首页> 外文期刊>American Journal of Computational Mathematics >Effect of Variable Viscosity, Dufour, Soret and Thermal Conductivity on Free Convective Heat and Mass Transfer of Non-Darcian Flow past Porous Flat Surface
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Effect of Variable Viscosity, Dufour, Soret and Thermal Conductivity on Free Convective Heat and Mass Transfer of Non-Darcian Flow past Porous Flat Surface

机译:可变粘度,Dufour,Soret和热导率对非达拉斯流体通过多孔平坦表面的自由对流传热和传质的影响

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The motion of incompressible fluid of a variable fluid viscosity and variable thermal conductivity with thermal radiation, Dufour, Soret with heat and mass transfer over a linearly moving porous vertical semi-infinite plate with suction is investigated. The governing equations are transformed into a system of coupled nonlinear ordinary differential equations using similarity transformations with dimensionless variables and solved numerically using shooting method with Runge-Kutta fourth-order method and Newton-Raphson’s interpolation scheme implemented in MATLAB. The result showed that with increase in Dufour and Soret parameter, fluid velocity increases and temperature increases with increase in variation of Dufour while, temperature decreases with increase in Soret. The effects of variable fluid viscosity, variable thermal conductivity, thermal radiation, Soret, Dufour, Prandtl and Schmidt parameters on the dimensionless velocity, temperature and concentration profiles are shown graphically.
机译:研究了具有可变的流体粘度和可变的热导率的不可压缩流体在热辐射,Dufour,Soret的作用下,在吸力作用下在线性移动多孔垂直半无限平板上的传热和传质运动。使用具有无量纲变量的相似性变换,将控制方程转换为耦合非线性常微分方程的系统,并使用Runge-Kutta四阶方法和MATLAB中实现的Newton-Raphson插值方案,通过射击方法进行数值求解。结果表明,随着Dufour和Soret参数的增加,流体速度随温度的升高而增加,而温度随Soret的增加而降低。图形化显示了可变流体粘度,可变导热率,热辐射,Soret,Dufour,Prandtl和Schmidt参数对无量纲速度,温度和浓度曲线的影响。

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