Varshney Atul, Afik Eldad, Kaplan Yoav, Steinberg Victor
Department of Physics of Complex Systems, Weizmann Institute of Science, Rehovot, Israel 76100.
Soft Matter. 2016 Feb 21;12(7):2186-91. doi: 10.1039/c5sm02415c. Epub 2016 Jan 13.
Dilute polymer solutions are known to exhibit purely elastic instabilities even when the fluid inertia is negligible. Here we report the quantitative evidence of two consecutive oscillatory elastic instabilities in an elongation flow of a dilute polymer solution as realized in a T-junction geometry with a long recirculating cavity. The main result reported here is the observation and characterization of the first transition as a forward Hopf bifurcation resulted in a uniformly oscillating state due to breaking of time translational invariance. This unexpected finding is in contrast with previous experiments and numerical simulations performed in similar ranges of the Wi and Re numbers, where the forward fork-bifurcation into a steady asymmetric flow due to the broken spatial inversion symmetry was reported. We discuss the plausible discrepancy between our findings and previous studies that could be attributed to the long recirculating cavity, where the length of the recirculating cavity plays a crucial role in the breaking of time translational invariance instead of the spatial inversion. The second transition is manifested via time aperiodic transverse fluctuations of the interface between the dyed and undyed fluid streams at the channel junction and advected downstream by the mean flow. Both instabilities are characterized by fluid discharge-rate and simultaneous imaging of the interface between the dyed and undyed fluid streams in the outflow channel.
已知即使在流体惯性可忽略不计的情况下,稀释的聚合物溶液也会表现出纯弹性不稳定性。在此,我们报告了在具有长循环腔的T型结几何结构中实现的稀释聚合物溶液伸长流动中连续两次振荡弹性不稳定性的定量证据。本文报道的主要结果是观察并表征了第一次转变,即由于时间平移不变性的破坏,正向霍普夫分岔导致了均匀振荡状态。这一意外发现与之前在类似的Wi和Re数范围内进行的实验和数值模拟形成对比,在那些实验和模拟中,报道的是由于空间反演对称性的破坏,正向叉形分岔进入稳定的不对称流动。我们讨论了我们的发现与先前研究之间可能存在的差异,这可能归因于长循环腔,其中循环腔的长度在时间平移不变性的破坏中起关键作用,而不是空间反演。第二次转变通过通道交汇处染色和未染色流体流之间界面的时间非周期性横向波动表现出来,并由平均流向下游平流。两种不稳定性都通过流体排放速率以及流出通道中染色和未染色流体流之间界面的同步成像来表征。