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首页> 外文期刊>Computer Modeling in Engineering & Sciences >Two-phase flow in complex geometries: A diffuse domain approach
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Two-phase flow in complex geometries: A diffuse domain approach

机译:复杂几何形状中的两相流:扩散域方法

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摘要

We present a new method for simulating two-phase flows in complex geometries, taking into account contact lines separating immiscible incompressible components. We combine the diffuse domain method for solving PDEs in complex geometries with the diffuse-interface (phase-field) method for simulating multiphase flows. In this approach, the complex geometry is described implicitly by introducing a new phase-field variable, which is a smooth approximation of the characteristic function of the complex domain. The fluid and component concentration equations are reformulated and solved in larger regular domain with the boundary conditions being implicitly modeled using source terms. The method is straightforward to implement using standard software packages; we use adaptive finite elements here. We present numerical examples demonstrating the effectiveness of the algorithm. We simulate multiphase flow in a driven cavity on an extended domain and find very good agreement with results obtained by solving the equations and boundary conditions in the original domain. We then consider successively more complex geometries and simulate a droplet sliding down a rippled ramp in 2D and 3D, a droplet flowing through a Y-junction in a microfluidic network and finally chaotic mixing in a droplet flowing through a winding, serpentine channel. The latter example actually incorporates two different diffuse domains: one describes the evolving droplet where mixing occurs while the other describes the channel.
机译:我们提出了一种新的方法,用于模拟复杂几何形状中的两相流,同时考虑了将不可溶的不可压缩成分分开的接触线。我们将用于求解复杂几何形状中的PDE的扩散域方法与用于模拟多相流的扩散界面(相场)方法相结合。在这种方法中,通过引入新的相场变量来隐式描述复杂的几何形状,该变量是复杂域的特征函数的平滑近似。流体和组分浓度方程在较大的规则域中被重新公式化和求解,其中边界条件使用源项隐式建模。使用标准软件包可以轻松实现该方法。我们在这里使用自适应有限元。我们提供了数值示例,证明了该算法的有效性。我们在扩展域中模拟驱动腔中的多相流,并与通过求解原始域中的方程和边界条件所获得的结果非常吻合。然后,我们依次考虑更复杂的几何形状,并模拟液滴在2D和3D中滑下波纹状坡道,在微流体网络中流过Y形结的液滴以及最终在流过蜿蜒蛇形通道的液滴中进行混沌混合的过程。后面的示例实际上包含了两个不同的扩散域:一个描述正在发生混合的液滴,另一个描述了通道。

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