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Deformation and break-up of viscoelastic droplets Using Lattice Boltzmann Models

机译:用格子Boltzmann模型的粘弹性液滴的变形和分手

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We investigate the break-up of Newtonian/viscoelastic droplets in a viscoelastic/Newtonian matrix under the hydrodynamic conditions of a confined shear flow. Our numerical approach is based on a combination of Lattice-Boltzmann models (LBM) and Finite Difference (FD) schemes. LBM are used to model two immiscible fluids with variable viscosity ratio (i.e. the ratio of the droplet to matrix viscosity); FD schemes are used to model viscoelasticity, and the kinetics of the polymers is introduced using constitutive equations for viscoelastic fluids with finitely extensible non-linear elastic dumbbells with Peterlin's closure (FENE-P). We study both strongly and weakly confined cases to highlight the role of matrix and droplet viscoelasticity in changing the droplet dynamics after the startup of a shear flow. Simulations provide easy access to quantities such as droplet deformation and orientation and will be used to quantitatively predict the critical Capillary number at which the droplet breaks, the latter being strongly correlated to the formation of multiple neckings at break-up. This study complements our previous investigation on the role of droplet viscoelasticity (A. Gupta & M. Sbragaglia, Phys. Rev. E 90, 023305 (2014)), and is here further extended to the case of matrix viscoelasticity.
机译:我们研究了破裂牛顿的/粘弹性液滴在密闭剪切流动的流体动力学条件下的粘弹性/牛顿矩阵。我们的数值方法是基于格子玻尔兹曼模型(LBM)和有限差分(FD)方案的组合。 LBM被用于具有可变粘度比(即,液滴基质粘度的比值)两种不混溶流体模型; FD方案用于模型的粘弹性,并且聚合物的动力学是使用本构方程与Peterlin的封闭件(FENE-P)有限扩展的非线性弹性哑铃粘弹性流体引入的。我们研究这两种强和弱的局限的情况下,突出在剪切流启动后改变墨滴的动态矩阵和液滴粘弹性的作用。模拟提供方便的量,例如液滴的变形和取向以及将被用于定量预测在该液滴破裂,后者被强烈地破裂相关的多个颈缩形成的临界毛细管数。这项研究补充了我们之前对液滴粘弹性(A.古普塔&M. Sbragaglia,物理评论ê90,023305(2014))的角色的调查,并在这里进一步扩展到矩阵的粘弹性的情况。

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