Unsteady Magneto-radiative Flow of Copper-water Nanofluid Over an Exponentially Stretching Surface

被引:0
|
作者
Tshivhi, Khodani Sherrif [1 ]
Tshehla, Maashutha Samuel [1 ]
机构
[1] Stellenbosch Univ, Fac Mil Sci, Dept Math, POB X2, ZA-7395 Saldanha, South Africa
来源
PERIODICA POLYTECHNICA-MECHANICAL ENGINEERING | 2025年 / 69卷 / 01期
关键词
magneto-radiative flow; copper-water nanofluid; viscous dissipation; exponentially stretching surface; similarity transformations; Runge-Kutta-Fehlberg method; temperature-dependent heat sources; BOUNDARY-LAYER-FLOW; STAGNATION-POINT FLOW; POWER-LAW FLUID; HEAT-TRANSFER; SHEET;
D O I
10.3311/PPme.38385Attributionb
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Understanding the complex behavior of fluid flows under various physical influences is crucial for advancing engineering and industrial applications. This paper presents the investigation of the unsteady, incompressible, single-phase magneto-radiative flow of a copper-water nanofluid over an exponentially stretching surface, considering the effects of viscous dissipation and temperaturedependent heat sources. This model, proposed in the present analysis, is based on fundamentals of the continuity and Navier-Stokes equations with mass conservation. Further, use of a similarity transformation will reduce the equations to dimensionless form and provide a numerical solution using the Runge-Kutta-Fehlberg method. In physics, engineering, and industrial applications, the most interesting parameters are the velocity, temperature, skin friction, and the Nusselt number (Nu). The results of this study are compared with previous works, showing significant agreement with findings under similar conditions. The analysis reveals that both temperature and velocity boundary layer increase when all very specific effects of radiation (R), heat source (Q), copper nanoparticle volume fraction, and magnetic field strength parameter are present. On the other hand, it is found that skin friction increases when considering both copper nanoparticle volume fraction and magnetic field strength parameter, but the Nu decreases if R, Q, copper nanoparticle volume fraction, and magnetic field strength parameter are the factors responsible for that. These outcomes will be further delineated through graphics and be elaborated in engineering and industrial context.
引用
收藏
页码:23 / 31
页数:9
相关论文
共 50 条
  • [21] Flow and Heat Transfer for Three-Dimensional Flow over an Exponentially Stretching Surface
    Liu, I-Chung
    Wang, Hung-Hsun
    Peng, Yih-Ferng
    CHEMICAL ENGINEERING COMMUNICATIONS, 2013, 200 (02) : 253 - 268
  • [22] Inspections of unsteady micropolar nanofluid model over exponentially stretching curved surface with chemical reaction
    Fuzhang, Wang
    Anwar, Muhammad Imran
    Raza, Mohsin
    El-Shafay, A. S.
    Abbas, Nadeem
    Ali, Rifaqat
    WAVES IN RANDOM AND COMPLEX MEDIA, 2022,
  • [23] UNSTEADY MIXED CONVECTION OVER AN EXPONENTIALLY STRETCHING SURFACE: INFLUENCE OF DARCY-FORCHHEIMER POROUS MEDIUM AND CROSS DIFFUSION
    Patil, P. M.
    Kumbarwadi, Nafisabanu
    Chamkha, Ali J.
    JOURNAL OF POROUS MEDIA, 2021, 24 (02) : 29 - 47
  • [24] Soret and Dufour effects on unsteady MHD second-grade nanofluid flow across an exponentially stretching surface
    Siddique, Imran
    Nadeem, Muhammad
    Awrejcewicz, Jan
    Pawlowski, Witold
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [25] Active and passive control of radiative MHD water-based copper nanofluid flow over a stretching surface
    Yasmin, Humaira
    Bossly, Rawan
    Alduais, Fuad S.
    Al-Bossly, Afrah
    Saeed, Anwar
    JOURNAL OF RADIATION RESEARCH AND APPLIED SCIENCES, 2025, 18 (02)
  • [26] Unsteady separated stagnation-point flow and heat transfer past a stretching/shrinking sheet in a copper-water nanofluid
    Rosca, Natalia C.
    Rosca, Alin V.
    Pop, Ioan
    INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2019, 29 (08) : 2588 - 2605
  • [27] Quadratic regression analysis of unsteady MHD free convective and radiative-dissipative stagnation flow of hybrid nanofluid over an exponentially stretching surface under porous medium
    Nandi, Susmay
    Kumbhakar, Bidyasagar
    Seth, Gauri Shanker
    CHINESE JOURNAL OF PHYSICS, 2022, 77 : 2090 - 2105
  • [28] Numerical analysis of Copper-water and Copper-Oxide-water nanofluids flow over a stretching sheet
    Ahmad, Salman
    Khan, M. Ijaz
    Hayat, T.
    Alsaedi, A.
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2020, 34 (13):
  • [29] Viscous dissipation and MHD hybrid nanofluid flow towards an exponentially stretching/shrinking surface
    Zainal, N. A.
    Nazar, R.
    Naganthran, K.
    Pop, I.
    NEURAL COMPUTING & APPLICATIONS, 2021, 33 (17) : 11285 - 11295
  • [30] Effects of magnetic field and partial slip on unsteady axisymmetric flow of Carreau nanofluid over a radially stretching surface
    Azam, M.
    Khan, M.
    Alshomrani, A. S.
    RESULTS IN PHYSICS, 2017, 7 : 2671 - 2682