首页> 外文会议>American Society of Mechanical Engineers(ASME) Joint U.S.-European Fluids Engineering Division Summer Conference 2006(FEDSM2006) vol.1 pt.A; 20060717-20; Miami,FL(US) >NUMERICAL SIMULATION OF A CONTAMINATED DROPLET BY FRONT-TRACKING METHOD TAKING THE EFFECT OF SURFACTANT TRANSPORT ON THE INTERFACE
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NUMERICAL SIMULATION OF A CONTAMINATED DROPLET BY FRONT-TRACKING METHOD TAKING THE EFFECT OF SURFACTANT TRANSPORT ON THE INTERFACE

机译:界面跟踪表面活性剂的前跟踪法对污染小滴的数值模拟

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In this study, a front-tracking (FT) method combined with a solver of interfacial transport of surfactant was proposed in order to resolve interfacial flows affected by contamination. In the FT method, because the interfaces are presented explicitly, advection-diffusion equation on the interface can be easily treated and can be solved highly accurately. In this study, a scheme which conserves the total amount of surfactant completely was constructed. Numerical simulations of a water drop sinking in silicone oil were performed taking the Marangoni effect into account. The effects of three parameters, a damping coefficient of interfacial tension, a diffusion coefficient and a total amount of surfactant, were evaluated. Calculated results were compared with PTV measurement results and were in very good agreement with them on the points of stagnant cap size, flow separation point, peak of shear stress and so on. So, we can expect that our simulations can estimate the conditions of surfactant on the interfaces, which is very difficult to be measured.
机译:在这项研究中,为了解决受污染影响的界面流动,提出了一种结合表面活性剂界面迁移求解器的前跟踪(FT)方法。在FT方法中,因为界面是明确表示的,所以界面上的对流扩散方程很容易处理,并且可以高精度地求解。在这项研究中,构建了一种方案,可以完全节省表面活性剂的总量。考虑到Marangoni效应,对硅油中的水滴进行了数值模拟。评估了三个参数的影响,即界面张力的阻尼系数,扩散系数和表面活性剂的总量。将计算结果与PTV测量结果进行比较,并在瓶盖停滞点,流分离点,剪切应力峰值等方面与它们非常吻合。因此,我们可以预期,我们的模拟可以估算界面上表面活性剂的状况,这很难测量。

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