Optimizing thermosolutal and hydrothermal performance of radiative hybrid ferrofluid and entropy generation in a wavy porous enclosure

被引:6
|
作者
Hansda, Samrat [1 ,3 ]
Chattopadhyay, Anirban [2 ]
Pandit, Swapan K. [3 ]
机构
[1] Sidho Kanho Birsha Univ, Dept Math, Purulia 723104, West Bengal, India
[2] Govt Gen Degree Coll, Dept Math, Bankura 722135, West Bengal, India
[3] Visva Bharati, Integrated Sci Educ & Res Ctr ISERC, Santini Ketan 731235, West Bengal, India
关键词
Entropy generation; Radiation; Ferrofluid; Non-uniform heating; Energy and solutes transfer; Wavy porous enclosure; DIFFUSIVE NATURAL-CONVECTION; HEAT-TRANSFER; NUMERICAL-SIMULATION; COMPACT SCHEME; RECTANGULAR ENCLOSURE; FE3O4-WATER NANOFLUID; THERMAL-RADIATION; MIXED CONVECTION; MAGNETIC FLUID; CAVITY;
D O I
10.1016/j.jmmm.2024.171774
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This research conducts a comprehensive investigation to enhance the thermosolutal and hydrothermal efficiency of a radiative Fe3O4-Cu-H2O hybrid ferrofluid within a wavy porous enclosure with the enlightenment for heat transfer and material science. The primary focus is on optimizing the thermosolutal performance in this irregular enclosure in which the lower boundary undergoes non -uniform heating and concentration, and the curved lateral boundaries keep cooling, lower concentration. Simultaneously, the upper flat boundary remains adiabatic. Using an efficient Higher Order Compact (HOC) scheme, we solve the governing streamfunction (P")-vorticity (C) form with the incorporation of energy and species transport equations of the coupled Navier- Stokes equations. Our results are robust and validated against established experimental and numerical data sources. The investigation delves into the impacts of well-defined parameters such as Rayleigh number (Ra), Hartmann number (Ha), Darcy number (Da), Buoyancy ratio (N), Lewis number (Le), Radiation parameter (Rd), shape factor of nanoparticles (m) and solid volume fraction (Ohnp) of the hybrid ferrofluid. Key findings underscore the consistent enhancement of both average Nusselt number (Nu) and average Sherwood number (Sh) with higher Buoyancy Ratio Numbers (N). Blades -shaped nanoparticles (m = 8.6) demonstrate superior performance in both unitary and hybrid ferrofluid systems. Optimal conditions, identified at Ohnp=0.04 and Ra = 104 by the Bejan number (Be), underscore the positive impact of higher Buoyancy Ratio Numbers (N), resulting in a 25.41% increase in Nu and an impressive 43.81% boost in Sh observed from the shifting of N= 0 to N= 10.
引用
收藏
页数:22
相关论文
共 50 条
  • [31] A numerical study on natural convection and entropy generation in a porous enclosure with heat sources
    Lam, Prasanth Anand Kumar
    Prakash, K. Arul
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2014, 69 : 390 - 407
  • [32] Heat Transfer and Entropy Generation in a Porous Square Enclosure in Presence of an Adiabatic Block
    Priyankan Datta
    Pallab Sinha Mahapatra
    Koushik Ghosh
    Nirmal K. Manna
    Swarnendu Sen
    Transport in Porous Media, 2016, 111 : 305 - 329
  • [33] Entropy generation for unsteady natural convection and thermal radiation inside a porous enclosure
    Jbara, Abdesslem
    Slimi, Khalifa
    Mhimid, Abdallah
    INTERNATIONAL JOURNAL OF EXERGY, 2013, 12 (04) : 522 - 551
  • [34] Hybrid-nanofluid Flow through Partially Porous Wavy Channels: Thermo-hydraulic Performance and Entropy Analysis
    Kumar, Prince
    Dwivedi, Ritesh
    Pandey, Krishna Murari
    HEAT TRANSFER ENGINEERING, 2024, 45 (03) : 211 - 232
  • [35] Radiation and convection heat transfer optimization with MHD analysis of a hybrid nanofluid within a wavy porous enclosure
    Hosseinzadeh, Kh.
    Moghaddam, M. A. Erfani
    Nateghi, SeyedKeivan
    Shafii, Mohammad Behshad
    Ganji, D. D.
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2023, 566
  • [36] Mixed convection heat transfer and entropy generation of MHD hybrid nanofluid in a cubic porous cavity with wavy wall and rotating cylinders
    Jiang, Xiaobin
    Hatami, Mohammad
    Abderrahmane, Aissa
    Younis, Obai
    Makhdoum, Basim M.
    Guedri, Kamel
    APPLIED THERMAL ENGINEERING, 2023, 226
  • [37] Effects of porous material ribs on the hydrothermal performance and entropy generation in cylindrical helical microchannels heat sinks
    Nie, Jiachang
    Liang, Shanpan
    Liu, Junhao
    Wang, Ziyu
    Feng, Zhenfei
    Guo, Fangwen
    Zhang, Jinxin
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2024, 152
  • [38] Effects of sinusoidal hot wavy walls on natural convection heat transfer and entropy generation inside a Γ-shaped enclosure
    Mahravan, Ehsan
    Abbassi, Abbas
    Afsharian, Ehsan P.
    INTERNATIONAL JOURNAL OF EXERGY, 2014, 15 (01) : 24 - 45
  • [39] Effects of heated block comprised porous stratum and micropolar hybrid nanofluid on convective heat transfer and entropy generation in a square enclosure
    Ahlawat, Anil
    Sharma, Mukesh Kumar
    HEAT TRANSFER, 2022, 51 (06) : 5320 - 5347
  • [40] The effects of using twisted tape, ferrofluid, and external magnetic field on hydrothermal performance and entropy generation of the building integrated photovoltaic thermal collectors
    Ding, Xiaohong
    Hu, Haihong
    Wang, Suqi
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2023, 586