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FRONTAL DISPLACEMENT OF VISCOUS FLUIDS

机译:粘性流体的前移

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摘要

The goal of the present study is to investigate analytically, numerically and experimentally the instability of the displacement of viscous fluid by a less viscous one in a two-dimensional channel, and to determine characteristic size of entrapment zones. Experiments on miscible displacement of fluids in Hele-Shaw cells were conducted under microgravity conditions. Extensive direct numerical simulations allowed to investigate the sensitivity of the displacement process to variation of values of the main governing parameters. Validation of the code was performed by comparing the results of model problems simulations with experiments and with the existing solutions published in literature. Taking into account non-linear effects in fluids displacement allowed to explain new experimental results on the pear-shape of fingers and periodical separation of their tip elements from the main body of displacing fluid. Those separated blobs of less viscous fluid move much faster than the mean flow of the displaced viscous fluid. The results of numerical simulations processed based on the dimensions analysis allow to introduce criteria characterizing the quality of displacement. The functional dependence of the dimensionless criteria on the values of governing parameters needs further investigations.
机译:本研究的目的是分析,数值和实验研究粘性流体在二维通道中被低粘性流体驱替的不稳定性,并确定截留区的特征尺寸。在微重力条件下进行了Hele-Shaw细胞中流体的混溶置换实验。广泛的直接数值模拟可以研究位移过程对主要控制参数值变化的敏感性。通过将模型问题模拟的结果与实验以及文献中发布的现有解决方案进行比较,来执行代码的验证。考虑到流体位移的非线性影响,可以解释关于手指的梨形以及其尖端元素与置换流体主体定期分离的新实验结果。那些粘稠度较低的流体的分离斑点运动快于被置换的粘稠流体的平均流量。基于尺寸分析处理的数值模拟结果允许引入表征位移质量的标准。无量纲标准对控制参数值的功能依赖性需要进一步研究。

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