Thermal optimization of C2H6O2-MoS2 nanofluid flow over a slippery surface: effects of temperature-dependent viscosity and Darcy-Forchheimer drag

被引:0
|
作者
Thumma, Thirupathi [1 ]
Samal, Seetalsmita [2 ]
Ontela, Surender [3 ]
机构
[1] Vardhaman Coll Engn, Dept Comp Sci & Engn, Hyderabad 501218, Telangana, India
[2] Natl Inst Technol Mizoram, Dept Math, Aizawl 796012, India
[3] Natl Inst Technol Kurukshetra, Dept Math, Kurukshetra 136119, Haryana, India
关键词
Viscoelastic nanofluid; Heat source; Homotopy analysis; Hamilton-Crosser model; Darcy-Forchheimer; Central composite design; Temperature-dependent dynamic viscosity; CONVECTION;
D O I
10.1007/s10973-024-13906-x
中图分类号
O414.1 [热力学];
学科分类号
摘要
The current homotopy analysis offers in-depth insights into the behavior of viscoelastic hydromagnetic nanofluids across an elongated surface, emphasizing the crucial role of temperature-dependent viscosity (TDV) and uniform heat sources. The rationale for investigating heat source effects stems from the necessity to enhance thermal management in industrial applications where viscoelastic fluids with TDV are utilized. Thus, this study explores the optimization and homotopy analysis of viscoelastic Darcy-Forchheimer hydromagnetic nanofluid transport over a deformation slippery surface, focusing on C2H6O2-MoS2 nanofluid. The fluid dynamics are scrutinized under the influence of radiative heat flux, heat generation, and convective thermal surface boundary conditions using RSM in conjunction with CCD. Similarity transformations convert the complicated nonlinear partial differential equations, characterizing the viscoelastic movement of nanofluid and thermal behavior into a system of ordinary differential equations. The accuracy and convergence of the findings are guaranteed by applying HAM to obtain semi-analytical solutions. The study examines the impacts of Darcy-Forchheimer drag and TDV on fluid flow and thermal properties. Incorporating TDV markedly influences the flow and heat transfer rates, improving thermal performance. The uniform heat source enhances the thermal boundary layer, optimizing the heat transfer. An optimization analysis using RSM-CCD determines the optimal parameter settings for maximizing the response function. The results have important ramifications for increasing thermal system performance in industrial and technical settings. This investigation holds significant relevance for thermal management systems, including electronics cooling, industrial machinery, polymer processing, heat exchangers, and biomedical devices. It offers precise control over fluid flow and heat transfer, making it particularly beneficial for applications requiring efficient thermal performance and accurate drug delivery.
引用
收藏
页数:23
相关论文
共 50 条
  • [41] Investigation of thermal stratification with velocity slip and variable viscosity on MHD flow of Al2O3-Cu-TiO2/H2O nanofluid over disk
    Rafique, Khadija
    Mahmood, Zafar
    Khan, Umar
    Eldin, Sayed M.
    Oreijah, Mowffaq
    Guedri, Kamel
    Khalifa, Hamiden Abd El-Wahed
    CASE STUDIES IN THERMAL ENGINEERING, 2023, 49
  • [42] Thermal Transport Investigation in Magneto-Radiative GO-MoS2/H2O-C2H6O2 Hybrid Nanofluid Subject to Cattaneo-Christov Model
    Mohyud-Din, Syed Tauseef
    Adnan
    Khan, Umar
    Ahmed, Naveed
    Khan, Ilyas
    Abdeljawad, T.
    Nisar, Kottakkaran Sooppy
    MOLECULES, 2020, 25 (11):
  • [43] Numerical simulation of nanoparticle shape and thermal ray on a CuO/C2H6O2-H2O hybrid base nanofluid inside a porous enclosure using Darcy's law
    Gholinia, M.
    Moosavi, S. A. H. Kiaeian
    Gholinia, S.
    Ganji, D. D.
    HEAT TRANSFER-ASIAN RESEARCH, 2019, 48 (07): : 3278 - 3294
  • [44] Effects of Al2O3-Cu-H2O hybrid nanofluid with Soret and Dufour on mixed convection flow over a curved surface
    Ramu, Roopa Kenchogonahalli
    Setty, Dinesh Pobbathy Aswathanarayana
    Iyengar, Govindaraju Magge Venkatachala
    Yadav, Sweeti
    Narayan, Mohandas Karki
    ZAMM-ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK, 2024, 104 (08):
  • [45] Natural convection MHD flow due to MoS2-Ag nanoparticles suspended in C2H6O2-H2O hybrid base fluid with thermal radiation
    Ghadikolaei, S. S.
    Gholinia, M.
    Hoseini, M. E.
    Ganji, D. D.
    JOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERS, 2019, 97 : 12 - 23
  • [46] Quadratic convective slip flow of a viscous dissipative Casson C2H6O2-Diamond nanofluid over a stretching sheet
    Balamurugan, R.
    Chamkha, Ali J.
    ZAMM-ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK, 2025, 105 (01):
  • [47] Magnetic Rotating Flow of a Hybrid Nano-Materials Ag-MoS2 and Go-MoS2 in C2H6O2-H2O Hybrid Base Fluid over an Extending Surface Involving Activation Energy: FE Simulation
    Ali, Bagh
    Naqvi, Rizwan Ali
    Hussain, Dildar
    Aldossary, Omar M.
    Hussain, Sajjad
    MATHEMATICS, 2020, 8 (10) : 1 - 22
  • [48] Effect of Thermal Radiation and Heat Source on Transient Hydromagnetic MoS2-Fe3O4-C2H6O2 Hybrid Nanofluid Flow within Coaxial Parallel Disks: A Numerical Study
    Thumma, Thirupathi
    Mishra, S. R.
    Ontela, Surender
    Musala, Venkataramana
    NANO, 2025,
  • [49] Impact of Hall current and homogenous-heterogenous reactions on MHD flow of GO-MoS2/water (H2O)-ethylene glycol (C2H6O2) hybrid nanofluid past a vertical stretching surface
    Hamid, Aamir
    Naveen Kumar, R.
    Punith Gowda, R. J.
    Varun Kumar, R. S.
    Khan, Sami Ullah
    Ijaz Khan, M.
    Prasannakumara, B. C.
    Muhammad, Taseer
    WAVES IN RANDOM AND COMPLEX MEDIA, 2021,
  • [50] A comparative thermal investigation for modified hybrid nanofluid model (Al2O3-SiO2-TiO2)/(C2H6O2) due to curved radiated surface
    Abbasi, A.
    Gul, M.
    Farooq, W.
    Khan, Sami Ullah
    Aydi, Abdelkarim
    Ayadi, Badreddine
    Eladeb, Aboulbaba
    Kolsi, Lioua
    CASE STUDIES IN THERMAL ENGINEERING, 2022, 37