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首页> 外文期刊>International Journal of Nanoparticles >Aligned magnetic dipole in nonlinear radiative Falkner-Skan flow of Casson fluid over a wedge containing suspension of nanoparticles and microorganisms
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Aligned magnetic dipole in nonlinear radiative Falkner-Skan flow of Casson fluid over a wedge containing suspension of nanoparticles and microorganisms

机译:在含有纳米粒子和微生物悬浮液的楔形楔上的非线性辐射Falkner-Skan流体中的非线性辐射Falkner-Skan流动的对准磁偶极子

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摘要

This paper scrutinises the influences of aligned magnetic field and nonlinearly radiative flow of Falkner-Skan Casson liquid towards a wedge which is filled with microorganisms and nanoparticles. Following Buongiorno's model, the expressions of flow are developed and then transformed into self-similar form by utilising appropriate similarity transformations. Numerical outcomes are presented through plots and tabular form by enforcing Newton's and Runge-Kutta techniques. The impacts of arising constraints on liquid velocity, temperature, density of motile organisms and concentration are explored. For industrial and engineering interest, surface drag coefficient, rates of mass and heat transport, motile microorganism's density number are investigated. A comparative analysis for two cases namely aligned magnetic field (AMF) and magnetic field (MF) demonstrates that rate of heat and mass transfer are high in AMF case in comparison to MF case, and therefore desired results can be obtained by utilising AMF case.
机译:本文仔细地审查了对准磁场的影响,并非线性地辐射流动对填充微生物和纳米颗粒的楔形件。在Buongiorno的模型之后,通过利用适当的相似性转换,开发出流动表达,然后转化为自相似形式。通过强制执行牛顿和速率-Kutta技术,通过绘图和表格形式呈现数值结果。探讨了产生限制对液体速度,温度,电动生物密度和浓度的影响。对于工业和工程兴趣,研究了表面拖曳系数,质量和热传输的速率,研究了运动微生物的密度数。两种情况的比较分析即表示对齐磁场(AMF)和磁场(MF)表明,与MF情况相比,AMF情况下,热量和传质速率高,因此通过利用AMF案例可以获得所需的结果。

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