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Mixed convection flow of second grade fluid along a vertical stretching flat surface with variable surface temperature

机译:二级流体沿垂直拉伸平面变化表面温度的混合对流

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摘要

In the present study we have explored the effects of thermal buoyancy on flow of a viscoelastic second grade fluid past a vertical, continuous stretching sheet of which the velocity and temperature distributions are assumed to vary according to a power-law form. The governing differential equations are transformed into dimensionless form using appropriate transformations and then solved numerically. The methods here employed are (1) the perturbation method together with the Shanks transformation, (2) the local non-similarity method with second level of truncation and (3) the implicit finite difference method for values of ξ ( = Gr_x/Re_x~2, defined as local mixed convection parameter) ranging in [0, 10]. The comparison between the solutions obtained by the aforementioned methods found in excellent agreement. Effects of the elasticity parameter λ on the skin-friction and heat transfer coefficients have been shown graphically for the fluids having the values of the Prandtl number equal to 0.72, 7.03 and 15.0. Effects of the viscoelastic parameter and the mixed convection parameter, ξ, on the temperature and velocity fields have also been studied. We notice that with the increase in visco-elastic parameter λ, velocity decreases whereas temperature increases and that velocity gradient is higher than that of temperature.
机译:在本研究中,我们探讨了热浮力对粘弹性二级流体流经垂直连续拉伸片材的流动的影响,该拉伸片材的速度和温度分布根据幂律形式而变化。控制微分方程通过适当的转换被转换为无量纲形式,然后进行数值求解。这里使用的方法是(1)摄动方法和Shanks变换一起使用;(2)具有第二级截断的局部非相似性方法;(3)ξ(= Gr_x / Re_x〜 2,定义为局部混合对流参数),范围为[0,10]。通过上述方法获得的溶液之间的比较非常一致。对于普朗特数等于0.72、7.03和15.0的流体,已经以图形方式显示了弹性参数λ对皮肤摩擦系数和热传递系数的影响。还研究了粘弹性参数和混合对流参数ξ对温度和速度场的影响。我们注意到,随着粘弹性参数λ的增加,速度降低,而温度升高,并且速度梯度高于温度。

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