Fitnat
    Ahmed, Naveed
    Khan, Umar
    Waheed, Asif
    Rafiq, Muhammad
    Mohyud-Din, Syed Tauseef
    APPLIED SCIENCES-BASEL, 2018, 8 (09):
  • [24] MHD Unsteady Flow and Heat Transfer of Micropolar Fluid through Porous Channel with Expanding or Contracting Walls
    Asia, Y.
    Kashif, A.
    Muhammad, A.
    JOURNAL OF APPLIED FLUID MECHANICS, 2016, 9 (04) : 1807 - 1817
  • [25] Stability Analysis of Mixed Convection of Nanofluid Flow Through a Horizontal Porous Channel Using LTNE Model
    Harsha, S., V
    Shekara, G. Chandra
    Kumar, C. Hemanth
    Mayur, D. H.
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2024, 36 (06)
  • [26] UNSTEADY FLUID FLOW AND HEAT TRANSFER THROUGH A POROUS MEDIUM IN A HORIZONTAL CHANNEL WITH AN INCLINED MAGNETIC FIELD
    Nikodijevic, Milica
    Stamenkovic, Zivojin
    Petrovic, Jelena
    Kocic, Milos
    TRANSACTIONS OF FAMENA, 2020, 44 (04) : 31 - 46
  • [27] Magnetic field impact on double diffusive mixed convective hybrid-nanofluid flow and irreversibility in porous cavity with vertical wavy walls and rotating solid cylinder
    Akhter, Rowsanara
    Ali, Mohammad Mokaddes
    Alim, Md Abdul
    RESULTS IN ENGINEERING, 2023, 19
  • [28] Subdomain method for unsteady flow of ZnO-SAE50 nano-lubricant through expanding/contracting walls in an asymmetric porous horizontal channel
    Muhammad, Noor
    Ahmed, Naveed
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2022, 138
  • [29] Unsteady bioconvection Darcy-Forchheimer nanofluid flow through a horizontal channel with impact of magnetic field and thermal radiation
    Jawad, Muhammad
    Saeed, Anwar
    Khan, Arshad
    Gul, Taza
    Zubair, Muhammad
    Shah, Syed A. A.
    HEAT TRANSFER, 2021, 50 (04) : 3240 - 3264
  • [30] Insight into the magnetohydrodynamic flow of CNT-based nanofluid through a horizontal porous channel: Nanoparticle passive control
    Chaurasiya, V. K.
    Kumar, A.
    Tripathi, R.
    Singh, R.
    Sheremet, M. A.
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2024,