首页> 外文会议>13th Annual conference of the Computational Fluid Dynamics Society of Canada (CFD 2005) >A New Model for C lcul tion of Surf ce Tension Force in PLIC-VOF Methods
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A New Model for C lcul tion of Surf ce Tension Force in PLIC-VOF Methods

机译:用PLIC-VOF方法计算表面张力的新模型

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Conventional methods for modeling of surface tension force in PLIC-VOF methods, such as CSF, Continuum Surface Stress CSS and also Meier's method, convert the surface tension force into a body force. Not only do they include the force in the interfacial cells but also in the neighboring cells. Therefore, they produce spurious currents. In addition, the pressure jump, due to the surface tension, is not calculated accurately in these methods. In this paper a more accurate method for the application of interface force in the computational modeling of free surfaces and interfaces which use PLIC-VOF methods is developed. This method is based on the evaluation of the surface tension force only in the interfacial cells and not the neighboring cells. Also the normal and the interface surface area needed for the calculation of the surface tension force is calculated more accurately.rnThe present method is applied to a 2-D motionless bubble of gas and an oscillating initially oval shape drop. Similar problems are also simulated using Meier's model of surface tension force, CSS model and CSF model with and without the density correction factor. It is shown that the present model produces better results in calculating the pressure jump across the interface as well as the shape of the drop or bubbles.
机译:PLIC-VOF方法中用于建模表面张力的常规方法(例如CSF,连续表面应力CSS以及Meier方法)将表面张力转换为体力。它们不仅包括界面单元中的力,而且还包括邻近单元中的力。因此,它们会产生杂散电流。另外,在这些方法中,由于表面张力导致的压力跳变不能准确计算。在本文中,开发了一种使用PLIC-VOF方法在自由表面和界面的计算建模中应用界面力的更准确方法。该方法基于仅在界面单元而不是相邻单元中的表面张力的评估。还可以更准确地计算出计算表面张力所需的法向和界面表面积。本方法适用于气体的二维静止气泡和振荡的初始椭圆形液滴。使用表面张力的Meier模型,带有和不带有密度校正因子的CSS模型和CSF模型,也可以模拟类似的问题。结果表明,本模型在计算跨界面的压力跳跃以及液滴或气泡的形状时产生了更好的结果。

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