Utilization of Second Order Slip, Activation Energy and Viscous Dissipation Consequences in Thermally Developed Flow of Third Grade Nanofluid with Gyrotactic Microorganisms

被引:46
作者
Abdelmalek, Zahra [1 ,2 ]
Khan, Sami Ullah [3 ]
Waqas, Hassan [4 ]
Nabwey, Hossam A. [5 ,6 ]
Tlili, Iskander [7 ,8 ]
机构
[1] Duy Tan Univ, Inst Res & Dev, Da Nang 550000, Vietnam
[2] Duy Tan Univ, Fac Med, Da Nang 550000, Vietnam
[3] COMSATS Univ Islamabad, Dept Math, Sahiwal 57000, Pakistan
[4] Govt Coll Univ Faisalabad, Dept Math, Faisalabad 38000, Pakistan
[5] Prince Sattam bin Abdulaziz Univ, Coll Sci & Humanities AlKharj, Dept Math, Al Kharj 11942, Saudi Arabia
[6] Menoufia Univ, Dept Basic Engn Sci, Fac Engn, Shibin Al Kawm 32511, Egypt
[7] Ton Duc Thang Univ, Dept Management Sci & Technol Dev, Ho Chi Minh City 758307, Vietnam
[8] Ton Duc Thang Univ, Fac Appl Sci, Ho Chi Minh City 758307, Vietnam
来源
SYMMETRY-BASEL | 2020年 / 12卷 / 02期
关键词
bioconvection; slip flow; third-grade nanofluid; microorganism; activation energy; HEAT-TRANSFER; STRETCHING SHEET; MAGNETIC-FIELD; POROUS-MEDIUM; MHD; BIOCONVECTION; NANOPARTICLES; CONVECTION; MAXWELL; FLUID;
D O I
10.3390/sym12020309
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In recent decades, an interest has been developed towards the thermal consequences of nanofluid because of utilization of nano-materials to improve the thermal conductivity of traditional liquid and subsequently enhance the heat transportation phenomenon. Following this primarily concept, this current work investigates the thermal developed flow of third-grade nanofluid configured by a stretched surface with additional features of activation energy, viscous dissipation and second-order slip. Buongiorno's nanofluid model is used to explore the thermophoresis and Brownian motion features based on symmetry fundamentals. It is further assumed that the nanoparticles contain gyrotactic microorganisms, which are associated with the most fascination bioconvection phenomenon. The flow problem owing to the partial differential equations is renovated into dimensional form, which is numerically simulated with the help of bvp4c, by using MATLAB software. The aspects of various physical parameters associated to the current analysis are graphically examined against nanoparticles' velocity, temperature, concentration and gyrotactic microorganisms' density distributions. Further, the objective of local Nusselt number, local Sherwood number and motile density number are achieved numerically with variation of various parameters. The results presented here may find valuable engineering applications, like cooling liquid metals, solar systems, power production, solar energy, thermal extrusion systems cooling of machine equipment, transformer oil and microelectronics. Further, flow of nanoparticles containing gyrotactic microorganisms has interesting applications in microbial fuel cells, microfluidic devices, bio-technology and enzyme biosensors.
引用
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页数:17
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