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首页> 外文期刊>AIChE Journal >Flow and Mass Transfer of Fully Resolved Bubbles in Non-Newtonian Fluids
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Flow and Mass Transfer of Fully Resolved Bubbles in Non-Newtonian Fluids

机译:非牛顿流体中完全溶解的气泡的流动和传质

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In this work,high-resolution 2-D numerical simulations were performed on the motion of deformable bubbles in non-Newtonian fluids and the associated mass transfer.For that purpose,we have implemented a semi-Lagrangian advection scheme and improved the fluid dynamic calculation by the usage of implicit algorithms.Non-Newtonian fluids are described by generalized Newtonian as well as viscoelastic model fluids.As shear-thinning model we use a Power-Law and a Carreau-Yasuda model,the viscoelastic fluid simulations are based on an Upper-Convected Maxwell model combined with a recently introduced model for the evolution of the effective shear rate.The mathematical challenges arising from the hyperbolic nature of the resulting set of equations are addressed by inclusion of artificial diffusion in the stress equation.In our work,it was found that shear thinning effects have impact on collision rates,and therefore,may influence coalescence of bubbles in non-Newtonian liquids.Furthermore,for the first time,concentration fields of dissolved gas in viscoelastic fluids are presented.The study shows that the fluid elasticity plays a major role for bubble rise velocity,and therefore,mass transfer.As the wake dynamics differ significantly from that in Newtonian liquids,abnormal mixing characteristics can be expected in the bubbly flow of viscoelastic fluids.
机译:在这项工作中,对非牛顿流体中的可变形气泡的运动以及相关的传质进行了高分辨率的二维数值模拟。为此,我们实施了半拉格朗日对流方案并改进了流体动力学计算非牛顿流体用广义牛顿流体和粘弹性模型流体来描述。作为剪切稀化模型,我们使用Power-Law模型和Carreau-Yasuda模型,粘弹性流体模拟基于Upper -对流的麦克斯韦(Maxwell)模型与最近引入的有效剪切速率模型相结合。通过将人工扩散包括在应力方程中,解决了因方程组双曲线性质而引起的数学难题。在我们的工作中,已发现剪切稀化效应会影响碰撞速率,因此可能会影响非牛顿液体中气泡的聚结。首次提出了粘弹性流体中溶解气体的浓度场。研究表明,流体弹性在气泡上升速度,质量传递中起着主要作用。由于尾流动力学与牛顿液体中的明显不同,因此混合异常在粘弹性流体的气泡流动中可以预期到这些特性。

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