首页> 外文期刊>The European physical journal, E. Soft matter >Nanoparticles individualities in both Newtonian and Casson fluid models by way of stratified media: A numerical analysis
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Nanoparticles individualities in both Newtonian and Casson fluid models by way of stratified media: A numerical analysis

机译:纽托尼亚和鲫鱼流体模型的纳米粒子各个通过分层介质:数值分析

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The current paper contains the simultaneous analysis of both Newtonian and non-Newtonian nanofluid models. The fluid flow is achieved by considering the no-slip condition subject to a stretched cylindrical surface. The flow regime manifests with pertinent physical effects, namely temperature stratification, concentration stratification, thermal radiation, heat generation, magnetic field, dual convection and chemical reaction. The strength of fluid temperature and nanoparticles concentration adjacent to an inclined cylindrical surface is assumed to be higher than the ambient flow field. A mathematical model is developed in terms of differential equations. A self-constructed numerical algorithm is executed to report the numerical solution. The resultant annotations are illustrated through both tables and graphs. It is noticed that the Casson fluid shows significant variations with respect to the involved physical parameters as compared to the Newtonian fluid model. Moreover, the analysis is certified through comparison with the existing values in a limiting sense.
机译:目前纸张包含对牛顿和非牛顿纳米流体模型的同时分析。通过将防滑条件考虑到被拉伸的圆柱形表面来实现流体流动。流动制度以相关物理效应,即温度分层,浓度分层,热辐射,发热,磁场,双对流和化学反应。假设与倾斜圆柱形表面相邻的流体温度和纳米颗粒的强度高于环境流场。在微分方程方面开发了数学模型。执行自建数值算法以报告数字解决方案。通过表格和图表说明所得到的注释。与牛顿流体模型相比,Casson流体相对于涉及的物理参数表示显着变化。此外,分析通过与限制意义上的现有值进行了认证。

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