An implication of entropy generation in Maxwell fluid containing engine oil based ternary hybrid nanofluid over a riga plate

被引:4
作者
Karthikeyan, S. [1 ]
Ali, Farhan [2 ]
Loganathan, K. [3 ]
Thamaraikannan, N. [4 ]
机构
[1] KPR Inst Engn & Technol, Dept Math, Coimbatore, India
[2] Fed Urdu Univ Arts Sci &Technol, Dept Math Sci, Gulshan E Iqbal Karachi, Pakistan
[3] Manipal Univ Jaipur, Dept Math & Stat, Jaipur, Rajasthan, India
[4] Erode Arts & Sci Coll, Dept Math, Erode, India
关键词
Maxwell fluid; entropy generation; ternary hybrid nanofluid; engine oil (EO); Riga plate; HAM; HEAT-TRANSFER ANALYSIS; POROUS-MEDIUM; THERMAL-ANALYSIS; MAGNETIC-FIELD; MHD FLOW; DISK; THERMODYNAMICS; CONVECTION; SYSTEM; SHEET;
D O I
10.1080/16583655.2024.2387925
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Nanoparticles enhance the heat transmission by recovering energy that was dissipated due to increased thermal conductivity. Engine oil, commonly known as a lubricant, facilitates the movement of energy between various substances. The purpose of this analysis is to investigate the impact of the Maxwell fluid and entropy generation on the movement of ternary hybrid nanoparticles as they flow past a Riga plate under convective boundary conditions. The ternary nanoparticles $ AA7072, AA7075, $ AA7072,AA7075, and $ CoF{e_2}{O_4} $ CoFe2O4 are combined with engine oil ( $ EO $ EO) as the primary liquid. The heat transfer analysis involves the examination of heat sink/source and thermal radiation. The use of a similarity transformation is employed to convert partial differential equations (PDEs) into a dimensionless form. The altered equation is subsequently solved with the homotopy analysis method (HAM), a robust analytical technique. The current analysis is marked by convergence, which denotes the answer. The impact of flow properties, such as the Maxwell parameter, modified Hartmann number, thermal radiation, and Biot number, on the velocity distribution and temperature profile. Higher values of the Maxwell fluid parameter have been shown to result in an increase in the velocity curve. The skin friction and heat transmission variances are elucidated through the utilization of tables and figures. Moreover, the findings suggest that the thermal layer of the tri hybrid nanoliquid is strengthened in reaction to higher thermal radiation and Biot number. At the same time, the thermal layer is also strengthened.
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页数:13
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