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Galerkin finite-element numerical analysis of the effects of heat generation and thermal radiation on MHD SWCNTa??water nanofluid flow with a stretchable plate

机译:Galerkin有限元数值分析热发电和热辐射对MHD SWCNTA的影响水纳米流体流动拉伸板

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Fundamental goal of the present communication is to analyse the viscous electrically conducting nanofluid flow near a stagnation region past a stretching sheet. Investigation of single-wall carbon nanotubes (SWCNTs) are done and water is employed as the base fluid. Combinations of the effects of heat generation, thermal radiation, viscous dissipation and Joule heating are considered. Mathematical modelling and examinations are done in the presence of magnetic field. Similarity variables are introduced to convert nonlinear partial differential equations into nonlinear ordinary differential equations. Numerical solutions of the governing modelled equations are collected by applying Galerkin finite-element method. Impacts of distinct influential parameters such as velocity ratio parameter, solid volume fraction, magnetic parameter, radiation parameter, heat generation parameter and Brinkmann number on velocity, temperature, surface shear stress and surface heat flux are obtained and discussed. Furthermore, comparison of the results of the current analysis is made with the earlier published data.
机译:目前通信的基本目标是分析在停滞区域附近的粘性导电纳米流体流过拉伸片。完成单壁碳纳米管(SWCNT)的研究,采用水作为基础流体。考虑了发热,热辐射,粘性耗散和焦耳加热的影响的组合。在磁场存在下进行数学建模和考试。引入相似变量以将非线性偏微分方程转换为非线性常微分方程。通过施加Galerkin有限元方法收集控制模型方程的数值溶液。获得诸如速度比参数,固体体积分数,磁性参数,辐射参数,发热参数和Brinkmann号的不同影响参数的影响,并讨论了速度,温度,表面剪切应力和表面热通量。此外,使用前面发布的数据进行了当前分析结果的比较。

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