标题: | 不可互溶流体层推斥之数值模拟 Numerical Simulations on Displacements of Immiscible Fluid Layers |
作者: | 安慧甯 Ardi, Hanni Maksum 陈庆耀 Chen, Ching-Yao 机械工程系所 |
关键字: | 粘性指进的;参数(Ca);参数(A);viscous fingering;Capillary number Ca;Atwood number A |
公开日期: | 2015 |
摘要: | 摘要 此项研究我们使用了 FORTRAN 工具以扩散界面的方法模拟了非混流体的 非定常流体动力过程。此项方法已经应用于物理现象与流体流动中界面变形的界 面区研究。采用此项方法意在探索两种粘性不同的流体在多孔介质中弥散效果之 间粘性指状物的形式。 我们发现驱替液的粘性会影响粘性指进的效果,其次便是不同参数的影响。 通过对研究的大量分析,我们采用四个相关参数来辅助模拟过程。例如,Péclet 参数(Pe),Capillary 参数(Ca),Atwood 参数(A),以及 Cahn 参数(Cahn)。在研究中, Pe 固定为 1*105 来保证在我们数值编码内的稳定的粘性指状物。此外,由于此项 研究指向不可互溶流体的流体流动,因此 Capillary 参数和 Atwood 参数将作为主 要的控制参数。 通过在多孔介质中流体流动中不混溶层的数值模拟,此项研究展示了粘性指 进的机构(指进的宽长)。今后我们还将继续关注多孔介质中多层次不可互溶的 位移过程。 Abstract The research used software FORTRAN to simulate the pattern of unsteady fluid dynamics for immiscible fluids by diffuse-interface methods. These methods have been applied in the interfacial region of physical phenomena and fluid flows implicating interface deformation. The purpose by using the method is to get the pattern of viscous fingering between two fluids with different viscosities and effect of finite dispersion in porous media. We investigate the influence of viscous fingering due to the differences between the viscosities of the displacing fluid and followed by effect of different parameters. A quantitative analysis of the contribution of fingering to this research we conducted as a function of four relevant parameters to simulate the problem, i.e., the Péclet number Pe, the Capillary number Ca, the Atwood number A, and the Cahn number Cahn. In this study, we used the high Peclet number were 1*105 to get stable condition of viscous fingering in our numerical code. Furthermore, since this study is immiscible the fingering fluid flows, so that Capillary number and Atwood number being the main control parameters of the fluid flows. Finally, the results obviously presented the immiscible viscous fingering structures by numerical simulation of fluid flow in porous medium for qualitative results and quantitative results. Influences of Capillary number parameters are given not much effect for the fingering pattern of the layer in porous media. On the other hand, the Atwood number parameter gave much effects of the immiscible pattern of fingering. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070151126 http://hdl.handle.net/11536/125584 |
显示于类别: | Thesis |