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A diffuse domain method for two-phase flows with large density ratio in complex geometries

机译:复杂几何形状中具有大密度比的两相流的漫射域方法

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摘要

We present a quasi-incompressible Navier-Stokes-Cahn-Hilliard (q-NSCH) diffuse interface model for two-phase fluid flows with variable physical properties that maintains thermodynamic consistency. Then, we couple the diffuse domain method with this two-phase fluid model - yielding a new q-NSCH-DD model - to simulate the two-phase flows with moving contact lines in complex geometries. The original complex domain is extended to a larger regular domain, usually a cuboid, and the complex domain boundary is replaced by an interfacial region with finite thickness. A phase-field function is introduced to approximate the characteristic function of the original domain of interest. The original fluid model, q-NSCH, is reformulated on the larger domain with additional source terms that approximate the boundary conditions on the solid surface. We show that the q-NSCH-DD system converges to the q-NSCH system asymptotically as the thickness of the diffuse domain interface introduced by the phase-field function shrinks to zero (epsilon -> 0) with O(epsilon). Our analytic results are confirmed numerically by measuring the errors in both L-2 and L-infinity norms. In addition, we show that the q-NSCH-DD system not only allows the contact line to move on curved boundaries, but also makes the fluid-fluid interface intersect the solid object at an angle that is consistent with the prescribed contact angle.
机译:我们提出了一个准不可压缩的Navier-Stokes-Cahn-Hilliard(q-NSCH)扩散界面模型,用于保持热力学一致性的变物性两相流。然后,我们将扩散域方法与该两相流体模型耦合,得到了一个新的q-NSCH-DD模型,以模拟复杂几何结构中具有移动接触线的两相流。将原来的复域扩展到更大的规则域,通常是长方体,复域边界被有限厚度的界面区域所取代。引入相位场函数来逼近原始感兴趣域的特征函数。原始流体模型q-NSCH在更大的域上重新表述,并添加了近似固体表面边界条件的附加源项。我们证明了当相场函数引入的扩散域界面的厚度随O(ε)收缩到0(ε->0)时,q-NSCH-DD系统渐近收敛到q-NSCH系统。通过测量L-2和L-无穷范数中的误差,我们的分析结果在数值上得到了证实。此外,我们还表明,q-NSCH-DD系统不仅允许接触线在弯曲边界上移动,而且还使流体-流体界面以与规定接触角一致的角度与固体物体相交。

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