Optimization of heat transfer in bi-directional flow of sodium alginate-based ternary hybrid nanofluid over an extending heated surface with velocity slip conditions

被引:0
|
作者
Lone, Showkat Ahmad [1 ]
AL-Essa, Laila A. [2 ]
Alduais, Fuad S. [3 ]
Al-Bossly, Afrah [3 ]
Dawar, Abdullah
Saeed, Anwar
机构
[1] Saudi Elect Univ, Coll Sci & Theoret Studies, Dept Basic Sci, Riyadh 11673, Saudi Arabia
[2] Princess Nourah Bint Abdulrahman Univ, Coll Sci, Dept Math Sci, POB 84428, Riyadh 11671, Saudi Arabia
[3] Prince Sattam bin Abdulaziz Univ, Coll Sci & Humanities Al Kharj, Dept Math, Al Kharj 11942, Saudi Arabia
关键词
Nanofluid; Hybrid nanofluid; Ternary hybrid nanofluid; MHD; Porous media; Heat source; Slip conditions; FLUID;
D O I
10.1007/s10973-024-13872-4
中图分类号
O414.1 [热力学];
学科分类号
摘要
The analysis of three-dimensional trihybrid nanofluid flow on a stretchable sheet using variable porous medium and diverse nanoparticles (Cu, CuO, Al2O3) in a sodium alginate base fluid has many applications in augmenting thermal transfer processes across numerous engineering systems like optimization of thermal management in electronic components, industrial heat exchangers and energy conversion systems. The inclusion of velocity slips and convective heat transfer has many applications in advanced thermal systems in aerospace, renewable energy and automotive sectors efficient heat dissipation in critical. Therefore, in this article, three-dimensional flows of a ternary hybrid nanofluid flow on a stretchable sheet using variable permeable medium. The velocity slip conditions along with convective thermal transportation are also considered in this article along with thermal radiation and heat source. The present analysis is endorsed with the earlier published results by which the validation of present model and applied technique are confirmed. The results of the current investigation demonstrate that a higher magnetic factor boosted the thermal distribution, while reducing the primary and secondary velocity distributions. A higher Casson factor improved both the primary and secondary velocities. Higher velocity slip factors lowered the primary and secondary velocities. The increased thermal Biot number, thermal radiation parameter improved thermal dispersion. The greater the thermal Biot number, radiative and heat source factors, the higher the thermal transfer rate.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Sodium alginate-based unsteady nanofluid flow over a porous stretching surface with endothermic and exothermic reaction and bioconvection effects
    Ashrith, R.P.
    Nimmy, P.
    Smitha, T.V.
    Venkadeshwaran, K.
    Raman, Kumar
    Nagaraja, K.V.
    International Journal of Ambient Energy, 2024, 45 (01)
  • [22] Modeling of micropolar nanofluid flow over flat surface with slip velocity and heat transfer: Exact multiple solutions
    Usafzai, Waqar Khan
    Aly, Emad H.
    Tharwat, Marwa M.
    Mahros, Amr M.
    ALEXANDRIA ENGINEERING JOURNAL, 2023, 75 : 313 - 323
  • [23] A numerical study of heat and mass transfer characteristic of three-dimensional thermally radiated bi-directional slip flow over a permeable stretching surface
    Ullah, Hakeem
    Abas, Syed Arshad
    Fiza, Mehreen
    Khan, Ilyas
    Rahimzai, Ariana Abdul
    Akgul, Ali
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [24] Cattaneo-Christov Heat Flux and Thermal Radiation in MHD Nanofluid Flow over a Bi-directional Stretching/Shrinking Surface
    Ali, Aamir
    Afzaal, Muhammad F.
    Tariq, Faiza
    Hussain, Shahid
    JOURNAL OF NONLINEAR MATHEMATICAL PHYSICS, 2024, 31 (01)
  • [25] Numerical heat transfer of non-similar ternary hybrid nanofluid flow over linearly stretching surface
    Riaz, Saman
    Afzaal, Muhammad F.
    Wang, Zhan
    Jan, Ahmed
    Farooq, Umer
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2023,
  • [26] Heat transfer in MHD flow of Carreau ternary-hybrid nanofluid over a curved surface stretched exponentially
    Nabwey, Hossam A.
    Rashad, A. M.
    Khan, Waqar A.
    El-Kabeir, S. M. M.
    AbdElnaem, Shereen
    FRONTIERS IN PHYSICS, 2023, 11
  • [27] MHD hybrid nanofluid flow over a stretched surface with convective boundary conditions: Applications of heat transfer
    Alnahdi, Abeer S.
    Gul, Taza
    MODERN PHYSICS LETTERS B, 2024, 38 (08):
  • [28] Heat transfer characteristics of cobalt ferrite nanoparticles scattered in sodium alginate-based non-Newtonian nanofluid over a stretching/shrinking horizontal plane surface
    Elattar, Samia
    Khan, Umair
    Zaib, Aurang
    Ishak, Anuar
    Alwadai, Norah
    Abed, Ahmed M.
    OPEN PHYSICS, 2024, 22 (01):
  • [29] Homotopy analysis on magnetized Williamson-micropolar nanofluid flow over a bi-directionally extending surface with multiple slip conditions
    Shamshuddin, MD.
    Panda, Subhajit
    Saeed, Anwar
    Ratha, P. K.
    Mishra, S. R.
    NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS, 2024,
  • [30] Heat transfer analysis of the mixed convective flow of magnetohydrodynamic hybrid nanofluid past a stretching sheet with velocity and thermal slip conditions
    Ramzan, Muhammad
    Dawar, Abdullah
    Saeed, Anwar
    Kumam, Poom
    Watthayu, Wiboonsak
    Kumam, Wiyada
    PLOS ONE, 2021, 16 (12):