具有对流和各向异性滑移条件的生物对流纳米流体通过移动拉伸片的三维停滞点运动

Nune Pratyusha , Nainaru Tarakaramu , Suresh Babu R , V.K. Somasekhar Srinivas , Furqan Ahmad , M. Waqas , Barno Abdullaeva , Manish Gupta
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引用次数: 0

摘要

本文探讨了三维运动表面上的纳米流体的生物对流、微生物和各向异性滑移条件下的对流条件。这项研究描述了各向异性滑移条件下含微生物纳米流体的生物对流特性。从微流体设备、抗生素、提高石油采收率和许多其他领域的应用角度来看,这项研究可能具有重要意义。应用相似性变量,基本 gov.利用相似性变量,将基本工 程方程转化为普通方程,并通过 MATLAB 软件的 R-K-F 四阶程序和射影方案计算这些方程。通过图表详细解释了运动表面的物理参数。我们发现,温度随着转速的升高和数值(对流参数)的增大而升高,而 HTR 则随着 SFP 的不同值而下降。HTR 随表面对流而增强,因此,对流条件有助于减少运动 SS 上的粘性阻力。
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Three-dimensional stagnation point motion of bioconvection nanofluid via moving stretching sheet with convective and anisotropic slip condition
The current article deals with the SM of a NFs on a 3D moving surface containing bioconvection, microorganisms, and convective conditions over anisotropic slip. This work reports describes the characteristics of bioconvection aspects of nanofluid containing microorganisms with anisotropic slip condition. The study may be important from the application point of view in microfluidic devices, antibiotics, enhanced oil recovery and many other areas. Applying the similarity variables, the basic gov. Eqs are translated to ordinary ones, and such Eqs are calculate by R-K-F fourth order programming with shooting scheme by MATLAB software. The physical parameters on the moving surface are explained in detail via graphs. We found that the temperature increases with a higher revolution and larger numerical numbers (convection parameter), while the HTR declined for various values of the SFP. The HTR enhances with surface convection, and therefore, the convection condition is helpful in reducing the viscous drag on the moving SS.
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
138
审稿时长
14 weeks
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