Heat Transfer Characteristics for Solar Energy Aspect on the Flow of Tangent Hyperbolic Hybrid Nanofluid over a Sensor Wedge and Stagnation Point Surface

被引:0
|
作者
Alanzi, Asmaa Habib [1 ]
Ahammad, N. Ameer [1 ]
机构
[1] Univ Tabuk, Fac Sci, Dept Math, POB 741, Tabuk 71491, Saudi Arabia
来源
关键词
Hyperbolic tangent; sensor surface; kerosene base fluid; thermal radiation and hybrid nanoparticles; STRETCHING CYLINDER; MHD FLOW; FLUID; SHEET;
D O I
10.32604/fhmt.2023.042009
中图分类号
O414.1 [热力学];
学科分类号
摘要
The conversion of solar radiation to thermal energy has recently attracted a lot of interest as the requirement for renewable heat and power grows. Due to their enhanced ability to promote heat transmission, nanofluids can significantly contribute to enhancing the efficiency of solar-thermal systems. This article focus solar energy aspect on the effects of the thermal radiation in the flow of a hyperbolic tangent nanofluid containing magnesium oxide (MgO) and silver (Ag) are the nanoparticle with the base fluid as kerosene through a wedge and stagnation. The system of hybrid nanofluid transport equations are transformed into ordinary differential systems using the appropriate self-similarity transformations. These systems are then determined by using the Runge-Kutta 4th order with shooting technique in the MATLAB solver. Graphs and tables illustrate the effects of significant factors on the fluid transport qualities. The velocity is growths but it is declarations in temperature by increasing values in the power law index parameter. Weissenberg numbers with higher values improve the temperature and velocity in the wedge and stagnation, respectively. The thermal radiation and Eckert number both parameters intensification the rate of heat transfer for wedge and stagnation, respectively. The heat transfer rate in fluid flow over a stagnation point is found to be 14.0346% higher compared to flow over a wedge. Moreover, incorporating hybrid nanoparticles into the base fluid enhances the heat transfer rate by 8.92% for the wedge case and 13.26% for the stagnation point case.
引用
收藏
页码:179 / 197
页数:19
相关论文
共 50 条
  • [1] Analysis of Hybrid Nanofluid Stagnation Point Flow over a Stretching Surface with Melting Heat Transfer
    Jawad, Muhammad
    Khan, Ziad
    Bonyah, Ebenezer
    Jan, Rashid
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2022, 2022
  • [2] Entropy generation approach with heat and mass transfer in magnetohydrodynamic stagnation point flow of a tangent hyperbolic nanofluid
    Tiehong Zhao
    M. R. Khan
    Yuming Chu
    A. Issakhov
    R. Ali
    S. Khan
    Applied Mathematics and Mechanics, 2021, 42 : 1205 - 1218
  • [3] Entropy generation approach with heat and mass transfer in magnetohydrodynamic stagnation point flow of a tangent hyperbolic nanofluid
    Zhao, Tiehong
    Khan, M. R.
    Chu, Yuming
    Issakhov, A.
    Ali, R.
    Khan, S.
    APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION, 2021, 42 (08) : 1205 - 1218
  • [4] Entropy generation approach with heat and mass transfer in magnetohydrodynamic stagnation point flow of a tangent hyperbolic nanofluid
    Tiehong ZHAO
    M.R.KHAN
    Yuming CHU
    A.ISSAKHOV
    R.ALI
    S.KHAN
    AppliedMathematicsandMechanics(EnglishEdition), 2021, 42 (08) : 1205 - 1218
  • [5] MHD Stagnation Point Flow and Convective Heat Transfer of Tangent Hyperbolic Nanofluid Over a Stretching Sheet with Zero Normal Flux of Nanoparticles
    Vittal, Ch.
    Vijayalaxmi, T.
    Reddy, Chenna Krishna
    JOURNAL OF NANOFLUIDS, 2018, 7 (05) : 844 - 852
  • [6] Characteristics of magnetic field and melting heat transfer in stagnation point flow of Tangent-hyperbolic liquid
    Hayat, T.
    Shafiq, Anum
    Alsaedi, A.
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2016, 405 : 97 - 106
  • [7] On heat and flow characteristics of Carreau nanofluid and tangent hyperbolic nanofluid across a wedge with slip effects and bioconvection
    Din, Irfan Saif Ud
    Siddique, Imran
    Ali, Rifaqat
    Jarad, Fahd
    Abdal, Sohaib
    Hussain, Sajjad
    CASE STUDIES IN THERMAL ENGINEERING, 2022, 39
  • [8] Numerical exploration of forced convection hydromagnetic hyperbolic tangent nanofluid flow over a permeable wedge with melting heat transfer
    Endalew, Mehari Fentahun
    Sarkar, Subharthi
    SCIENTIFIC REPORTS, 2023, 13 (01)
  • [9] Heat and mass transfer analysis in unsteady flow of tangent hyperbolic nanofluid over a moving wedge with buoyancy and dissipation effects
    Kebede, Tesfaye
    Haile, Eshetu
    Awgichew, Gurju
    Walelign, Tadesse
    HELIYON, 2020, 6 (04)
  • [10] Numerical exploration of forced convection hydromagnetic hyperbolic tangent nanofluid flow over a permeable wedge with melting heat transfer
    Mehari Fentahun Endalew
    Subharthi Sarkar
    Scientific Reports, 13