Enhanced heat transmission in unsteady magneto-nanoliquid flow due to a nonlinear extending sheet with convective boundary conditions

被引:13
作者
G. Poojari, Ashwinkumar [1 ]
Ranjana, B. [1 ,2 ]
Sandeep, N. [3 ,5 ]
Sulochana, C. [4 ,6 ]
机构
[1] Vijayanagara Sri Krishnadevaraya Univ, Dept Math, Bellary, India
[2] Govt First Grade Coll, Dept Math, Haliyal, India
[3] Cent Univ Karnataka, Dept Math, Kalaburagi, India
[4] Gulbarga Univ, Dept Math, Kalaburagi, India
[5] Cent Univ Karnataka, Dept Math, Kalaburagi 585367, India
[6] Gulbarga Univ, Dept Math, Kalaburagi 585106, India
关键词
Convective boundary conditions; magnetohydrodynamic; Maxwell; Xue nanomodel; slandering extendable surface; viscous dissipation; CONTINUOUS SOLID SURFACES; CASSON NANOFLUID FLOW; STRETCHING SHEET; THERMAL-RADIATION; LAYER BEHAVIOR; MHD FLOW; SLIP; FLUID;
D O I
10.1080/10407782.2023.2207730
中图分类号
O414.1 [热力学];
学科分类号
摘要
A computational analysis is performed to scrutinize the stimulus of an aligned magnetized force and radiative flux on the unsteady magneto-flow of ZnO + H2O nanoliquid across a varied thickness extending surface in the attendance of convective edge constraints. The prime motive of this exploration is to confer the best thermal transfer enactment nanomodel among Maxwell and Xue nanomodels. The arising system of PDE's are exercised by adopting suitable similarities to attain the no-dimension ODE's and the solutions are attained by implementing the built-in bvp5c MATLAB package. The energy equation is encompassed by Buongiorno slip mechanism, viscous dissipation, and radiative flux. Further, the flow, thermal, and concentration gradients are illustrated graphically. The major upshots imply that the radiative flux and thermal Biot number efficiently augment the Nusselt number in both situations. Also, the energy transport rate is noticeably 4% large in the Maxwell nanomodel when equated to Xue nanomodel.
引用
收藏
页码:1569 / 1590
页数:22
相关论文
共 44 条
  • [1] On extended version of Yamada-Ota and Xue models of hybrid nanofluid on moving needle
    Abbas, Nadeem
    Malik, M. Y.
    Nadeem, S.
    Alarifi, Ibrahim M.
    [J]. EUROPEAN PHYSICAL JOURNAL PLUS, 2020, 135 (02)
  • [2] Computational analysis of nano-fluid due to a non-linear variable thicked stretching sheet subjected to Joule heating and thermal radiation
    Abdelmalek, Zahra
    Khan, Imad
    Khan, M. Waleed Ahmed
    Rehman, Khalil Ur
    Sherif, El-Sayed M.
    [J]. JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2020, 9 (05): : 11035 - 11044
  • [3] The improved thermal efficiency of Maxwell hybrid nanofluid comprising of graphene oxide plus silver / kerosene oil over stretching sheet
    Ahmad, Farooq
    Abdal, Sohaib
    Ayed, Hela
    Hussain, Sajjad
    Salim, Suleman
    Almatroud, A. Othman
    [J]. CASE STUDIES IN THERMAL ENGINEERING, 2021, 27
  • [4] Ahmad I., 2022, INT J AMBIENT ENERGY, V43, P7588, DOI [10.1080/01430750.2022.2073263, DOI 10.1080/01430750.2022.2073263]
  • [5] Dynamics of Nanoplatelets in Mixed Convective Radiative Flow of Hybridized Nanofluid Mobilized by Variable Thermal Conditions
    Ahmad, Iftikhar
    Faisal, Muhammad
    Zan-Ul-Abadin, Qazi
    Loganathan, K.
    Javed, Tariq
    Pattanaik, Balachandra
    [J]. MATHEMATICAL PROBLEMS IN ENGINEERING, 2022, 2022
  • [6] Entropy Analysis in Bidirectional Hybrid Nanofluid Containing Nanospheres with Variable Thermal Activity
    Ahmad, Iftikhar
    Zan-Ul-Abadin, Qazi
    Faisal, Muhammad
    Loganathan, K.
    Javed, Tariq
    Gyeltshen, Sonam
    [J]. JOURNAL OF NANOMATERIALS, 2022, 2022
  • [7] Nonlinear Mixed Convective Bidirectional Dynamics of Double Stratified Radiative Oldroyd-B Nanofluid Flow with Heat Source/Sink and Higher-Order Chemical Reaction
    Ahmad, Iftikhar
    Faisal, Muhammad
    Loganathan, K.
    Kiyani, Muhammad Zaheer
    Namgyel, Ngawang
    [J]. MATHEMATICAL PROBLEMS IN ENGINEERING, 2022, 2022
  • [8] Ali A., 2022, INT J AMBIENT ENERGY, DOI [10.1080/01430750.2022.2031292, DOI 10.1080/01430750.2022.2031292]
  • [9] Ali A., 2021, Int. J. Algorithm. Comput. Math., V7, P208
  • [10] The Impact of Nanoparticles Due to Applied Magnetic Dipole in Micropolar Fluid Flow Using the Finite Element Method
    Ali, Liaqat
    Liu, Xiaomin
    Ali, Bagh
    Mujeed, Saima
    Abdal, Sohaib
    Mutahir, Ali
    [J]. SYMMETRY-BASEL, 2020, 12 (04):