在空气-水-石油系统中粘性指纹和接口分裂不稳定性
Young-Hoon Lee1, Jingyi Wang1, Ranjani Kannaiyan1
1Department of Chemical and Petroleum Engineering, University of Calgary Calgary Alberta Canada.
将空气注入三相系统 (空气,水,矿物油) 产生比两相系统更复杂的粘性指纹图案. 水的存在改变了空气传播动态,增加了指尖的速度.
科学领域:
- 流体动力学 流体动力学
- 多相流动不稳定性 多相流动不稳定性
背景情况:
- 粘性指纹是多相流中的一个关键现象,影响了石油回收和污染物运输等过程.
- 了解流体接口的不稳定性对于预测多孔介质的流动行为至关重要.
研究的目的:
- 研究和比较两相 (空气-油) 和三相 (空气-水-油) 系统中空气注入的粘性指纹模式.
- 量化水层对空气指纹动态和接口传播的影响.
主要方法:
- 实验使用放射性Hele-Shaw细胞进行.
- 空气被注入矿物油 (二相) 和被矿物油包围的中央水体 (三相).
- 从实验图像中对指纹模式进行了定量分析.
主要成果:
- 与两相系统相比,三相系统表现出明显不同的,更复杂的手指模式.
- 空气沿水-油接口传播,在接口分裂不稳定模式下.
- 观察到空气指在水指中透,指尖速度显示流体区域的不连续性.
结论:
- 中间水层的存在大大改变了空气粘性指纹的行为.
- 接口分裂的不稳定性和改变的传播动态导致了三相系统中的复杂指纹.
- 水的存在增加了指尖的速度,表明流动动力学发生了重大变化.
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