Bioconvective reversible (an esterification process) Casson nanofluid flow over a radiative spinning disc with microorganism

S. Prabhakar, R. Umadevi, Shyam Sundar Santra, S. Nandi
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Abstract

This study describes the Casson (a non-Newtonian fluid) nanofluid bioconvection flow across a spinning disc in the presence of gyrotactic microorganisms, many slips and thermal radiation. Also, the flow is considered as a reversible flow. The esterification process is taken into account. Using the proper variables, a system of extremely nonlinear PDEs is converted into a system of ODEs. To arrive to the solution of such equations, a numerical approach is used. Using the bvp4c approach, nonlinear flow equations can be numerically solved. Investigated are the effects of different numbers on the thermal field, volumetric concentration of nanoparticles and microbiological field. The key characteristics of the parameters in relation to the profiles of the velocity, temperature, concentration and microorganisms are graphically assessed with appropriate physical effects. A graphical explanation is provided for the wall shear stress, local Nusselt number, local Sherwood number and local motile density number. Rate of motile density number shows a prominent difference between reversible and irreversible flows for Brownian motion and Peclet number. The results of the theoretical simulations have dynamic applications in the fields of biotechnology and thermal engineering.
带有微生物的辐射旋转盘上的生物对流可逆(酯化过程)卡松纳米流体流动
本研究描述了在存在回转微生物、多次滑动和热辐射的情况下,流经旋转圆盘的卡松(一种非牛顿流体)纳米流体生物对流。此外,该流动被视为可逆流动。酯化过程也考虑在内。利用适当的变量,将极非线性的 PDE 系统转换为 ODE 系统。为了求解此类方程,我们采用了数值方法。使用 bvp4c 方法可以对非线性流动方程进行数值求解。研究了不同数值对热场、纳米颗粒体积浓度和微生物场的影响。通过适当的物理效应,对与速度、温度、浓度和微生物剖面有关的参数的主要特征进行了图形评估。图解说明了壁面剪应力、局部努塞尔特数、局部舍伍德数和局部运动密度数。对于布朗运动和佩克莱特数,运动密度数的速率显示出可逆流和不可逆流之间的显著差异。理论模拟结果在生物技术和热工程领域具有动态应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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