论文标题

湍流乳液分离的数值研究

Numerical investigation of the segregation of turbulent emulsions

论文作者

Trummler, Theresa, Begemann, Alexander, Trautner, Elias, Klein, Markus

论文摘要

我们使用直接数值模拟(DNS)与流体法(VOF)的量直接数值模拟(DNS)研究乳液的分离。为此,我们在强迫均匀的各向同性湍流中产生乳液,然后关闭强迫并激活重力加速度。这使我们能够研究衰减湍流和重力下的隔离过程。 我们考虑非ISO密度乳液,其中分散相是较轻的乳液。隔离过程是由较重相的下沉以及通过聚结实现的表面能量最小化所获得的势能的最小化驱动的。为了研究这两个过程及其对隔离进展的影响,我们在研究中考虑了不同的浮力和表面张力系数,从而产生了五种不同的构型。表面张力系数还改变了乳液的液滴尺寸分布。 使用三维模拟结果和受监视的数据,我们分析了驱动机制及其对隔离进度的影响。我们提出了一个无量纲的数字,反映了占主导地位的能量释放。此外,我们评估了较轻相的升高所需的时间,并研究了与不同参数重力加速度和表面张力系数的相关性。

We study the segregation of emulsions in decaying turbulence using direct numerical simulations (DNS) in combination with the volume of fluid method (VOF). To this end, we generate emulsions in forced homogeneous isotropic turbulence and then turn the forcing off and activate gravitational acceleration. This allows us to study the segregation process in decaying turbulence and under gravity. We consider non-iso-density emulsions, where the dispersed phase is the lighter one. The segregation process is driven by both the minimization of the potential energy achieved by the sinking of the heavier phase, as well as the minimization of the surface energy achieved by coalescence. To study these two processes and their impacts on the segregation progress in detail, we consider different buoyancy forces and surface tension coefficients in our investigation, resulting in five different configurations. The surface tension coefficient also alters the droplet size distribution of the emulsion. Using the three-dimensional simulation results and the monitored data, we analyze the driving mechanisms and their impact on the segregation progress in detail. We propose a dimensionless number that reflects the energy release dominating the segregation. Moreover, we evaluate the time required for the rise of the lighter phase and study correlations with the varied parameters gravitational acceleration and surface tension coefficient.

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