Bio-convectional Nanofluid Flow Due to the Thermophoresis and Gyrotactic Microorganism Between the Gap of a Disk and Cone

2021 ◽  
Vol 51 (3) ◽  
pp. 687-697
Author(s):  
Taza Gul ◽  
Zeeshan Ahmed ◽  
Muhammad Jawad ◽  
Anwar Saeed ◽  
Wajdi Alghamdi
2017 ◽  
Vol 31 (6) ◽  
pp. 1905-1913 ◽  
Author(s):  
T. Abbas ◽  
T. Hayat ◽  
M. Ayub ◽  
M. M. Bhatti ◽  
A. Alsaedi

2022 ◽  
Vol 12 (1) ◽  
Author(s):  
Hussam Alrabaiah ◽  
Muhammad Bilal ◽  
Muhammad Altaf Khan ◽  
Taseer Muhammad ◽  
Endris Yimer Legas

AbstractThe silver, magnesium oxide and gyrotactic microorganism-based hybrid nanofluid flow inside the conical space between disc and cone is addressed in the perspective of thermal energy stabilization. Different cases have been discussed between the spinning of cone and disc in the same or counter wise directions. The hybrid nanofluid has been synthesized in the presence of silver Ag and magnesium oxide MgO nanoparticulate. The viscous dissipation and the magnetic field factors are introduced to the modeled equations. The parametric continuation method (PCM) is utilized to numerically handle the modeled problem. Magnesium oxide is chemically made up of Mg2+ and O2- ions that are bound by a strong ionic connection and can be made by pyrolyzing Mg(OH)2 (magnesium hydroxide) and MgCO3 (magnesium carbonate) at high temperature (700–1500 °C). For metallurgical, biomedical and electrical implementations, it is more efficient. Similarly, silver nanoparticle's antibacterial properties could be employed to control bacterial growth. It has been observed that a circulating disc with a stationary cone can achieve the optimum cooling of the cone-disk apparatus while the outer edge temperature remains fixed. The thermal energy profile remarkably upgraded with the magnetic effect, the addition of nanoparticulate in base fluid and Eckert number.


2019 ◽  
Vol 31 (4) ◽  
pp. 305-318
Author(s):  
Nirupama Patra ◽  
Vivek Gupta ◽  
Pradyumna Ghosh ◽  
R. S. Singh
Keyword(s):  

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