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Viscoelastic Poiseuille flows with total normal stress dependent, nonlinear Navier slip at the wall

机译:粘弹性泊固流与总法向应力有关,壁上存在非线性Navier滑移

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摘要

The effect of slip at the wall in steady, isothermal, incompressible Poiseuille flows in channel/slits and circular tubes of viscoelastic fluids is investigated analytically. The nonlinear Navier law at the wall, for the dependence on the shear stress, along with an exponential dependence of the slip coefficient on the total normal stress is assumed. The viscoelasticity of the fluid is taken into account by employing the Oldroyd-B constitutive model. The flow problems are solved using a regular perturbation scheme in terms of the dimensionless exponential decay parameter of the slip coefficient, e{open}. The sequence of partial differential equations resulting from the perturbation procedure is solved analytically up to third order. As a consequence of the nonlinearity of the slip model, a two-dimensional, continuously developing, flow field arises. Spectral analysis on the solution shows that the velocity and pressure profiles are fully resolved even for high values of e{open}, which indicates that the perturbation series up to third order approximates the full solution very well. The effects of the dimensionless slip coefficient, isotropic pressure, and deviatoric part of the total normal stress in the slip model, as well as the other parameters and dimensionless numbers in the flow are presented and discussed. Average quantities, in the cross section of the channel/slit or tube, with emphasis given on the pressure drop and the skin friction factor, are also offered.
机译:分析地研究了在粘弹性流体的通道/狭缝和圆形管中稳定,等温,不可压缩的泊瓦斯流中壁滑移的影响。假定壁上的非线性Navier定律依赖于剪应力,并且假定滑移系数与总法向应力成指数关系。通过使用Oldroyd-B本构模型考虑了流体的粘弹性。使用常规的摄动方案,根据滑移系数e {open}的无量纲指数衰减参数,解决了流动问题。由摄动过程产生的偏微分方程的序列可解析地求解到三阶。由于滑动模型的非线性,出现了二维的,连续发展的流场。对解决方案的频谱分析表明,即使对于e {open}的高值,速度和压力曲线也可以完全解析,这表明直到三阶的扰动序列都非常接近完整解。提出并讨论了滑移模型中无量纲滑移系数,各向同性压力和总法向应力的偏斜部分以及流中其他参数和无量纲数的影响。还提供了通道/狭缝或管子横截面中的平均数量,重点是压降和皮肤摩擦系数。

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