切线双曲纳米流体通过平面的生物对流流动

Farah Rizwan and Dr. Rashid Mehmood
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引用次数: 0

摘要

纳米流体在拉伸板上的边界层流动在制造过程中有许多重要的应用。纳米流体基本上是包含在基础流体(如水、乙二醇和乙烯等)中的纳米颗粒的混合物。纳米流体有助于提高流体的导热性,也增加了热量的传递速率。在本研究中,陀螺定向微生物与纳米颗粒一起加入基液中。对控制问题流进行数值处理,根据相关的物理参数,探讨速度F′(η)、温度θ(η)、浓度ϕ(η)、活动微生物密度ξ(η)、努塞尔数、舍伍德数和局部活动微生物密度参数〖Nn〗_x。图IV.10和IV.11显示了各种研究的结果,它显示了与论文结果的完全一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bio Convective Flow of the Tangent-Hyperbolic Nano fluid Past a Flat Surface
There are many important applications of boundary layer flow of the nano fluids over the stretching sheet in manufacturing processes. A nanofluid is basically the mixture of nano particles contained in base fluid like water, glycol, and ethylene etc. nanofluid helps to improve the fluid’s thermal conductivity and also increases the rate of transfer of heat. In this research gyrotactic microorganisms are added along with nano particles within the base fluid. The governing problem flow is tackled numerically to explore velocity F'(η), temperature θ(η), concentration ϕ(η), motile microorganism density ξ(η), Nusselt number 〖 Nu〗 _x, Sherwood number 〖 Sh〗 _x and local Motile microorganism density parameter 〖 Nn〗 _x against pertinent physical parameters. Figure IV.10 and IV.11 is showing the results with various researches and it is showing the exact agreement with the paper results.
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