Analysis of flow and thermal characteristics of hybrid nanofluids within a microchannel under magnetic field

被引:0
|
作者
Turker, Hakan [1 ]
Ogut, Elif Buyuk [2 ]
Aslan, Erman [2 ]
机构
[1] Kocaeli Univ, Inst Sci, TR-41380 Kocaeli, Turkiye
[2] Kocaeli Univ, Dept Mech Engn, TR-41380 Kocaeli, Turkiye
来源
关键词
finite volume method; laminar flow; microchannel; nanofluid; magnetohydrodynamics; MHD; convective heat transfer; pressure drop; CONVECTIVE HEAT-TRANSFER; ENTROPY GENERATION; FORCED-CONVECTION; CONDUCTIVITY;
D O I
10.1504/PCFD.2025.143736
中图分类号
O414.1 [热力学];
学科分类号
摘要
The study investigates the flow and thermal characteristics of microchannels with varying geometries and boundary conditions. Water is used as the base fluid, with Al2O3 and CuO nanoparticles as additives. The analysis begins with a straight microchannel, followed by comparisons with sinusoidal or sine wave-shaped channels. Additionally, the effects of a magnetic field on a straight microchannel are explored. The numerical simulations conducted using ANSYS Fluent software, cover Reynolds numbers (Re) of 100, 300, 700, and 1,000 in laminar flow, along with volume fractions of 1%, 2%, 3%, 4%, and 5%. A magnetic field intensity of 0.1T is applied for the magnetohydrodynamic (MHD) effect. The results presented as Nusselt numbers, pressure drop, and thermal performance factor graphs, indicate an increase in Nusselt number with rising Reynolds number and decreasing volume fractions. Pressure drop also rises with increasing Reynolds number and volume fractions.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] On analysis of Blasius and Rayleigh-Stokes hybrid nanofluid flow under aligned magnetic field
    Kumar, K. Ganesh
    Lokesh, H. J.
    Shehzad, Sabir A.
    Ambreen, Tehmina
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2020, 139 (03) : 2119 - 2127
  • [42] Investigation of the nanofluid convective flow and entropy generation within a microchannel heat sink involving magnetic field
    Hosseini, S. R.
    Sheikholeslami, M.
    POWDER TECHNOLOGY, 2019, 351 : 195 - 202
  • [43] A review of magnetic field effects on flow and heat transfer in magnetic nanofluids
    Zang, Xuzhong
    Shi, Er
    Fu, Junping
    Yu, Tao
    Huagong Jinzhan/Chemical Industry and Engineering Progress, 2019, 38 (12): : 5410 - 5419
  • [44] Aggregation and flow behavior of magnetic particles in microchannel flow governed by a transverse magnetic field
    Zhou, Jianfeng
    Zhang, Shiliang
    Shao, Chunlei
    JOURNAL OF PHYSICS COMMUNICATIONS, 2018, 2 (08):
  • [45] Effect of hybrid nanofluids on thermal and hydraulic characteristics of hexagon tube
    Nasir, Kadhim Fadhil
    Al-Hamadani, Haider R. D.
    Jurmut, Hassan Ali
    ADVANCES IN NATURAL SCIENCES-NANOSCIENCE AND NANOTECHNOLOGY, 2020, 11 (03)
  • [46] Exact Analytical Determination of Nusselt Number for Flow Through a Microchannel Under Electric and Magnetic Field
    Saha, Sujit
    Kundu, Balaram
    ADVANCES IN MECHANICAL ENGINEERING, ICRIDME 2018, 2020, : 893 - 905
  • [47] Exploring the thermal efficiency of Fe3O4-H2O flow in a microchannel under the effects of a magnetic field
    Marzougui, Mbarek
    Boutas, Laila
    Zinoubi, Jamil
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2024, 149 (23) : 14433 - 14448
  • [48] Experimental studies on thermal and physical characteristics of mono and hybrid nanofluids
    Sheik, Salman Basha
    Nagireddy, Praveena Devi
    Kupireddi, Kiran Kumar
    NANOSYSTEMS-PHYSICS CHEMISTRY MATHEMATICS, 2025, 16 (01): : 89 - 104
  • [49] Thermal and hydrodynamic performance analysis of circular microchannel heat exchanger utilizing nanofluids
    Mohammed, H. A.
    Bhaskaran, G.
    Shuaib, N. H.
    Abu-Mulaweh, H. I.
    Saidur, R.
    INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2012, 22 (6-7) : 907 - 927
  • [50] Hydrothermal optimisation of hybrid nanoparticle mixture fluid flow in a porous enclosure under a magnetic field and thermal radiation
    Zabeti, Maysam
    Khaleghinia, Jahanfar
    Jafari, Bahram
    Mohammadi, Morteza
    PRAMANA-JOURNAL OF PHYSICS, 2024, 98 (03):