Computational Approach to Dynamic Systems through Similarity Measure and Homotopy Analysis Method for Renewable Energy

被引:18
作者
Khan, Noor Saeed [1 ,2 ,3 ]
Kumam, Poom [1 ,2 ,4 ]
Thounthong, Phatiphat [5 ]
机构
[1] King Mongkuts Univ Technol Thonburi KMUTT, Fac Sci, Dept Math, KMUTTFixed Point Res Lab,Fixed Point Lab, Room SCL 802,Sci Lab Bldg, Bangkok 10140, Thailand
[2] King Mongkuts Univ Technol Thonburi KMUTT, Fac Sci, Ctr Excellence Theoret & Computat Sci TaCS CoE, Sci Lab Bldg,126 Pracha Uthit Rd, Bangkok 10140, Thailand
[3] Univ Educ, Dept Math, Div Sci & Technol, Lahore 54000, Pakistan
[4] China Med Univ, China Med Univ Hosp, Dept Med Res, Taichung 40402, Taiwan
[5] King Mongkuts Univ Technol North Bangkok, Fac Tech Educ, Renewable Energy Res Ctr, Dept Teacher Training Elect Engn, 1518 Pracharat 1 Rd, Bangkok 10800, Thailand
关键词
Au-ZnO/C2H6O2; heat transfer; rotating systems; analytical solution; 2ND-GRADE NANOFLUID FLOW; HEAT-TRANSFER; ELECTRICAL-CONDUCTIVITY; THERMAL-RADIATION; MIXED CONVECTION; POROUS-MEDIUM; NANOPARTICLES; THERMOPHORESIS; MOTION; FLUID;
D O I
10.3390/cryst10121086
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
To achieve considerably high thermal conductivity, hybrid nanofluids are some of the best alternatives that can be considered as renewable energy resources and as replacements for the traditional ways of heat transfer through fluids. The subject of the present work is to probe the heat and mass transfer flow of an ethylene glycol based hybrid nanofluid (Au-ZnO/C2H6O2) in three dimensions with homogeneous-heterogeneous chemical reactions and the nanoparticle shape factor. The applications of appropriate similarity transformations are done to make the corresponding non-dimensional equations, which are used in the analytic computation through the homotopy analysis method (HAM). Graphical representations are shown for the behaviors of the parameters and profiles. The hybrid nanofluid (Au-ZnO/C2H6O2) has a great influence on the flow, temperature, and cubic autocatalysis chemical reactions. The axial velocity and the heat transfer increase and the concentration of the cubic autocatalytic chemical reactions decreases with increasing stretching parameters. The tangential velocity and the concentration of cubic autocatalytic chemical reactions decrease and the heat transfer increases with increasing Reynolds number. A close agreement of the present work with the published study is achieved.
引用
收藏
页码:1 / 25
页数:25
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