Impact of inclined Lorentz forces on tangent hyperbolic nanofluid flow with zero normal flux of nanoparticles at the stretching sheet

被引:30
|
作者
Prabhakar, Besthapu [1 ,2 ]
Bandari, Shankar [2 ]
Ul Haq, Rizwan [3 ]
机构
[1] Govt Degree Coll, Dept Math, Karimnagar, Telangana, India
[2] Osmania Univ, Dept Math, Hyderabad, Telangana, India
[3] Bahria Univ, Dept Elect Engn, Islamabad Campus, Islamabad 44000, Pakistan
来源
NEURAL COMPUTING & APPLICATIONS | 2018年 / 29卷 / 10期
关键词
Non-Newtonian; Nanofluid; Aligned angle; Tangent hyperbolic fluid; Thermophoresis; Brownian motion; BOUNDARY-LAYER-FLOW; STAGNATION POINT FLOW; PERISTALTIC TRANSPORT; CARBON NANOTUBES; SURFACE; RADIATION; CHANNEL; MODEL; BUOYANCY; PLATE;
D O I
10.1007/s00521-016-2601-4
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
This framework is devoted to analyze the tangent hyperbolic fluid in the presence of nanoparticles. In order to disperse the nanoparticle from the surface of sheet, condition of zero normal flux of nanoparticles is introduced at the surface. Inclined magnetic field is applied with an aligned angle at the surface of the sheet. Moreover, consideration of nanoparticles which are passively controlled at the surface is physically more realistic condition. The system of partial differential equations generated for tangent hyperbolic nanofluid are modeled and then converted into the system of nonlinear ordinary differential equations by employing suitable similarity transformations. Obtained systems of ordinary differential equations along with the condition of zero normal flux are successfully solved numerically by Runge-Kutta fourth-order method with shooting technique. The effects of various emerging parameters on velocity, temperature and concentration profiles are discussed in detail and presented graphically. Variation of skin friction coefficient and local Nusselt number are also oriented to analyze the variation of nanofluid at the surface. Considerable effects are found on velocity, temperature and concentration with the variable values of Weissenberg number and inclination of angle . It is finally concluded that increase in the Weissenberg number and power law index reduce the velocity profile; however, thermophoresis parameter shows the dominant effects on temperature and concentration profile. Significant effects on velocity, temperature and concentration profiles are also determined for both suction and injection cases.
引用
收藏
页码:805 / 814
页数:10
相关论文
共 50 条
  • [1] Impact of inclined Lorentz forces on tangent hyperbolic nanofluid flow with zero normal flux of nanoparticles at the stretching sheet
    Besthapu Prabhakar
    Shankar Bandari
    Rizwan Ul Haq
    [J]. Neural Computing and Applications, 2018, 29 : 805 - 814
  • [2] The Effects of Thermal Radiation and Inclined Magnetic Force on Tangent Hyperbolic Fluid Flow with Zero Normal Flux of Nanoparticles at the Exponential Stretching Sheet
    Gangaiah, T.
    Saidulu, N.
    Lakshmi, A. Venkata
    [J]. JOURNAL OF NANOFLUIDS, 2018, 7 (05) : 809 - 820
  • [3] MHD Stagnation Point Flow and Convective Heat Transfer of Tangent Hyperbolic Nanofluid Over a Stretching Sheet with Zero Normal Flux of Nanoparticles
    Vittal, Ch.
    Vijayalaxmi, T.
    Reddy, Chenna Krishna
    [J]. JOURNAL OF NANOFLUIDS, 2018, 7 (05) : 844 - 852
  • [4] MHD Tangent Hyperbolic Nanofluid with Zero Normal Flux of Nanoparticles at the Stretching Surface with Thermal Radiation
    Shravani, Ittedi
    Ramya, Dodda
    Joga, Sucharitha
    [J]. JORDAN JOURNAL OF MECHANICAL AND INDUSTRIAL ENGINEERING, 2018, 12 (03): : 171 - 177
  • [5] MHD tangent hyperbolic nanofluid with zero normal flux of nanoparticles at the stretching surface with thermal radiation
    Shravani, Ittedi
    Ramya, Dodda
    Joga, Sucharitha
    [J]. Jordan Journal of Mechanical and Industrial Engineering, 2019, 12 (03): : 171 - 177
  • [6] RADIATION EFFECT ON MHD FLOW OF A TANGENT HYPERBOLIC NANOFLUID OVER AN INCLINED EXPONENTIALLY STRETCHING SHEET
    Saidulu, N.
    Gangaiah, T.
    Lakshmi, A. Venakata
    [J]. INTERNATIONAL JOURNAL OF FLUID MECHANICS RESEARCH, 2019, 46 (03) : 277 - 293
  • [7] Stratified magnetohydrodynamic flow of tangent hyperbolic nanofluid induced by inclined sheet
    T.HAYAT
    M.MUMTAZ
    A.SHAFIQ
    A.ALSAEDI
    [J]. Applied Mathematics and Mechanics(English Edition), 2017, 38 (02) : 271 - 288
  • [8] Stratified magnetohydrodynamic flow of tangent hyperbolic nanofluid induced by inclined sheet
    T. Hayat
    M. Mumtaz
    A. Shafiq
    A. Alsaedi
    [J]. Applied Mathematics and Mechanics, 2017, 38 : 271 - 288
  • [9] Stratified magnetohydrodynamic flow of tangent hyperbolic nanofluid induced by inclined sheet
    Hayat, T.
    Mumtaz, M.
    Shafiq, A.
    Alsaedi, A.
    [J]. APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION, 2017, 38 (02) : 271 - 288
  • [10] Magnetohydrodynamics tangent hyperbolic nanofluid flow over an exponentially stretching sheet: Numerical investigation
    Amjad, Muhammad
    Khan, M. N.
    Ahmed, Kamran
    Ahmed, Iftikhar
    Akbar, Tanvir
    Eldin, Sayed M.
    [J]. CASE STUDIES IN THERMAL ENGINEERING, 2023, 45