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Analysis of non-Newtonian fluid flow over fine rotating thin needle for variable viscosity and activation energy

机译:可变粘度和激活能量透水细针的非牛顿流体流动分析

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The main motive of this work is to study the effects of nonlinear radiation and mixed convection for the Casson nanofluid through the thin needle. Mass transfer is further characterized by activation energy. Temperature-dependent viscosity and a variable magnetic field are assumed for the current problem. The consequences of the physical framework on the velocity, temperature and species including the impact of radiative heat flux are discussed. The partial differential equations of the physical model are achieved using the concept of boundary layer approximation and are remolded into the ordinary differential mathematical statement which is coupled nonlinear, by substituting specific similarity transformations. By making the use of built-in MATLAB bvp4c function, the results are calculated and arranged in the manner of graphs and tables. The effects of different physical parameters of our interest such as the Casson fluid parameter, Brownian motion, Prandtl number, buoyancy ratio parameter, thermal radiation, thermophoresis parameter, Schmidt number and relaxation time are examined for the velocity, concentration and temperature profiles.
机译:这项工作的主要动力是研究非线性辐射和混合对流的影响,使鲫鱼纳米流体通过薄针。传质通过激活能量进一步特征。对于当前问题,假设温度依赖性粘度和可变磁场。讨论了物理框架对包括辐射热通量影响的速度,温度和物种的后果。使用边界层近似的概念实现物理模型的部分微分方程,并通过代替特定的相似性变换来倒置为耦合非线性的常差分数学陈述。通过使用内置MATLAB BVP4C功能,结果以图形和表格的方式计算和排列。针对速度,浓度和温度曲线,检查了不同物理参数的不同物理参数,如Casson流体参数,布朗运动,普朗特数,浮力数和施密度和舒适时间。

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