Impact of magnetic dipole on ferromagnetic hybrid nanofluid flow over a stretching cylinder

2021 ◽  
Vol 96 (4) ◽  
pp. 045215
Author(s):  
R Naveen Kumar ◽  
R J Punith Gowda ◽  
Abdullah M Abusorrah ◽  
Y M Mahrous ◽  
Nidal H Abu-Hamdeh ◽  
...  
Author(s):  
Umair Manzoor ◽  
Muhammad Imran ◽  
Taseer Muhammad ◽  
Hassan Waqas ◽  
Metib Alghamdi

2021 ◽  
Vol 69 ◽  
pp. 109-117
Author(s):  
Nadeem Abbas ◽  
S. Nadeem ◽  
Anber Saleem ◽  
M.Y. Malik ◽  
Alibek Issakhov ◽  
...  

2021 ◽  
Vol 11 (23) ◽  
pp. 11203
Author(s):  
Shafiq Ahmad ◽  
Muhammad Naveed Khan ◽  
Aysha Rehman ◽  
Bassem F. Felemban ◽  
Maram S. Alqurashi ◽  
...  

The main purpose of this research is to scrutinize the heat and mass transfer in the Casson hybrid nanofluid flow over an extending cylinder in the presence of a magnetic dipole and double stratification. The nanofluid contained chemically reactive hybrid nanoparticles (Ag, MgO) in the conventional fluids (water). The effects of viscous dissipation, radiation, and concentration stratification were taken into consideration. In the presence of gyrotactic microorganisms and the Non-Ficks Model, the flow was induced. Incorporating microorganisms into a hybrid nanofluid flow is thought to help stabilize the dispersed nanoparticles. For viscosity and thermal conductivity, experimental relations with related dependence on nanoparticle concentration were used. To acquire the nonlinear model from the boundary layer set of equations, suitable similarity transformations were employed. The built-in function bvp4c of Matlab software was utilized to solve the transformed equation numerically. The graphical results were obtained for temperature, velocity, concentration, and microorganism distribution for various parameters. The numerical amounts of drag friction, heat transport rate, and motile density number for different parameters are presented through tables. It is seen that the fluid velocity is augmented by the increase of the curvature parameter, while a decrease occurs in the fluid velocity with an increase in the magnetic and slips parameters. The comparison of the present study with previously available studies is discussed, which shows a good agreement with published results.


2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Taza Gul ◽  
Abbas Khan ◽  
Muhammad Bilal ◽  
Nasser Aedh Alreshidi ◽  
Safyan Mukhtar ◽  
...  

Mathematics ◽  
2021 ◽  
Vol 9 (4) ◽  
pp. 448
Author(s):  
Iskandar Waini ◽  
Anuar Ishak ◽  
Ioan Pop

This study investigates a hybrid nanofluid flow towards a stagnation region of a vertical plate with radiation effects. The hybrid nanofluid consists of copper (Cu) and alumina (Al2O3) nanoparticles which are added into water to form Cu-Al2O3/water nanofluid. The stagnation point flow describes the fluid motion in the stagnation region of a solid surface. In this study, both buoyancy assisting and opposing flows are considered. The similarity equations are obtained using a similarity transformation and numerical results are obtained via the boundary value problem solver (bvp4c) in MATLAB software. Findings discovered that dual solutions exist for both opposing and assisting flows. The heat transfer rate is intensified with the thermal radiation (49.63%) and the hybrid nanoparticles (32.37%).


Author(s):  
Azad Hussain ◽  
Mohammed Hamed Alshbool ◽  
Aishah Abdussattar ◽  
Aysha Rehman ◽  
Hijaz Ahmad ◽  
...  

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