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首页> 外文期刊>Chemical and Process Engineering Research >MHD Free Convection Boundary Layer Flow of a Nanofluid over a Permeable Shrinking Sheet in the Presence of Thermal Radiation and Chemical Reaction
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MHD Free Convection Boundary Layer Flow of a Nanofluid over a Permeable Shrinking Sheet in the Presence of Thermal Radiation and Chemical Reaction

机译:存在热辐射和化学反应时纳米流体在可渗透收缩片上的MHD自由对流边界层流动

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The objective of this work is to analyze the chemical reaction and thermal radiation effects on MHD free convection boundary layer low of a nanofluid over a permeable shrinking sheet. The model used for the nanofluid incorporates with Brownian and thermophoresis effects. A mathematical formulation has designed for momentum, temperature and nanofluid solid volume profiles. The highly nonlinear coupled partial differential equations are simplified with the help of suitable similarity transformations. The reduced partial differential equations are solved using the Method of line. The entire computation procedure is implemented using a program written and carried out using Mathematica computer language. The results for the dimensionless velocity, temperature, and nanofluid solid volume profiles are discussed with the help of graphs and tables. We have examined the effects of various controlling flow parameters namely unsteadiness parameter A , magnetic parameter M , thermal radiation parameter R , Prandtl number Pr , Brownian motion parameter Nb, thermophoresis parameter Nt , Radiation parameter Nr and Lewis number Le on the dimensionless velocity, temperature and nanoparticle volume fraction profiles..
机译:这项工作的目的是分析化学反应和热辐射对可渗透收缩片材上纳米流体低的MHD自由对流边界层的影响。用于纳米流体的模型结合了布朗效应和热泳效应。为动量,温度和纳米流体固体体积分布设计了数学公式。高度非线性耦合的偏微分方程通过适当的相似度转换得以简化。简化的偏微分方程使用线法求解。整个计算过程使用使用Mathematica计算机语言编写并执行的程序来实现。借助图形和表格讨论了无因次速度,温度和纳米流体固体体积分布图的结果。我们已经研究了各种控制流参数,即不稳定参数A,磁参数M,热辐射参数R,普朗特数Pr,布朗运动参数Nb,热泳参数Nt,辐射参数Nr和路易斯数Le对无量纲速度,温度的影响和纳米颗粒的体积分数分布

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