Impact of aligned MHD flow with inclined outer velocity for a casson nanofluid over a stretching sheet

被引:3
作者
Devi, Renu [1 ]
Poply, Vikas [2 ]
Manimala [1 ]
机构
[1] Ansal Univ, Sch Engn & Technol, Dept Math, Gurugram, India
[2] KLP Coll, Dept Math, Rewari 123401, Haryana, India
关键词
aligned MHD; Casson fluid; heat generation; inclined outer velocity; nanofluid; oblique flow; STAGNATION-POINT FLOW; BOUNDARY-LAYER-FLOW; HEAT-TRANSFER; THERMAL-RADIATION; MAGNETIC-FIELD; NANO FLUID; SURFACE; DRIVEN;
D O I
10.1002/htj.21796
中图分类号
O414.1 [热力学];
学科分类号
摘要
The scope of the introduced study focuses on the analysis of heat as well as flow transportation in an oblique Casson nanofluid in the presence of an aligned magnetic field. The fluid is supposed to impinge obliquely on a sheet that stretches in both directions of the x-axis with heat generation. The moulded partial differential equations computed numerically with the shooting procedure by adopting the Runge Kutta Fehlberg method. The change in the behaviour of the emerging fluid parameters are described graphically and their results are shows in tables. The outcomes disclosed that the fluid velocity declined for Casson fluid parameter and the aligned angle of the magnetic field. In addition, with the increase in the Casson fluid parameter and aligned angle of magnetic field, the fluid temperature and concentration rise. The outcomes of this study may be beneficial to control the rate of heat and mass transportation as well as controlling fluid velocity in industry to obtain a final product of the desired quality.
引用
收藏
页码:3702 / 3725
页数:24
相关论文
共 36 条
[1]   Flow and heat transfer in a power-law fluid over a stretching sheet with variable thermal conductivity and non-uniform heat source [J].
Abel, M. Subhas ;
Datti, P. S. ;
Mahesha, N. .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2009, 52 (11-12) :2902-2913
[2]   Numerical modelling of second-grade fluid flow past a stretching sheet [J].
Basha, Hussain ;
Reddy, G. Janardhana ;
Abhishek ;
Killead, Annapoorna ;
Pujari, Vinaya ;
Kumar, N. Naresh .
HEAT TRANSFER-ASIAN RESEARCH, 2019, 48 (05) :1595-1621
[3]   FLOW PAST A STRETCHING PLATE [J].
CRANE, LJ .
ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND PHYSIK, 1970, 21 (04) :645-&
[4]  
Devi R., 2019, INT J ADV TRENDS COM, V1, P32
[5]  
Ghulam R, 2020, ENTROPY, V22, P1
[6]   Analytical solution of natural convection flow of a nanofluid over a linearly stretching sheet in the presence of magnetic field [J].
Hamad, M. A. A. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2011, 38 (04) :487-492
[7]   MHD flow of a micropolar fluid near a stagnation-point towards a non-linear stretching surface [J].
Hayat, T. ;
Javed, T. ;
Abbas, Z. .
NONLINEAR ANALYSIS-REAL WORLD APPLICATIONS, 2009, 10 (03) :1514-1526
[9]   MHD stagnation point flow and heat transfer due to nanofluid towards a stretching sheet [J].
Ibrahim, Wubshet ;
Shankar, Bandari ;
Nandeppanavar, Mahantesh M. .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2013, 56 (1-2) :1-9
[10]   The effect of induced magnetic field and convective boundary condition on MHD stagnation point flow and heat transfer of upper-convected Maxwell fluid in the presence of nanoparticle past a stretching sheet [J].
Ibrahimn, Wubshet .
PROPULSION AND POWER RESEARCH, 2016, 5 (02) :164-175