Analyzing the radiative characteristics of chemically reactive magnetized nanofluid flow capturing shear thinning-thickening aspects with gyrotactic moment of microorganisms
Zubair Hussain, Waqar Azeem Khan, Mehboob Ali, Taseer Muhammad
- 发表年份
- 2024
- 引用次数
- 2
摘要
Nanotechnology is fascinating pronounced deliberation because of its vast uses in nano-robot, aircraft industry, bio-nano-metric devices, water desalination, medicine, cancer treatment, nano-tubes metric, rubber metal and nano-metric pregnant. Several investigators are involved in exploring the belongings of the magnetic field owing to its wide utilizations in turbo machinery, metallurgy, polymer industry, blood flow, connection of nuclear accelerators and electrical furnace, nuclear reactor, etc. Furthermore, the aspect of bioconvection has been thoroughly explored because of its wide range of uses in bio-microsystems, oil modeling, gas-bearing deposit sink and microbial enhanced oil reclamation. The prime intention of existing investigation is to study the three-dimensional double stratification flow of Sisko nanofluid containing microorganisms over a stretching sheet. The properties of nonlinear radiation along with the magnetic field are take into consideration in this mathematical analysis. Additionally, the aspects of activation energy, chemical reaction and mixed convection are also endorsed. An appropriate set of similarity transformations is deliberated to change the PDEs into a set of combined nonlinear ODEs. We achieved numerical solution of the nonlinear ODEs because of the (bvp4c) MATLAB built-in command. The impacts of numerous developing substantial parameters of Sisko nanofluid beside the profile's concentration, temperature, microorganisms, Sherwood number, Nusselt number have been deliberated also studied along tables and graphs. It is investigated that the temperature profile declines by an intensification in the estimates of stretching parameter, material parameter appropriate to Sisko fluid and the Prandtl number, while its value growths with the thermophoresis and magnetic parameter. Correspondingly, we perceived that the thermophoresis and Brownian motion parameters have the opposite impacts against Sisko nanofluid concentration. It should be noted that no other flow model with similar thermal possessions has been inspected in the collected works and therefore as might be the leading. Solar energy, thermal extrusion, biofuels, heat transfer improvement, enzymes, many electronics devices, and additional sectors all advantages from the existing flow model.
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