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Effect of Ramped Wall Temperature on Unsteady Mixed Convection Flow of Rotating Second Grade Fluid in Porous Medium

机译:壁面温度升高对多孔介质中旋转二级流体非定常混合对流的影响

摘要

The effects of ramped wall temperature, rotation and porosity on mixed convection flow of incompressible second grade fluid are studied. The momentum equation is modelled in a problem of rotating fluid with constant angular velocity subjected to initial and oscillating boundary conditions. The energy equation is also introduced. Some suitable nondimensional variables are used to write equations into non-dimensional form. Laplace transform method is used to solve these equations in order to obtain the analytical solutions of velocity and temperature profiles. Computations are carried out and presentedudgraphically to analyse the effect of second grade fluid parameter, rotation parameter, porosity parameter, Prandtl number and Grashof number on the profiles. It is found that, for larger values of porosity parameter, the fluid velocity will increase for both primary and secondary velocities. The results also show that, velocity and temperature for ramped wall temperature are lower compared to isothermal temperature. It is worth to mention that, theudexact solutions obtained in this study can be used to check correctness of the results obtained through numerical schemes.
机译:研究了倾斜的壁温,旋转和孔隙率对不可压缩的二级流体混合对流的影响。动量方程是在旋转流体以恒定角速度经受初始和振荡边界条件的问题中建模的。还介绍了能量方程。一些合适的无量纲变量用于将方程写成无量纲形式。拉普拉斯变换法用于求解这些方程,以便获得速度和温度曲线的解析解。进行计算并以图形方式表示,以分析二级流体参数,旋转参数,孔隙度参数,Prandtl数和Grashof数对剖面的影响。已经发现,对于较大的孔隙度参数值,对于初级和次级速度,流体速度都将增加。结果还表明,与等温温度相比,倾斜壁温的速度和温度要低。值得一提的是,本研究中获得的 udexact解可用于检查通过数值方案获得的结果的正确性。

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