Comparative study of Trihybrid Nanofluids (Cu-Al۲O۳-TiO۲/H۲O) in Flow over an Exponentially Stretching Surface in Presence of a Magnetic Field
محل انتشار: ماهنامه بین المللی مهندسی، دوره: 38، شماره: 7
سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 119
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شناسه ملی سند علمی:
JR_IJE-38-7_004
تاریخ نمایه سازی: 15 بهمن 1403
چکیده مقاله:
Hybrid nanofluids (HNFs) and trihybrid nanofluids (THNFs) have many industrial, engineering, and medical applications since they increase heat transfer rate. Because of these applications of THNFs, in the present problem the ۳D hydrodynamic flow over exponentially stretching surfaces in a magnetohydrodynamic (MHD) field for the base fluid of water and nanoparticles of copper, aluminum oxide, and titanium oxide are analyzed. In this study, a new mathematical model for enhancing heat transfer using THNFs in light of the exciting potential of THNFs is presented. This comparative model is considered for the exponential flow of a new model in the presence of a magnetic field. Partial differential equations (PDEs) are derived using continuity, momentum, and energy equations. Numerical results are obtained using the bvp-۴c algorithm in MATLAB software. The major outcomes disclosed that the Nusselt number, which measures the rate at which heat is transferred, is higher in ternary hybrid nanomaterial when compared to hybrid. The value of the Nusselt number for ternary hybrid nanofluid is ۳۸.۴% higher than for hybrid nanofluid. The highest value of the Nusselt number for the ternary hybrid nanofluid, which occurs at Parantel number of ۸.۲, was found to be ۱.۵۰۹۰. The heat transfer rate of the tri-hybrid nanofluid is also superior to that of the hybrid nanofluid and the traditional nanofluid. An increase in the A and β also results in a decrease in the temperature. Furthermore, raising the values of Ha and β causes the skin friction coefficient to increase. Besides, the Nusselt number (Nu) increases due to an increase in β, A, Pr, and Bi. Comparing the graphs show that the temperature and Nu have a higher rate of increase in THNFs (Cu-Al۲O۳-TiO۲/H۲O) than in NHFs (Cu-Al۲O۳/H۲O).
کلیدواژه ها:
نویسندگان
B. Azizzadeh
Mechanical Engineering Department, Faculty of Engineering, Urmia University, Urmia, Iran
I. Mirzaee
Mechanical Engineering Department, Faculty of Engineering, Urmia University, Urmia, Iran
M. Khalilian
Mechanical Engineering Department, Faculty of Engineering, Urmia University, Urmia, Iran
S. Jafarmadar
Mechanical Engineering Department, Faculty of Engineering, Urmia University, Urmia, Iran
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