Multi-phase flow of Jeffrey Fluid bounded within magnetized horizontal surface

被引:54
|
作者
Nazeer, Mubbashar [1 ]
Hussain, Farooq [2 ]
Ahmad, M. Ozair [3 ]
Saeed, Sadia [3 ]
Khan, M. Ijaz [4 ]
Kadry, Seifedine [5 ]
Chu, Yu-Ming [6 ,7 ]
机构
[1] Univ Faisalabad, Govt Coll, Inst Arts & Sci, Dept Math, Chiniot Campus, Faisalabad 35400, Pakistan
[2] Dept Math Sci FABS BUITEMS, Quetta 87300, Pakistan
[3] Univ Lahore, Dept Math, Lahore 54890, Pakistan
[4] Riphah Int Univ I 14, Dept Mathemat & Stat, Islamabad 44000, Pakistan
[5] Beirut Arab Univ, Dept Math & Comp Sci, Beirut, Lebanon
[6] Huzhou Univ, Dept Math, Huzhou 313000, Peoples R China
[7] Changsha Univ Sci Technol, Hunan Prov Key Lab Math Modeling & Anal Engn, Changsha 410114, Peoples R China
基金
中国国家自然科学基金;
关键词
Jeffrey Fluid; Exact; Two-phase flow; Heat transfer; Magnetic field; Radiative heat flux;
D O I
10.1016/j.surfin.2020.100846
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Present communication explores the multi-phase flow of non-Newtonian fluid with heat transfer through a horizontal channel. Jeffrey fluid is considered as the base liquid which suspends metallic particles of Hafnium (Hf). Heating effects have been applied on the upper wall. The magnetic field, along with radiative heat flux, has also been taken into account. Three different particulate flows, namely; (i) pressure-driven multi-phase flow, (ii) moving wall-driven multi-phase flow and, (iii) pressure and moving wall driven multi-phase, are derived . A closed-form solution for each bi-phase flow is achieved and compared. The impacts of most significant emerging parameters, on velocity and temperature profile, are observed graphically. It is inferred that more thermal energy adds to the system friction force and viscous dissipation, whereas, heat transfer rate increases due to radiation. The momentum of multi-phase flow enhances due to shear thinning effects caused by Jeffrey fluid parameter.
引用
收藏
页数:9
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