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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat and mass transfer on MHD mixed convection axisymmetric chemically reactive flow of Maxwell fluid driven by exothermal and isothermal stretching disks
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Heat and mass transfer on MHD mixed convection axisymmetric chemically reactive flow of Maxwell fluid driven by exothermal and isothermal stretching disks

机译:放热和等温拉伸圆盘驱动麦克斯韦流体的MHD混合对流轴对称化学反应流的传热和传质

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The aim of present analysis is to investigate the effects of heat source/sink, chemical and material composition on steady MHD mixed convection axisymmetric flow of an incompressible Maxwell fluid between two infinite stretching disks in the presence of viscous dissipation and Joule heating. The lower disk is subjected to an exothermic surface reaction, while an upper disk is maintained at uniform temperature and concentration. Also an exothermal surface reaction modeled by Arrhenius kinetics supplied heat to the Maxwell fluid. Similarity transformations are used for simplifying equations governing the flow, thermal fields, material and chemical composition fields. The analytic solution of dimensionless governing ordinary differential equations is successfully obtained using homotopy analysis method (HAM). Here, convergence of the derived series solution is ensured. We mainly focus on the effects of Hartmann number, Archimedes number, Eckert number, Prandtl number, heat generation or absorption parameter, activation energy parameter, chemical reaction parameter on dimensionless velocity, pressure, temperature and concentration distribution. The results with several values of the problem parameters are expressed graphically. To understand the behavior of flow between stretching isothermal and exothermal disks, the values of skin friction coefficient, Nusselt number and Sherwood number are tabulated for both lower and upper disks. Further, the critical value of Frank-Kamenetskii are presented through graphs and tables and discussed for different values of parameters involved in problem.
机译:本分析的目的是研究在存在粘性耗散和焦耳热的情况下,两个无限拉伸盘之间不可压缩的麦克斯韦流体的稳态MHD混合对流轴对称流动对热源/汇,化学物质和材料成分的影响。下盘经受放热表面反应,而上盘保持在均匀的温度和浓度下。同样,以阿伦尼乌斯动力学为模型的放热表面反应为麦克斯韦流体提供了热量。相似变换用于简化控制流量,热场,材料和化学成分场的方程式。使用同伦分析法(HAM)成功获得了无量纲控制常微分方程的解析解。在此,确保了导出的级数解的收敛性。我们主要关注哈特曼数,阿基米德数,埃克特数,普朗特数,生热或吸收参数,活化能参数,化学反应参数对无量纲速度,压力,温度和浓度分布的影响。带有问题参数的多个值的结果以图形方式表示。为了了解拉伸的等温和放热盘之间的流动特性,将上下盘的表皮摩擦系数,努塞尔数和舍伍德数的值制成表格。此外,Frank-Kamenetskii的临界值通过图形和表格表示,并针对涉及问题的参数的不同值进行了讨论。

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