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Numerical simulation of a bubble rising in shear-thinning fluids

机译:剪切稀化流体中气泡上升的数值模拟

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The motion of a single bubble rising freely in quiescent non-Newtonian viscous fluids was investigated experimentally and computationally. The non-Newtonian effects in the flow of viscous inelastic fluids are modeled by the Carreau theological model. An improved level set approach for computing the incompressible two-phase flow with deformable free interface is used. The control volume formulation with the SIMPLEC algorithm incorporated is used to solve the governing equations on a staggered Eulerian grid. The simulation results demonstrate that the algorithm is robust for shear-thinning liquids with large density (rho(1)/rho(g) up to 10(3)) and high viscosity (eta(1)/eta(g) up to 10(4)). The comparison of the experimental measurements of terminal bubble shape and velocity with the computational results is satisfactory. It is shown that the local change in viscosity around a bubble greatly depends on the bubble shape and the zero-shear viscosity of non-Newtonian shear-thinning liquids. The shear-rate distribution and velocity fields are used to elucidate the formation of a region of large viscosity at the rear of a bubble as a result of the rather stagnant flow behind the bubble. The numerical results provide the basis for further investigations, such as the numerical simulation of viscoelastic fluids.
机译:通过实验和计算研究了在静止的非牛顿粘性流体中自由上升的单个气泡的运动。粘性非弹性流体流动中的非牛顿效应由Carreau神学模型建模。使用改进的水平集方法来计算具有可变形自由界面的不可压缩两相流。结合SIMPLEC算法的控制量公式用于求解交错的欧拉网格上的控制方程。仿真结果表明,该算法对于高密度(rho(1)/ rho(g)高达10(3))和高粘度(eta(1)/ eta(g)高达10的剪切稀化液体具有鲁棒性(4))。最终气泡形状和速度的实验测量结果与计算结果的比较是令人满意的。结果表明,气泡周围粘度的局部变化很大程度上取决于气泡形状和非牛顿剪切稀化液体的零剪切粘度。剪切速率分布和速度场用于阐明由于气泡后面相当停滞的流动而在气泡后部形成高粘度区域的情况。数值结果为进一步研究提供了基础,如粘弹性流体的数值模拟。

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