...
首页> 外文期刊>International Journal of Multiphase Flow >Influence of surface tension implementation in Volume of Fluid and coupled Volume of Fluid with Level Set methods for bubble growth and detachment
【24h】

Influence of surface tension implementation in Volume of Fluid and coupled Volume of Fluid with Level Set methods for bubble growth and detachment

机译:表面张力的实施对液位和液位耦合方法对气泡生长和分离的影响

获取原文
获取原文并翻译 | 示例
           

摘要

A simple coupled Volume of Fluid (VOF) with Level Set (LS) method (S-CLSVOF) for improved surface tension implementation is proposed and tested by comparison against a standard VOF solver and experimental observations. A CFD Open source solver library (OpenFOAM?) is used for the VOF method, where the volume fraction is advected algebraically using a compressive scheme. This method has been found not to be suitable for problems with high surface tension effects and it is extended by coupling it with a LS method which is used to calculate the surface tension and the interface curvature. Two test cases; a circular bubble at equilibrium and a free bubble rise, are studied first to examine the accuracy of the S-CLSVOF method. The problem of 3D axi-symmetrical air bubble injection into quiescent water using different volumetric flow rates is then considered to assess the method under challenging capillary dominant conditions. An experimental study has been performed to validate the numerical methods with reference to the geometrical characteristics of the bubble during the full history of formation. The exponential power law controlling the detachment process is investigated. In addition, the influence of the static contact angle imposed at the rigid wall is considered. The results have shown that the coupling code (S-CLSVOF) improves the accuracy of the original VOF method when the surface tension influence is predominant. The two methods provide similar results during the detachment stage of the process due to the large increase of the gas inertia effect. Finally, the static contact angle boundary condition was shown to allow accurate modeling provided that the imposed static contact angle is less than the minimum instantaneous values observed experimentally.
机译:提出了一种简单的流体体积(VOF)与水平集(LS)方法(S-CLSVOF)耦合以改善表面张力的实现方法,并通过与标准VOF求解器和实验观察结果进行比较进行了测试。 VOF方法使用CFD开源求解器库(OpenFOAM?),其中使用压缩方案以代数方式对对分体积。已经发现该方法不适用于具有高表面张力效应的问题,并且通过将其与用于计算表面张力和界面曲率的LS方法结合来​​进行扩展。两个测试用例;首先研究了处于平衡状态的圆形气泡和自由气泡上升,以检验S-CLSVOF方法的准确性。然后考虑使用不同的体积流量将3D轴对称气泡注入静态水中的问题,以评估在挑战性毛细管优势条件下的方法。已经进行了一项实验研究,以参考整个形成过程中气泡的几何特征来验证数值方法。研究了控制分离过程的指数幂律。另外,考虑了施加在刚性壁上的静态接触角的影响。结果表明,当表面张力影响较大时,耦合代码(S-CLSVOF)可以提高原始VOF方法的准确性。由于气体惯性效应的大幅增加,在该方法的分离阶段,这两种方法提供了相似的结果。最后,如果施加的静态接触角小于实验观察到的最小瞬时值,则表明静态接触角边界条件可以进行精确建模。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号