Université de Lorraine, LEMTA, UMR 7563, Vandœuvre-lès-Nancy F-54500, France and CNRS, LEMTA, UMR 7563, Vandœuvre-lès-Nancy F-54500, France.
Phys Rev E. 2019 Aug;100(2-1):023117. doi: 10.1103/PhysRevE.100.023117.
This paper deals with the Taylor-Couette flow of shear-thinning fluids. It focuses on the first principles understanding of the influence of the viscosity stratification and the nonlinear variation of the effective viscosity μ with the shear rate γ[over ̇] on the flow structure in the Taylor-vortex flow regime. A wide gap configuration (η=0.4) is mainly considered. A weakly nonlinear analysis, using the amplitude expansion method at high order, is adopted as a first approach to study nonlinear effects. For the numerical computation, the shear-thinning behavior is described by the Carreau model. The rheological parameters are varied in a wide range. The results indicate that the flow field undergoes a significant change as shear-thinning effects increase. First, vortices are squeezed against the inner wall and the center of the patterns is shifted axially toward the radial outflow boundaries (z=0,z/λ_{z}=1). This axial shift leads to increasing concentration of vorticity at these positions. The outflow becomes stronger than the inflow and the extent of the inflow zone where the vorticity is low increases acoordingly. Nevertheless, the strength of the vortices relative to the velocity of the inner cylinder is weaker. Second, the pseudo-Nusselt number, ratio of the torque to that obtained in the laminar flow, decreases. Third, higher harmonics become more relevant and grow faster with Reynolds number. Finally, the modification of the viscosity field is described.
本文研究了剪切稀化流体的泰勒-库埃特流动。重点研究了粘度分层和有效粘度μ随剪切率γ[over ̇]的非线性变化对泰勒涡旋流区流动结构的影响的基本原理理解。主要考虑宽间隙配置(η=0.4)。采用高阶幅展方法进行弱非线性分析,作为研究非线性效应的初步方法。对于数值计算,采用 Carreau 模型来描述剪切稀化行为。流变参数在很宽的范围内变化。结果表明,随着剪切稀化效应的增加,流场发生了显著变化。首先,涡旋被挤压到内壁,图案的中心沿轴向向径向流出边界(z=0,z/λ_{z}=1)移动。这种轴向移动导致这些位置的涡量增加。流出比流入更强,涡量较低的流入区的范围相应增加。然而,相对于内筒的速度,涡旋的强度较弱。其次,伪努塞尔数,即扭矩与层流中获得的扭矩之比减小。第三,随着雷诺数的增加,高次谐波变得更加相关,增长也更快。最后,描述了粘度场的修正。