School of Information, Beijing Wuzi University, Beijing 101149, P.R. China.
Mechanical Engineering Department College of Engineering, University of Bahrain, Bahrain.
Comput Methods Programs Biomed. 2020 Jun;189:105311. doi: 10.1016/j.cmpb.2019.105311. Epub 2020 Jan 7.
Here we investigate the irreversibility aspects in magnetohydrodynamics flow of viscous nanofluid by a variable thicked surface. Viscous dissipation, Joule heating and heat generation/absorption in energy expression is considered. Behavior of Brownian diffusion and thermophoresis are also discussed. The nanoliquid is considered electrical conducting under the behavior of magnetic field exerted transverse to the sheet. Using similarity variables the nonlinear PDEs are altered to ordinary one. The obtained system are computed through Newton built in shooting method. Significant behavior of various involving parameters on entropy generation rate, velocity, concentration, Bejan number and temperature are examined. Gradient of velocity and heat transfer rate are numerically computed through tabulated form. Velocity field is augmented versus power index (n). Temperature and velocity profiles have opposite characteristics for larger approximation of Hartmann number. Concentration profile has similar impact against Brownian diffusion variable and Lewis number. Entropy optimization is boost up via rising values of Brinkman and Hartmann numbers. Bejan number is declined for increasing value of Hartmann number.
在这里,我们通过可变厚的表面研究粘性纳米流体磁流体动力学流动中的不可逆性方面。考虑了粘性耗散、焦耳加热和能量表达式中的热生成/吸收。还讨论了布朗扩散和热泳的行为。纳米流体在横向于片材施加的磁场作用下被认为是电导体。使用相似变量将非线性 PDE 转换为常微分方程。通过牛顿内置的打靶法计算得到的系统。研究了各种涉及参数对熵产生率、速度、浓度、贝尚数和温度的重要行为。通过表格形式数值计算速度梯度和传热率。速度场随幂指数(n)增加而增加。对于较大的哈特曼数近似值,温度和速度分布具有相反的特征。浓度分布对布朗扩散变量和刘易斯数具有相似的影响。通过增加布兰德曼和哈特曼数的值来提高熵优化。贝尚数随哈特曼数的增加而减小。