Algehyne Ebrahem A, Saeed Anwar, Arif Muhammad, Bilal Muhammad, Kumam Poom, Galal Ahmed M
Department of Mathematics, Faculty of Science, University of Tabuk, P.O.Box 741, Tabuk, 71491, Saudi Arabia.
Nanotechnology Research Unit (NRU), University of Tabuk, Tabuk, 71491, Saudi Arabia.
Sci Rep. 2023 Aug 22;13(1):13675. doi: 10.1038/s41598-023-27562-y.
The current article aims to examine the magnetohydrodynamics (MHD) impact on the flow of MgO-Ag/water-based hybrid nanoliquid with motile microorganisms and the fluid is allowed to flow over a Riga plate subject to slip effects and activation energy. Furthermore, the presence of a uniform heat source/sink is also addressed in the energy equation. In addition to this, the thermophoresis effect is highlighted in the concentration equation. From the present proposed model, we get a non-linear system of the governing equations. The obtained system of partial differential equations (PDEs) is converted to the dimensionless system of ordinary differential equations (ODEs) using the similarity transformation. The obtained high non-linear system of equations has been solved numerically, using the parametric continuation method (PCM). In the present analysis, the main motivation is to highlight the heat transfer rate of MgO-Ag/water-based hybrid nanofluid flow over a Riga plate. The second motivation of the present research is to highlight the impact of slip conditions on the velocity, energy, and mass profiles. From the graphical analysis, it is depicted that the slip conditions reduce the velocity, energy, and mass outlines. From the present analysis, we concluded that volume friction reduced the flow profile while increasing the temperature of the fluid flow over a Riga plate. All the parameters of the present research are highlighted in velocity temperature and concertation of the fluid. In addition to this in all the figures we have compared the hybrid nanofluid with mono nanofluid and the also the comparison between slip and no-slip conditions have carried out through graphs for velocity, temperature, and concentration.
本文旨在研究磁流体动力学(MHD)对含有活动微生物的MgO-Ag/水基混合纳米流体流动的影响,该流体在里加板上流动,考虑滑移效应和活化能。此外,能量方程中还考虑了均匀热源/热汇的存在。除此之外,浓度方程中突出了热泳效应。从当前提出的模型中,我们得到了一个控制方程的非线性系统。利用相似变换将得到的偏微分方程组(PDEs)转换为无量纲常微分方程组(ODEs)。利用参数连续法(PCM)对得到的高度非线性方程组进行了数值求解。在本分析中,主要目的是突出MgO-Ag/水基混合纳米流体在里加板上流动的传热速率。本研究的第二个目的是突出滑移条件对速度、能量和质量分布的影响。通过图形分析可知,滑移条件降低了速度、能量和质量分布。从本分析中,我们得出结论,体积摩擦力降低了流动分布,同时提高了里加板上流体流动的温度。本研究的所有参数在流体的速度、温度和浓度中都有体现。除此之外,在所有图形中,我们将混合纳米流体与单纳米流体进行了比较,并且还通过速度、温度和浓度的图形对滑移和无滑移条件进行了比较。