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Numerical Solutions for Gyrotactic Bioconvection in\ud Nanofluid-Saturated Porous Media with Stefan Blowing and\ud Multiple Slip Effects

机译:旋涡式生物对流的数值解 Stefan吹气和\ ud的纳米流体饱和多孔介质 多重滑移效果

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摘要

A mathematical model is developed to examine the effects of the Stefan blowing, second order velocity slip, thermal slip and microorganism species slip on nonlinear bioconvection boundary layer flow of a nanofluid over a horizontal plate embedded in a porous medium with the presence of passively controlled boundary condition. Scaling group transformations are used to find similarity equations of such nanobioconvection flows. The similarity equations are numerically solved with a Chebyshev collocation method. Validation of solutions is conducted with a Nakamura tri-diagonal finite difference algorithm. The effects of nanofluid characteristics and boundary properties such as the slips, Stefan blowing, Brownian motion and Grashof number on the dimensionless fluid velocity, temperature, nanoparticle volume fraction, motile microorganism, skin friction, the rate of heat transfer and the rate of motile microorganism transfer are investigated. This work is relevant to bio-inspired nanofluid-enhanced fuel cells and nano-materials fabrication processes.
机译:建立了数学模型以检查Stefan吹气,二阶速度滑移,热滑移和微生物物种滑移对纳米流体在具有被动控制边界的埋置在多孔介质中的水平板上的非线性生物对流边界层流动的影响健康)状况。标度组变换用于发现这种纳米生物对流的相似性方程。用Chebyshev搭配方法在数值上求解相似性方程。解决方案的验证是使用Nakamura三对角线有限差分算法进行的。纳米流体特性和边界特性(如滑移,Stefan吹气,布朗运动和Grashof数)对无因次流体速度,温度,纳米颗粒体积分数,运动微生物,皮肤摩擦,传热速率和运动微生物速率的影响转让进行了调查。这项工作与生物启发的纳米流体增强燃料电池和纳米材料的制造工艺有关。

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