Effects of copper and titania nanoparticles on MHD 3D rotational flow over an elongating sheet with convective thermal boundary condition

被引:5
作者
Mishra S. [1 ]
Dalai R. [1 ]
Swain K. [2 ]
机构
[1] Department of Metallurgical and Materials Engineering, Veer Surendra Sai University of Technology, Burla
[2] Department of Mathematics, Gandhi Institute for Technology, Bhubaneswar
关键词
and nanoparticles; heat source; radiation; Rotating flow; stretching sheet;
D O I
10.1080/01430750.2022.2127892
中图分类号
学科分类号
摘要
Copper nanoparticles (NPs) are used as highly thermal conductive material as well as alloys. In the same way, titanium dioxide nanoparticles have wide usage in coating, waste water treatment, food industries and space crafts etc. The three dimensional (3D) rotational nanofluid flow and heat transfer over an elongating sheet with thermal radiation, heat source and thermal convective boundary condition is studied. The convective heat transfer currently discussed is the superposition of thermal conduction due to temperature gradient and heat energy transfer by the flowing fluid. This phenomenon has been combined with electrically conducting nanofluid subjected to magnetic field. Further, flow model includes rotation and translation which find applications in chemical and process industries. The boundary conditions on heat transfer involves Biot number (Bi) which is important because most of the problem reported in literature involves Nusselt number which is a relative measure of heat transfer coefficient and thermal conductivity, both related to flowing fluid. The solution involves Runge-Kutta forth order method with MATLAB code. It is found that for metallic nanofluid (Cu) temperature remains positive and for metallic oxide nanofluid (TiO 2) the temperature remains negative, indicating thermal energy generation and absorption due to metal or metallic oxide as nanoparticles. © 2022 Informa UK Limited, trading as Taylor & Francis Group.
引用
收藏
页码:381 / 389
页数:8
相关论文
共 44 条
[1]  
Aghamajidi M., Yazdi M.E., Dinarvand S., Pop I., Tiwari-Das Nanofluid Model for Magnetohydrodynamics (MHD) Natural Convective flow of a Nanofluid Adjacent to a Spinning Down-Pointing Vertical Cone, Propulsion and Power Research, 7, pp. 78-90, (2018)
[2]  
Ahmed Z., Nadeem S., Saleem S., Ellahi R., Numerical Study of Unsteady flow and Heat Transfer CNT-Based MHD Nanofluid with Variable Viscosity Over a Permeable Shrinking Surface, International Journal of Numerical Methods for Heat and Fluid Flow, 29, pp. 4607-4623, (2019)
[3]  
Al-Kouz W., Swain K., Mahanthesh B., Jamshed W., Significance of Exponential Space-Based Heat Source and Inclined Magnetic Field on Heat Transfer of Hybrid Nanoliquid with Homogeneous-Heterogeneous Chemical Reactions, Heat Transfer, 50, pp. 4086-4102, (2021)
[4]  
Ali B., Thumma T., Habib D., Salamat N., Riaz S., Finite Element Analysis on Transient MHD 3D Rotating Flow of Maxwell and Tangent Hyperbolic Nanofluid Past a Bidirectional Stretching Sheet with Cattaneo Christov Heat Flux Model, Thermal Science and Engineering Progress, 28, (2022)
[5]  
Asghar A., Ying T.Y., Three Dimensional MHD Hybrid Nanofluid Flow with Rotating Stretching/Shrinking Sheet and Joule Heating, CFD Letters, 13, pp. 1-19, (2021)
[6]  
Bhatti M.M., Arain M.B., Zeeshan A., Ellahi R., Doranehgard M.H., Swimming of Gyrotactic Microorganism in MHD Williamson Nanofluid Flow Between Rotating Circular Plates Embedded in Porous Medium: Application of Thermal Energy Storage, Journal of Energy Storage, (2022)
[7]  
Bhatti M.M., Beg O.A., Abdelsalam S.I., Computational Framework of Magnetized MgO–Ni/Water-Based Stagnation Nanoflow Past an Elastic Stretching Surface: Application in Solar Energy Coatings, Nanomaterials, 12, (2022)
[8]  
Bhatti M.M., Oztop H.F., Ellahi R., Sarris I.E., Doranehgard M.H., Insight into the Investigation of Diamond (c) (SiO <sub>2</sub>) and Silica Nanoparticles Suspended in Water-Based Hybrid Nanofluid with Application in Solar Collector, Journal of Molecular Liquids, (2022)
[9]  
Das K., Flow and Heat Transfer Characteristics of Nanofluids in a Rotating Frame, Alexandria Engineering Journal, 53, pp. 757-766, (2014)
[10]  
Ferdows M., Shamshuddin M., Salawu S.O., Reza M., Computation of Heat Transfer in Magnetised Blasius Flow of Nano-Fluids with Suspended Carbon Nanotubes Through a Moving Flat Plate, International Journal of Ambient Energy, (2021)