Localized magnetic fields and their effects on heat transfer enhancement and vortices generation in tri-hybrid nanofluids: A novel investigation

被引:16
|
作者
Ahmad, Shabbir [1 ,2 ]
Ali, Kashif [2 ]
Ayub, Assad [3 ,4 ]
Bashir, Umaima [2 ]
Rashid, Farhan Lafta [5 ]
Aryanfar, Yashar [6 ,7 ]
Ali, Mohamed R. [8 ,12 ]
Hendy, Ahmed S. [9 ]
Shah, Ismail [10 ]
Ali, Liaqat [11 ]
机构
[1] China Univ Geosci, Inst Geophys & Geomat, Wuhan 430074, Peoples R China
[2] Muhammad Nawaz Sharif Univ Engn & Technol, Dept Basic Sci & Humanities, Multan 60000, Pakistan
[3] Govt Postgrad Coll, Mansehra, Pakistan
[4] Hazara Univ, Dept Math & Stat, Mansehra 21300, Pakistan
[5] Univ Kerbala, Coll Engn, Karbala, Iraq
[6] Hohai Univ, Coll Mech & Mat, State key Lab Hydrol Water Recourses & Hydraul Eng, Nanjing 210098, Jiangsu, Peoples R China
[7] Autonomous Univ Ciudad Juarez, Dept Elect Engn & Computat, Ave Charro 450 Norte Col Partido Romero, Juarez, Chihuahua, Mexico
[8] Future Univ Egypt, Fac Engn & Technol, New Cairo 11835, Egypt
[9] Ural Fed Univ, Inst Nat Sci & Math, Dept Computat Math & Comp Sci, 19 Mira St, Ekaterinburg 620002, Russia
[10] China Univ Geosci, Sch Earth Sci, Wuhan, Peoples R China
[11] Xian Technol Univ, Sch Sci, Xian 710021, Peoples R China
[12] Benha Univ, Benha Fac Engn, Basic Engn Sci Dept, Banha, Egypt
关键词
Reynolds number; Tri-hybrid nanofluids; Single-phase model; Localized magnetic field; CONJUGATE NATURAL-CONVECTION; SQUARE CAVITY; THERMAL-CONDUCTIVITY; ARRAY; FLOW;
D O I
10.1016/j.csite.2023.103408
中图分类号
O414.1 [热力学];
学科分类号
摘要
A localized magnetic field is a vector field that alters in space because of magnetic materials or electric currents. Some examples of localized magnetic fields are indoor localization, magnetic anomaly detection, magnetoencephalography, and quantum physics. Magnetic fields can be used to estimate the orientation and position of a device inside a building by measuring the changes in the magnetic field caused by ferromagnetic substances. On the other hand, a Tri-hybrid nanofluid can transfer heat better than a normal hybrid nanofluid by mixing three different nanoparticles with synergistic effects. It can have more varied physical and thermal properties by choosing different combinations of nanoparticles. That's why it has more possible uses in various fields such as solar thermal, biomedical, and industrial processes. Therefore, the goal of this research is to explore the complex dynamics of the localized magnetized force that affects the rotation of nanostructures and the vortex formation in the tri-hybrid nanofluid flow regime using the single-phase model, while the governing partial differential equations are discretized numerically. With the help of our self-developed computer codes in MATLAB language, we intend to understand the way these parameters affect the flow and thermal properties of the nanofluids. Additionally, the current work provides a novel analysis that makes it possible to investigate the flow lines and isotherms associated with the magnetic strips inside a flow field. It is discovered that the spinning of tri-hybrid nano-particles, which creates the intricate structure of vortices inside the flow regime, results from the magnetized field. Further, the investigations reveal that both the local skin friction (CfRe) and the Nusselt number (Nu) increased by up to 46% and 99% when the magnetic field is strengthened. Finally, adding more nanosized particles in the flow field result in increased both Nu and CfRe, but differently for different nanoparticles. Silver (Ag) had the highest increase in both Nu (55%) and CfRe (110%), showing strong thermal-fluid coupling. Alumina Al2O3 and Titanium Dioxide (TiO2) had lower increases in both Nu (33% and 25%) and CfRe (13% and 9%), showing weaker coupling in the flow regime.
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页数:22
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