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Thermal characteristics of forced convection in combined pressure and shear-driven flow of a non-Newtonian third-grade fluid through parallel plates

机译:通过平行板的非牛顿三级流体综合压力和剪切驱动流动强制对流的热特性

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摘要

Heat transfer in a non-Newtonian third-grade fluid, flowing under the action of pressure gradient and shear, through two parallel plates, is considered. The upper plate moves with a constant velocity. Constant wall heat fluxes are applied to the plates. Effect of viscous dissipation is included, which has a major role in heat transfer of non-Newtonian fluids. The governing equations are nonlinear and are solved semi-analytically by using the least-square method (LSM). Then, using the solution for velocity in the energy equation, the solution is obtained by a direct integration process. Further, approximate analytical solutions are obtained by the perturbation method, which validates the results generated by the LSM. The effects of the third-grade fluid parameter on the velocity and temperature and also on the physical quantity, such as Nusselt's number, are discussed. Further, viscous dissipation effects on the temperature distribution have been analyzed. Observations show that the movement of the upper plate results in a significant decrease in temperature near the upper plate. For the unit heat flux ratio, the temperature difference between the surface and fluid is more at the upper surface due to the enhanced convective heat transfer caused by the moving upper plate. Nusselt's number increases significantly with an increase in the heat flux ratio.
机译:考虑在非牛顿三级流体中的热传递,在压力梯度和剪切的作用下流动,通过两个平行板。上板以恒定的速度移动。恒定壁热通量施加到板上。包括粘性耗散的影响,这在非牛顿流体的热传递中具有重要作用。控制方程是非线性的,通过使用最小二乘法(LSM)半分析求解。然后,使用能量方程中的速度的解决方案,通过直接积分过程获得解决方案。此外,通过扰动方法获得近似分析解决方案,其验证LSM产生的结果。讨论了三级流体参数对速度和温度以及物理量的影响,例如NURSELT的数量。此外,已经分析了对温度分布的粘性耗散效应。观察结果表明,上板的运动导致上板附近的温度显着降低。对于单位热通量比,由于由移动上板引起的增强的对流热传递,表面和流体之间的温度差更大。随着热量通量比率的增加,Nusselt的数量显着增加。

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