Insight into Dynamics of Hydromagnetic Flow of Micropolar Fluid Containing Nanoparticles and Gyrotactic Microorganisms at Weak and Strong Concentrations of Microelements: Homotopy Analysis Method

O. Kọrikọ, A. J. Omowaye, A. Popoola, T. Oreyeni, Abigail Ayooye Adegbite, E. Oni, E. Omokhuale, M. Altine
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引用次数: 5

Abstract

The mathematical model of bioconvection flow of micropolar fluid through a vertical surface containing nanoparticles and gyrotactic microorganisms is presented in this study. In the study, weak and strong concentrations of microstructures are explored. In the energy and concentration equations, the Catteneo-Christov diffusion models are used to explain temperature and concentration diffusions with thermal and solutal relaxation durations, respec-tively. The governing equations describing the fluid flow are transformed and parameterized through similarity variables. The approximate analytical solution is obtained by using Homotopy Analysis Method (HAM). The impacts of relevant parameters on the various distributions are investigated and illu-strated. It is discovered that increasing the value of the micropolar parameter results in an increase in the microrotation distribution for strong concentrations of microstructures while decreasing the microrotation distribution for weak concentrations of microstructures. of Fluid Containing Nanoparticles and Gyrotactic Microorganisms at Weak and Strong Concentrations of Microelements: Homotopy
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微极流体在弱和强微量元素浓度下的磁流动力学:同伦分析方法
本文建立了微极流体通过含有纳米颗粒和陀螺定向微生物的垂直表面的生物对流流动的数学模型。在研究中,对微结构的弱浓度和强浓度进行了探讨。在能量和浓度方程中,Catteneo-Christov扩散模型分别用于解释温度和浓度的扩散与热弛豫持续时间和溶质弛豫持续时间。通过相似变量对描述流体流动的控制方程进行变换和参数化。利用同伦分析法(HAM)得到了近似解析解。研究并说明了相关参数对各种分布的影响。研究发现,微极性参数值的增大导致微结构高浓度时微旋散分布增大,微结构弱浓度时微旋散分布减小。弱和强微量元素浓度下含纳米颗粒流体和回旋微生物:同伦性
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