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Unsteady flow over an expanding cylinder in a nanofluid containing gyrotactic microorganisms

机译:在含有回旋微生物的纳米流体中,在膨胀圆柱体上的不稳定流动

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In this paper, an analysis is made for the unsteady flow due to an expanding cylinder in a nanofluid that contains both nanoparticles and gyrotactic microoganisms with suction. The nonlinear system of partial differential equations is transformed into high-order nonlinear ordinary differential equations using similarity transformations, and then solved numerically using a shooting method with fourth-fifth-order Runge-Kutta integration technique. The influences of significant physical parameters on the distributions of the velocity, temperature, nanoparticle volume fraction, as well as the density of motile microorganisms are graphically presented and discussed in detail. It is found that dual solutions exist for both stretching and shrinking cases and the range of dual solutions increases with the strength of the expansion. The results also indicate that larger bioconvection Peclet number and smaller Schmidt number lead to an increased concentration of microorganisms and thicker boundary layer thickness.
机译:在本文中,对纳米流体中由于圆柱体膨胀而引起的非稳态流动进行了分析,该纳米流体中既包含纳米颗粒又具有旋转吸力的微生物。使用相似变换将偏微分方程组的非线性系统转换为高阶非线性常微分方程,然后使用具有四阶五阶Runge-Kutta积分技术的射击方法进行数值求解。重要的物理参数对速度,温度,纳米颗粒体积分数以及运动微生物密度的分布的影响以图形方式呈现并详细讨论。发现对于拉伸和收缩情况都存在双重解决方案,并且双重解决方案的范围随着扩展强度的增加而增加。结果还表明,较大的生物对流派克雷特数和较小的施密特数会导致微生物浓度增加和边界层厚度增加。

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