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首页> 外文期刊>Fluids >Effectiveness of Magnetized Flow on Nanofluid Containing Gyrotactic Micro-Organisms over an Inclined Stretching Sheet with Viscous Dissipation and Constant Heat Flux
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Effectiveness of Magnetized Flow on Nanofluid Containing Gyrotactic Micro-Organisms over an Inclined Stretching Sheet with Viscous Dissipation and Constant Heat Flux

机译:在粘性施加粘性拉伸板上含有旋转旋转微生物的磁化流动磁化流动的有效性,恒定热通量

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摘要

The bioconvection phenomenon, through the utilization of nanomaterials, has recently encountered significant technical and manufacturing applications. Bioconvection has various applications in bio-micro-systems due to the improvement it brings in mixing and mass transformation, which are crucial problems in several micro-systems. The present investigation aims to explore the bioconvection phenomenon in magneto-nanofluid flow via free convection along an inclined stretching sheet with useful characteristics of viscous dissipation, constant heat flux, solutal, and motile micro-organisms boundary conditions. The flow analysis is addressed based on the Buongiorno model with the integration of Brownian motion and thermophoresis diffusion effects. The governing flow equations are changed into ordinary differential equations by means of appropriate transformation; they were solved numerically using the Runge–Kutta–Fehlberg integration scheme shooting technique. The influence of all the sundry parameters is discussed for local skin friction coefficient, local Nusselt number, local Sherwood number, and local density of the motile micro-organisms number.
机译:通过利用纳米材料的生物卷瓦现象最近遇到了显着的技术和制造应用。生物传动在生物微型系统中具有各种应用,因为它带来了混合和质量转化的改善,这在几种微型系统中是至关重要的问题。本研究旨在通过沿倾斜拉伸片的自由对流探讨磁纳米流体流动中的生物vection现象,其具有粘性耗散,恒定热通量,溶液和运动微生物边界条件的有用特征。基于Buongiorno模型解决了流​​量分析,棕色运动和热噬菌胺扩散效应的整合。通过适当的变换将控制流量方程变为常微分方程;它们在数值上使用了跳动-Kutta-Fehlberg集成方案拍摄技术进行了解决。讨论了所有阳光参数的影响,用于局部皮肤摩擦系数,局部露珠数,局部舍伍德数和局部密度的动机微生物数。

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